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Описание:
The PMP10110 design converts the universal input AC voltage to isolated 17V...30V@6A and is suitable to charge lead-acid or Li-Ion batteries. The converter is a constant-V and constant-I genarator and the set points for output voltage (charge level) and current are settable by means of two PWM signals. The first stage is a PFC boost while the isolation ad current stabilization is performed by DC-DC half bridge stage. An isolated quasi-resonant flyback converter supplies all internal voltages and provide some extra current for external loads (fan or analog section), in details 12V@400mA and 5V@300mA.

Возможности:

The first stage is a CCM PFC boost driven with UCC28180, showing high efficiency and low EMI signature The second stage is a DC/DC half bridge, wich includes both current and voltage loops; a PWM signal is used as reference for voltage and current An auxiliary power supply generates all needed voltages; a network is disconnecting all resistors tied to high voltage to reduce stand-by losses Plug-to-plug efficiency at full load: 86%...92% in the whole input voltage range This design is tested and includes test results and CAD files

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PMP7804 - референс дизайн обеспечивает все шины питания, необходимые для питания ПЛИС Xilinx® KINTEX® 7. Дизайн использует модули питания SimpleSwitcher наряду с низковольтными синхронными понижающими регуляторами LM2121x для "простоты использования" и сокращения сроков разработки. Такой дизайн оптимизирован для питания 12 В.

 

Возможности:

  • Обеспечивает все необходимые шины питания для ПЛИС Xilinx® Kintex® 7 серии;
  • Дизайн оптимизирован для входного напряжения питания 12 В;
  • Модульный дизайн для простоты использования.

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В системе управления питанием Artix7 используются силовые модули, линейные регуляторы и контроллеры PMBus для обеспечения основным и вспомогательным питанием всех узлов ПЛИС, включая DDR память. Графический интерфейс пользователя позволяет отслеживать напряжения и токи на шинах питания.

Возможности:

  • Решение оптимизировано для работы от источника питания 12 В;
  • 2 контроллера PMBus управляют в общей сложности 9 линиями питания;
  • Модули питания поддерживают до 6 А выходного тока;
  • Трансиверы питаются от LDO с низким уровнем шума;
  • Синхронная динамическая энергозависимая DDR память с произвольным доступом позволяет хранить пользовательские код и данные;
  • Протестированное решение.

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Описание:
PMP9335 is designed for Xilinx Zynq FPGA applications utilizing the TPS84A20 and TPS84320. This design uses an external timer to synchronize the switching frequency to 300 kHz. It also employs a controlled power up and power down sequence.

Возможности:

Designed for Xilinx Zynq FPGA applications Compact solution and easy-to-use design with TPS84A20 and TPS84320 buck regulator modules Controlled power up and power down sequence To be used as a “plug in” module, the use of extra bulk capacitance on external pcb is assumed

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The PMP9730 reference designemploys the UCC28051 power factor correction controller to implement a single stage PFC-Flyback AC/DC converter that generates an isolated 12V output at 3A from a universal AC input. The design features UCC28910 primary side regulation Flyback switcher for generating the VDD bias rails and the UCC24610 for 2ndary side synchronous rectification. This provides an excellent solution for systems such as motor drives requiring an isolated bus voltage, good power factor and high efficiency.

Возможности:

89% 4-pt average efficiency 90% peak efficiency >0.85 Power factor at 100% load No aluminum capacitors for small size and high reliability Small form factor 50mm X 50mm x 18mm (2" X 2" X 0.7")

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This reference design provides an isolated, 1-Mbps, 3.3-V to 3.3-V RS-485 interface using the ISO35T, isolated RS-485 transceiver and the TPS76333 high-accuracy linear regulator. This board achieves signal and power isolation and at the same time decreases board space and power consumption.

Возможности:

4000V peak isolation 1/8 unit load - up to 256 nodes on a bus Signaling rates up to 1Mbps 50kV/us typical transient immunity This reference design is orderable

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TIDA-00080 – изолированный модуль измерения тока на основе шунта позволяет с высокой точностью измерять ток без использования трансформаторов тока. Изоляция достигается благодаря использованию AMC1304, включающего в себя высоковольтную изоляцию, а так же Дельта-Сигма модулятор. Это решение устраняет необходимость использовать трансформатор тока, благодаря чему уменьшаются размеры платы, вес изделия, уменьшаются перекрестные и электромагнитные помехи, и потенциально увеличивается срок службы изделия за счет снижения механических проблем благодаря замене трансформатора тока на шунт.

 

Возможности:

  • Измерение тока и напряжения с высокой точностью;
  • Точность 0,25% в диапазоне от 0,5 А до 10 А;
  • Точность 1% в диапазоне от 10 А до 200 А;
  • Устраняет необходимость использовать трансформатор тока;
  • Уменьшает перекрестные и электромагнитные помехи;
  • Увеличивает срок службы изделия и уменьшает габариты платы.

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Референс дизайн позволяет подключать до 4 резистивных датчиков температуры к одному АЦП, обеспечивая при этом компактное и модульное решение. Подключение АЦП к процессору осуществляется по интерфейсу SPI. Если требуется 8 датчиков температуры, просто подключите еще один модуль. Дизайн обеспечивает гибкость решения, благодаря возможности применять 2-, 3- и 4-проводные резистивные датчики температуры.

 

Возможности:

  • Выполнен на основе 24-битного дельта-сигма АЦП ADS1248 со встроенным программируемым усилителем (PGA) и выбираемым коэффициентом усиления до 128;
  • Позволяет осуществлять измерение с 2-, 3- и 4-проводных резистивных датчиков температуры;
  • Мультиплексор (Аналоговый ключ) для переключения тока возбуждения для четырех RTD входов;
  • Использует радиометрические измерения для более высокой точности;
  • Точность < ±2˚C без калибровки для PT100;
  • I2C расширение портов ввода/ вывода для интерфейса управления АЦП и обеспечения переключения тока возбуждения (не требуется внешних портов ввода/ вывода).

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TIDA-00119 is a complete, highly-integrated PLC analog input module front-end reference design that is designed and tested to meet IEC61000-4 standards for industrial automation systems. The design can be configured for 4 differential inputs or 8 single-ended inputs with 12-bit ADC resolution and a sample rate of up to 1MSPS. These inputs can also be programmed to take current or voltage inputs with selectable ranges. The design also includes an isolated power supply providing all necessary module voltages, input surge and ESD protection and an isolated digital data interface that can be connected to any microcontroller, FPGA or ASIC via SPI interface. Full documentation, test results, design files and necessary firmware are available to help reduce time to market.

Возможности:

Designed to comply with IEC61000-4 standards for ESD, EFT and Surge Up to 8 channels user programmable inputs and configurable over-range capability of 20% Four Voltage Inputs: 3 Single ended & 1Differential with impedance > 1M ±10V, ±5V, ±2.5V, 0-10V,0- 5V, Up to ±12V with External Reference Four Current Inputs: 0-20 mA, 4-20 mA (with input impedance of 250Ω) Accuracy over entire input range Voltage: < ±0.2% full scale at 25 °C Current: < ±0.35% full scale at 25 °C On-board isolated Flybuck power supply with inrush current protection

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Данный источник питания поддерживает ультраширокий диапазон как переменного (88 В-276 В), так и постоянного (24 В-250 В) входного напряжения, что делает его подходящим решением для питания разнообразных систем релейной защиты. Выходные напряжения источника питания соответствуют промышленным стандартам (+/-12 В, и 6,75 В с изоляцией), демонстрируя при этом отличную стабильность (<+/-3%). Данное решение обеспечивает высокую мощность (30 Вт), хорошую эффективность (до 78%) и соответствует стандартам IEC61000-4 и CISPR11 Class A.

Возможности:

  • Ультраширокий диапазон как переменного (88 В-276 В), так и постоянного (24 В-250 В) входного напряжения позволяет использовать источник питания для разнообразных систем релейной защиты
  • Стабильное выходное напряжение<+/-3%
  • Высокая номинальная мощность (30 Вт) с эффективностью до 78%
  • Соответствует стандартам - IEC61000-4 и CISPR11 Class A
  • Несколько напряжений на выходе, соответствующих промышленному стандарту (+/-12 В, и 6,75 В с изоляцией)

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Данный базовый проект предназначен для электронных расцепителей автоматических выключателей. Он базируется на операционном усилителе и выполняет мониторинг тока в реле превышения тока и короткого замыкания на землю. При низкой стоимости операционного усилителя точность установки тока срабатывания (А) составляет ±10 %, а точность задержки по времени (с) – от 0 до -20 %. Также в данном проекте учтена возможность работы в суровых условиях благодаря постоянству характеристик в диапазоне температуры окружающей среды от -10 до 70 °C и высокой степени электромагнитной защиты. В дополнение ко всему вышеперечисленному аппаратное устройство из данного проекта без проблем сопрягается с МК MSP430 от TI для более быстрой отладки и выведения продукции на рынок.

 

Возможности:

  • Точность установки тока срабатывания ±10 % и точность задержки по времени от 0 до -20 % дают массу возможностей для гибкой настройки
  • Постоянство характеристик в диапазоне температуры окружающей среды от -10 до 70°C для применения по всему миру
  • Превосходная повторяемость срабатывания
  • DC-DC преобразователь с широким входом и защитой от низкого напряжения и перегрузки
  • Автономный источник питания (на основе токового трансформатора) с уменьшенными нагрузкой на токовый трансформатор и потерями мощности
  • Надёжный дизайн, исключающий смену последовательности фаз в режиме перегрузки и имеющий высокую степень защиты от электростатического разряда (4 кВ в модели человеческого тела)

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This reference design provides a complete solution for a single supply industrial control Analog Input Module. The reference design is suitable for process control end equipment like Programmable Logic Controllers (PLC), Distributed Control system (DCS), Data Acquisition Systems (DAS) modules that must digitize standard industrial current inputs and bipolar or unipolar input voltage ranges up to ±10V. In an industrial environment the analog voltage and current ranges typically include ±2.5 V, ±5 V, ±10 V, 0 V to 5 V, 0 V to 10 V, 4 mA to 20 mA, and 0 mA to 20 mA. This reference design can measure all standard industrial voltage and current inputs. Eight channels are provided on the module and each channel can be configured as a current or voltage input with software configuration. The SAR based architecture of ADS8688 leverages better sampling rate. The ADS8688 also includes an on-chip PGA. The on-chip PGAs are used to provide gain and level shift the bipolar signals. The ISO7141 & ISO1541D provides digital signal isolation between host microcontroller and measurement side. The power isolation has been achieved using LM5017 based Flybuck transformer. The module has on-board EEPROM to store calibration data and module configuration data. This reference design also demonstrate the TI products like hot swap & in-rush current limit controller, isolated Flybuck controller, low noise LDO, and I2C to GPIO expander that can be used in the entire PLC signal processing chain. The module has been designed to be pluggable to the IO Controller (TIDA-00123) for quick testing & evaluation. The module reference design also includes external protection circuit and has been tested and verified to be compliant with IEC61000-4 standards – EFT, ESD and Surge requirements with IO Controller platform.

Возможности:

8 channel, 16 bit SAR ADC ADS8688 that supports from 300ksps to 30ksps per channel Programmable channels: Each channel can be configured as current or voltage input with software configuration Programmable Current Range (0-20mA) and Voltage range (+/-10V) Single 24V input power supply operation Designed for IEC-61000 compliance (IEC-61000-4-4: EFT up to ±2KV @ 5KHz on signal ports; IEC-61000-4-2: ESD up to 4KV contact & 8KV air discharge; IEC-61000-4-5: Surge up to ±1KV line-earth (CM) on signal ports)

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This design provides a 4-channel signal conditioning solution for differential ADCs integrated into a microcontroller measuring motor current using fluxgate sensors. Also provided is an alternative measurement circuit with external differential SAR ADCs as well as circuits for high-speed overcurrent and earth fault detection. Proper differential signal conditioning improves noise immunity on critical current measurements in motor drives. This reference design can help increase the effective resolution of the analog-to-digital conversion, improving motor drive efficiency.

Возможности:

Designed to measure all three phase motor currents along with DC link current through 6A Fluxgate Sensors (Scalable to 50A) Differential Signal Conditioning Circuit to interface Fluxgate Sensors with differential ADCs Measures current and voltage through integrated differential ADCs of TI Delfino™ F2837xD microcontroller with a provision to interface the signal conditioning circuit with External ADCs Two on-board 14-bit Dual Channel Simultaneous Sampling SAR ADCs with 4-wire SPI to interface with external motor controllers < 0.1% DC accuracy of Signal Conditioning Circuit Overload and Earth Fault Protections for each channels with < 100ns sensing delays

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This reference design demonstrates a small form-factor Controller Access Network (CAN)-to-Ethernet converter using the TM4C129XNCZAD 32-bit ARM&reg; Cortex&trade;-M4F MCU. Supporting 10/100 Base-T compliant with IEEE 802.3 standard, this reference design is useful for industrial drives monitoring and control, as well as Supervisory Control and Data Acquisition (SCADA) systems. The same hardware can be used as a CAN-to-Ethernet gateway or bridge with simple changes in the firmware. The gateway application is useful for monitoring remote CAN networks over Ethernet, while the bridge application is useful for coupling CAN networks via the the internet or local area netowork (LAN).

Возможности:

Fully integrated 10/100 Ethernet MAC and PHY with Advanced IEEE 1588 Precision Time Protocol (PTP) hardware and both Media Independent Interface (MII) and Reduced MII (RMII) support provides a compact Ethernet solution. Onboard non-isolated Controller Area Network (CAN) and RS-485 PHYs provides easy interface to a variaety of fieldbus solutions. Provisional connection allows High Efficiency Isolated CAN & Profibus Interface. JTAG connector for easy programming Expansion connectors provide access to communication, Analog-to-Digital Converters (ADCs), and General Purpose Input and Output (GPIO) interfaces for maximum flexibility 50-pin SDCC connector provided for easy interface to the MII and RMII Ethernet PHY for use with other controllers

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TIDA-00204 – референс дизайн, позволяющий оценить производительность двух гигабитных физических уровней DP83867 для индустриальных приложений и управляющего процессора Sitara со встроенным Ethernet MAC и свитчем. Плата разработана в соответствии с требованиями EMI и EMC. Встроенное программное обеспечение включает в себя драйвер физического уровня, UDP и TCP/ IP стеки и пример HTTP веб сервера. Хост-процессор сконфигурирован для загрузки предустановленного образа с SD-карты памяти. Виртуальный USB COM порт обеспечивает доступ к регистрам физического уровня Ethernet. Интерфейс JTAG позволяет создавать и загружать собственное программное обеспечение.

 

Возможности:

  • EMI и EMC - совместимый дизайн с широким диапазоном напряжения питания (17-60 В), использующий два гигабитных физических уровня DP83867IR и процессор AM3359 семейства Sitara для работы в тяжелых промышленных условиях;
  • Превосходит CISPR 11/ EN55011 Class A по требованиям излучения >4,6 дБ;
  • Превышает требования IEC61800-3 по EMC защите:
    • +/-6 kV ESD CD по IEC 61000-4-2,
    • +/-4 kV EFT по IEC 61000-4-4,
    • +/-2 kV Surge по IEC 61000-4-5;
  • Прошивка Sitara AM3359 включает UDP и TCP/ IP стек и пример HTTP веб сервера, загружается с SD-карты памяти, обеспечивая возможность автономной работы;
  • Доступ к регистрам DP83867IR по USB виртуальному COM порту для настройки конфигурации физического уровня, в том числе RGMII Delay Mode Hardware, поддерживающего Start-of-Frame Detect для использования стандарта IEEE1588 PTP.

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This Ethernet PHY Brick reference design enables Texas Instruments customers to quickly design systems and release them to market, using TI industrial Ethernet PHY transceiver devices, fully compliant to EN5501 Class A EMI requirements. A 50 Pin Interface has been provided to interface with 32-Bit Cortex M4 processor based Controller board. The board has been designed in a small form factor (2 inches x 3 inches) which makes it easy to fit into existing products. This reference design demonstrates the advanced performance of the DP83848K Ethernet PHY transceiver devices, supports 10/100 Base-T and is compliant with IEEE 802.3 standard. The entire reference design operates from a single power supply (5V with On-Board regulator or 3.3V). All other voltages required for the Ethernet PHY transceiver are internally generated.

Возможности:

Meets EN55011 Class A Radiated Emission Requirements Low Power Consumption = 264 mW DP83848K Ethernet PHY Configured for MII Interface Programmable LED Support for Link and Activity External Isolation Transformer with Common-mode Choke on PHY side for improved EMI and EMC performance HBM ESD Protection on RD± and TD± of 4kV

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This design provides a 4-channel signal conditioning solution for single-ended SAR ADCs integrated into a microcontroller measuring motor current using fluxgate sensors. Also provided is an alternative measurement circuit with external SAR ADCs as well as circuits for high-speed overcurrent and earth fault detection. Proper signal conditioning improves noise immunity on critical current measurements in motor drives. This reference design can help increase the effective resolution of the analog-to-digital conversion, improving motor drive efficiency.

Возможности:

Designed to measure all three phase motor currents along with DC link current through 6A Fluxgate Sensors (Scalable to 50A) Single-ended Signal Conditioning Circuit to interface Fluxgate Sensors with single-ended SAR ADCs Measures current and voltage through integrated SAR ADCs of TI Piccolo™ F28027 microcontroller with a provision to interface the signal conditioning circuit with External ADCs Two on-board 14-bit Dual Channel Simultaneous Sampling SAR ADCs with 4-wire SPI to interface with external motor controllers < 0.1% DC accuracy of Signal Conditioning Circuit Overload and Earth Fault Protections for each channel with < 100ns sensing delays

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Это экономически эффективное решение предназначено для точного измерения тока в пределах допустимого диапазона. Это достигается за счет применения высокоинтегрированной системы на кристалле (SoC), которая имеет до 7 каналов 24-битного Сигма-Дельта АЦП для измерения тока. Для измерения напряжения применяется 10-битное АЦП последовательного приближения. Мощность вычисляется из известных значений тока и напряжения. Данное решение имеет несколько внешних интерфейсов, таких как UART, JTAG и прочие. Реализована возможность управления нагрузкой.

 

Возможности:

  • Точные измерения через 7 каналов Сигма-Дельта АЦП
  • < 1% от 10% до 100% номинального тока (измеряется токовым трансформатором и прецизионным резистором)
  • Измерение напряжения при помощи АЦП последовательного приближения
  • Диапазон рабочих напряжений от -40°C до +105°C
  • Интегрированная система на чипе позволяет уменьшить стоимость и размер данного решения
  • Огромный выбор микроконтроллеров семейства MSP по производительности, возможностям и цене
  • Исходный код библиотека для проведения измерений для микроконтроллеров MSP
  • Низкая цена отладочного комплекта и средств разработки. Быстрый вывод продукта на рынок

 

 

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Последовательные интерфейсы широко используются для объединения различного оборудования в сеть. Но ввиду ограничений на дальность и скорость передачи данных последовательных интерфейсов, появилась потребность в более гибком и высокоскоростном способе передачи данных с возможностью подключения к современным «умным» сетям. За последние десятилетие Ethernet подтвердил свою эффективность в различных отраслях промышленности. Данное типовое решение демонстрирует возможность двухсторонней связи между последовательными портами и Ethernet, что позволяет подключить устаревшее оборудование, которое имеет только последовательные интерфейсы, к современным сетям на базе Ethernet, без изменения аппаратной части или программного обеспечения.

 

Возможности:

  • Простое решение с низкой стоимостью и малым количеством компонентов
  • 10/100 Ethernet MAC с аппаратной частью Advanced IEEE1588 PTP и поддержкой интерфейсов MII и RMII
  • Реализована возможность подключения внешних плат для изоляции интерфейса или POE
  • Встроенная неизолированная физика CAN и RS-485
  • Разъем на 50 контактов для внешней связи с MII/RMII Ethernet PHY
  • 1024 кБ флеш памяти и 256 кБ SRAM

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This small form factor, 12W power supply solution for protection relays handles an ultra-wide range of both AC and DC inputs making it a suitable platform to power a variety of lower power protection relays that need to be placed in a small housing. The power supply is designed to output industry standard voltages required in protection relays while also providing excellent line and load regulation. This solution has been engineered for high wattage with good efficiency and has also been pre-compliance tested for IEC61000-4 (EFT and Surge) and CISPR 11 Class A (Interference).

Возможности:

Small size yet handles ultra-wide range AC and DC inputs Enables usage in a variety of Protection Relays and RTUs Accurate outputs with excellent load and line regulation in the 3% range Platform solution with high wattage capability while providing efficiencies up to 78% Passes Pre-Compliance testing - IEC61000-4 (EFT and Surge) and CISPR 11 Class A (Interference) Power interruption handling with Ride Through > 75mS

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This power supply solution for Protection Relays & MCCBs handles both the current input from a Current Transformer (CT) or input from an Auxillary (Aux) source. The "self-powered" capability comes from being able to harness the power available in the grid through the CT. The flexibility of this solution's "dual-power" input comesfrom the ability to also handle the Aux input - which is often a battery source.

Возможности:

Higher shunt regulation voltage reduces power loss and improves efficiency Provides option for customer to use a CT with lower VA to reduce size of the product/transformer Excellent load transient performance and very sharp turn-on characteristic Simple and cost-effective electrical surge-protection circuitry for a wide range of applications

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A ready to use design that efficiently solves the problem of improper installation by adding antiparallel communication channels and appropriate control signal to enable polarity correction for the Controller Area Network (CAN) bus.

Возможности:

Simplifies system installation with use of one control signal to enable polarity correction in case of cross wire fault Discrete isolation enables tailored upgradability with other 16-pin SOIC DW packaged parts Custom isolated power creates high efficiency solution Turbo CAN Transceiver with fast loop times for large networks or fast data-rates ISO7842 - 5.7 KVRMS isolation rating

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TIDA-00284 proposes to integrate current control and plunger movement detection into an AC solenoid coil. This reference design provides a solution to control the solenoid current using a PWM-based controller along with a Hall sensor to detect plunger movement and switch from peak current to hold current mode Various applications in the field of industrial automation and material processing will benefit from up-to 70% reduced power consumption, accelerated process time, greatly simplified usage and enhanced monitoring capabilities.

Возможности:

PWM based current control optimizes power consumption for peak and hold time or according to fixed time settings Optional plunger movement detection based on Hall sensor Automatic switchover from peak to hold current mode at the end of completion of plunger movement or pre-set timer Activates alarm signal on detection of faulty plunger movement, under voltage or controller over temperature Complies with EN55011-Class A conducted emission limits

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The TI Design TIDA-00289 proposes to integrate current control and plunger movement detection into the solenoid coil. Various applications in the field of industrial automation and material processing will benefit from up-to 70% reduced power consumption, accelerated process time, greatly simplified usage and enhanced monitoring capabilities.

Возможности:

PWM based current control optimizes power consumption for peak and hold time or according to fixed time settings 2 options for plunger movement detection: Back-EMF and Hall sensor based Automatic switchover from peak to hold current mode at the end of completion of plunger movement Activates alarm signal on detection of faulty plunger movement, under voltage or controller over temperature Complies with EN55011-Class A conducted emission limits

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This reference design details a methodology to use the DP83849 evaluation board to implement a 10/100BASE-TX to 10/100BASE-FX media converter, which enables copper based legacy equipment to be easily connected to a fiber network. Copper based Ethernet (10/100BASE-TX) has been widely used in grid local area networks, but with limited communication distance. Fiber optic networking has been well established and has continuous cost reductions. It is feasible and cost efficient for utility to use fiber optic networks to manage wide area equipment, which brings higher speed, longer coverage distance, and more reliable communication.

Возможности:

Low power consumption, < 600mW Stand-alone Media Converter without any software programming Strapping by using jumpers for ease of evaluation Can be extendedfor use as a Dual 10/100 Copper Ethernet interface Well suited for Mini-size 10/100BASE-TX to 100BASE-FX Media Converter Application note describes how to use DP83849IFVS-EVK to demo the Media Converter application

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Данное решение – интерфейс для объединения многоканальных модулей измерения тока и напряжения. Решение является модульным, а использование по функции каскадного подключения к SPI, реализованной в АЦП последовательного приближения от TI, позволяет легко расширить количество каналов без увеличения количества используемых портов процессора. Кроме того, решение компактно, т. к. AFE реализует не только интерфейс для каждого канала, но и имеет встроенный источник опорного напряжения с низким температурным дрейфом.

Возможности:

  • Комплексное решение AFE включает в себя PGA (программируемый коэффициент усиления) и источник опорного напряжения
  • Решение обеспечивает высокую точность измерений без калибровки с низкой температурной зависимостью (малым изменением результатов измерений при изменении температуры)
  • Модульное решение + минимальное использование портов микроконтроллера
  • Расширения количества каналов входа путем добавления дополнительных АЦП последовательного приближения
  • Каскадное подключение нескольких АЦП последовательного приближения к одному SPI интерфейсу
  • Возможности для измерения и защиты сочетаются с высокой частотой дискретизации АЦП

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RS485 (изолированный, неизолированный) является популярным интерфейсом в сфере грид-инфраструктур и одной из главной опций в разрабатываемом в настоящее время оборудовании. TIDA-00308 позволяет быстро производить отладку и проводить процесс разработки с помощью устройств RS485 от TI в 3 различных случаях применения с помощью изолированного источника питания, который включён в этот проект. Кроме того, в руководстве пользователя приведены результаты испытаний данного проекта по стандартам IEC61000-4-2 (электростатический разряд) и IEC61000-4-5 (скачок напряжения).

 

Возможности:

  • В одном проекте приведены три сценария применений RS485
  • Доступны два изолированных питания, 5 В и 3,3 В
  • Статус передачи и приёма по RS485 отображается на светодиоде
  • Данный дизайн совместим со многими изолированными устройствами от TI для различных применений
  • Соответствует требованиям IEC-61000:
    • IEC-61000-4-2: электростатический разряд до 4 кВ (контакт)
    • IEC-61000-4-5: всплески напряжения до ±1 кВ
  • Нацелен на применения в качестве:
    • интерфейса с применением изолятора
    • неизолированного приёмопередатчика RS485
    • изолированного приёмопередатчика RS485

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Данное типовое решение демонстрирует гибкую систему аналоговых входов/ выходов для устройств Smart Grid, таких как защитные реле и удаленные терминалы, которым необходима связь с другими системами Smart Grid по напряжению (от 5 В до 10 В) или току (4-20 мА). В данном решении реализованы оба типа входов/ выходов, а также цифровое управление реле. Для подключения к процессору в модуле доступны интерфейсы SPI и I2C.

 

Возможности:

  • Аналоговые входы/выходы поддерживают:
    • входной ток 0-20 мА/ 0-24 мА/ 4-20 мА,
    • входное напряжение 0-5 В/ 0-10 В;
  • Превосходная точность входного сигнала < ±0.2 %;
  • Высокая частота дискретизации (до 500kSPS);
  • Простое подключение к микроконтроллеру с SPI интерфейсом;
  • Аналоговые выходы:
    • конфигурируемые - гибкость решения,
    • выход напряжения или токовый выход;
  • Последовательное подключение ЦАП сводит к минимуму количество занимаемых выводов микроконтроллера;
  • Цифровые выходы:
    • 4 более энергоэффективных выхода по сравнению с ULN серией.

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The TIDA-00316 reference design provides a reference solution for interfacing current output Hall sensors and current transformers to Pseudo-differential ADC (standalone and integrated into MCU). Two variants of signal conditioning circuits are designed to measure motor current using bipolar and unipolar supply voltages respectively. Both the signal conditioning circuits provide current measurement accuracy within ±0.5% for an operating temperature range from -25°C to +75°C.

Возможности:

On board current-output Hall sensor to measure nominal current up to 25A RMS Current measurement accuracy of 0.5% Common reference solution for interfacing both CT and current output Hall sensor with Pseudo-differential ADC/MCU Two different variants to work on unipolar and bipolar supply rails Designed to evaluate with Delfino F2837x Control Card Designed to evaluate with external ADC (ADS7253) for interfacing with Motor Controller

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This reference design demonstrates a dual isolated, half-duplex repeater with data rate independent flow-control for long-haul RS-485 networks suitable for industrial applications. The design provides transient protection protecting the signal path against ESD, EFT, and surge transients specified in the IEC 61000 family of transient immunity standards.

Возможности:

Data rate up to 100kbps Data rate independent flow control 4kV peak isolation IEC 61000-4-2 up to 16kV IEC 61000-4-4 up to 4kV IEC 61000-4-5 up to 1kV

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The TIDA-00368 reference design provides a reference solution for interfacing current output Hall sensors and current transformers to differential ADC (standalone and integrated into MCU). The differential signal conditioning circuit is designed to measure motor current with an accuracy of ±0.5% across operating temperature range from -25°C to +75°C. The output common-mode voltage of the differential amplifier can be selected to either 1.25V or 2.5V.

Возможности:

On board current-output Hall sensor to measure nominal current up to 25A RMS Current measurement accuracy of 0.5% Common reference solution for interfacing both CT and current output hall sensor with Pseudo-differential ADC/MCU Selectable output common-mode voltage for the differential amplifier Provision to evaluate with Delfino F2837x Control Card Provision to evaluate with external ADC (ADS8354) for interfacing with Motor Controller

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This reference design enables translation of high DC voltage inputs upto 300VDC into binary logic level voltages that a typical electronic circuit can handle. This solution is very flexible, not only handling input voltages from 18 to 300VDC but also allowing programmable switching thresholds to set binary levels. In addition, this solution enables < ± 3.0% (± 1V measured value step size) error in voltage detection coupled with reliable isolation > 2kV RMS.

Возможности:

High accuracy voltage measurement capability (< ±3% error) Flexible solution handling input voltages from 18V to 300VDC MCU enables programmable switching thresholds Excellent long term reliability with digital isolation included Provides option for wetting current control Output can be either I2C or digital output

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TIDA-00447 is a 24V, dual Brushless DC (BLDC) motor drive reference design to be used in major home appliances to drive low voltage BLDC motors such as pumps and fans, e.g. for circulation pump and drain pump of dishwashers. The power stages of motor drive are designed for 100W and 30W of continuous operation respectively. The 30W drive is based on a single chip, low external component count three-phase motor driver with integrated power MOSFETs and offers proprietary sensorless control scheme to provide continuous sinusoidal drive. It also features an integrated buck/linear regulator to efficiently step down the supply voltage to either 5 or 3.3 V for powering both internal and external circuit. The 100W drive is implemented using discrete approach having an MCU, external MOSFET driver with protections & current sensing and external power MOSFETs. This architecture offers the flexibility to scale the drive power level as needed. The MCU is programmed with InstaSPIN-BLDC software that implements sensorless trapezoidal control of BLDC motor using back-EMF integration method and it is also used to configure & control the speed of drain pump stage. Isolated UART interface enables communication of the drive unit with the main user interface controller. This reference design is fully tested for full load operation, over current and motor stall protections.

Возможности:

24V dual brushless motor drive platform for major home appliances using devices with extensive built-in protection features enabling safer, noiseless operation and small form factor. The lower powered motor drive is thermally designed for up to 30W continuous operation is based on a single chip, low external component count three-phase motor driver with integrated power MOSFETs and offers proprietary sensorless control scheme to provide continuous sinusoidal drive. The lower powered motor drive controller integrates 5V/3.3V buck/linear converter and protection functions such as over current, voltage surge protection, UVLO protection and motor Lock detection. The higher powered motor drive thermally designed 100W continuous operation is implemented using discrete approach having an MCU, external MOSFET driver with built-in protections & current sensing amplifier and external power MOSFETs. The discrete implementation of water circulation pump offers flexibility of easily scaling up or scaling down the power level. The MCU is programmed with InstaSPIN-BLDC software that implements sensorless trapezoidal control of BLDC motor using back-emf integration method offering robust low speed operation and finer control over the entire speed range.

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The TIDA-00454 TI design demonstrates using the MSP430F67791A device to accurately measure voltages and currents. This design also demonstrates using two DC analog output channels, which are capable of being individually configured for voltage output (±10 V) or current output (±24 mA). The design has six digital outputs that can be used to drive relays. The functionality of the design can be extended to measure power. The advantages of this design is that it is a complete system for measuring voltages and currents and providing a DC analog output proportional to the AC inputs. Another advantage of this design is the bidirectional DC analog output.

Возможности:

MSP430F67791A System-on-Chip (SOC) with 6 simultaneous Delta-Sigma ADCs for 3 currents and Voltages measurement Dual-Output 16-Bit DAC8563 , XTR300 and ISO7341FC based. Programmable DC Voltage or Current output; ±10-V DC or ±24 mA; Unidirectional or Bidirectional Digital Outputs – Six Open Collector Outputs for Driving Relays, Pulse and provided as open collector Voltage Measurement Range: 10% to 120% of Rated Voltage (230V) Current Measurement Range: 5% to 200% of Rated current (5A) On board Current transformer and Potential divider provided for direct measurement of Voltages and currents

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This reference design enables translation of wide range AC and DC voltage inputs up to 276V into binary logic level voltages that a typical electronic circuit can handle. This solution is flexible, not only handling input voltages from 15V to 276V but also allowing programmable switching thresholds to set binary levels. In addition, this solution enables < ± 3.0% (± 1V measured value step size) error in voltage detection coupled with reliable isolation > 2 kV RMS.

Возможности:

High accuracy measurement capability (<±3%) Low power consumption (< 1mA at 276V AC/DC input) Flexible solution handling AC and DC input voltages from 15V to 276V Excellent long term reliability with digital isolation included Provides option for wetting current control This design is tested and includes firemware, demo and design guide.

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The TIDA-00493 TI design is a fixed gain amplifier stage for measuring low amplitude voltage and current inputs accurately over a wide dynamic range using SAR ADC for power measurement applications. Low-amplitude AC voltage from voltage dividers, current transformers or split core current sensors with a 333-mV output can be accurately measured.

Возможности:

Op-Amp Based Fixed Gain Amplifier Stage for Voltage and Current Inputs With Output Compatible to ADS8688 Input Range of ±2.56, ±5.12, and ±10.24 V. Configurations Provided: Voltage Input With Resistor Divider > 1-MΩ Impedance (No External PT Required) 333-mV AC Voltage Output Type Current Sensor Interface CT Secondary Input With Burden Resistor: Single-Ended & Differential Onboard Programmable Reference Provided for Single-Ended Measurement Applications.

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The TIDA-00496TI Design is a compact brick for demonstrating capabilities of Precision PHYTERTM. As more systems in the power grid are using time information for real time analysis, timing becomes critical. This design achieves time synchronization with nanosecond accuracy using IEEE 1588v2 Precision Time Protocol (PTP). It can be configured for 10/100 Mbps copper interface or 100 Mbps fiber interface with small form factor LC type transceiver.

Возможности:

Design based on DP83630 Precision PHYTER™ - IEEE 1588 Precision Time Protocol Transceiver which supports IEEE 1588 V1 and V2 Design tested for 10/100 Mb/s copper interface and 100Base-FX fiber interface Tested for ESD IEC61000-4-2 contact discharge 6KV Power < 300mW at 3.3V for Copper HFBR-5961L/AL Transceivers for Fast Ethernet with LC connector (<175mA for transmitter, <120mA for receiver at 3.3V) Three Programmable LEDs for Link, Activity and speed

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THe TIDA-00498 reference design features signal processing front-end and self-power block for electronic trip unit (ETU) used in circuit breakers. A FRAM based micro-controller is used for processing current inputs from signal conditioning amplifiers for 3-phase, neutral and ground current. Two gains are used to extend the range for phase current measurement. This reference design can also self-power using rectified current input. TIDA-00498 is desiged for fast and repeatable tripping (within 30mS) for wide current and temperature range.

Возможности:

Measures three currents (phase) with input range of (0.2 to 12 INOMINAL) and two current (Neutral, Earth) with (0.05 to 2 INOMINAL) within ±3% Uses TI’s MSP430™ FRAM MCU for Fast Startup, Startup Time Including One-Cycle RMS Computation is < 30 ms Undervoltage Sense Provides Approximate 200-μs Reset Time After Power-Up Self-Power Supply (Rectified Current Input Based) With MOSFET-Based Shunt Regulation

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While Digital Fault Recorders (DFR) can detect transients in 17/20 μs at 60/50 Hz, Transient Recorders capture disturbances that can peak and decay well within a microsecond. This TI Design demonstrates the capturing of transient inputs at up to 1 MHz for Digital Fault Recorder and 25 MHz for Transient Recorders. Both positive and negative transients (<=2kV peak) can be captured with varying resolution based on application need (12-14 bit resolution) and within 10% accuracy using a differential amplifier driving a high speed converter.

Возможности:

Transient Recording from 10MHz - 25Mhz (> 166,000 samples/cycle) Digital Fault Recording of up to 1 MHz Differential amplifier front end to interface transient inputs to differential ADC Measurement Range: Capture input transient from 250 V to 2 kV peak, 1.2/50 us Measurement Sensitivity (10% - 100% of input voltage range): ±20 V (Resolution) for 2 kV peak Measurement Accuracy (10% - 100% of input voltage range): < 10% for Transient Capture and < 1% for Digital Fault Recorder Tested for Surge Immunity as per IEC61000-4-5 up to 4kV with 42Ω impedance

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TIDA-00500 is a reference design to provide power to load for short duration of time after a power interrupt has occurred. Traditionally Programmable Logic Controllers (PLCs) are equipped with a recharge battery source for alternative power. This battery source often suffers from drawbacks like complex charging topologies, charging time, periodic maintenance, and eco-hazards. In scenarios where PLCs need to be functional for a short duration of time after power interrupt, a capacitor based backup is a much simpler and more effective approach because of the higher power density in comparison to a standard battery-based solution.

Возможности:

Backup energy up to 6 joules (J) Inrush current protection with auto retry Capacitor charging time less than 0.5s Lower BOM Cost Design guide provides detailed description and performance test data

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В устройстве используются возможности уникального сенсорного модуля LDC1314 для реализации многофункциональной бесконтактной 16-кнопочной клавиатуры. Она использует стандартные технологии изготовления печатных плат и проста в производстве, что позволяет реализовать недорогое решение. Этот дизайн использует LDC1314, но так же может использовать LDC1312, LDC1612 и LDC1614.

 

Возможности:

  • Бесконтактные кнопки с превосходной надежностью электрического/ механического контакта;
  • Может быть легко использована для реализации экологических герметизированных кнопочных панелей повышенной прочности для работы в жестких условиях;
  • Поддерживает одновременные нажатия кнопок;
  • Устойчива к перепадам температур;
  • Легко масштабируется для больших массивов кнопок.

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This design (TIDA-00540) allows for communication over RS-485 or RS-232 data buses without requiring separate wiring for each. Data lines are shared between two different transceiver types, and a single control signal is used to determine which protocol is to be used.

Возможности:

Same interconnects can be used for both RS-485 and RS-232 communication Easy control of active protocol On-board TVS diodes for protection against overvoltage transients Compact size and minimum number of components This circuit is designed and tested, and its performance is documented in a test report.

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The TIDA-00555 TI Design demonstrates using of AMC1100, a fully differential isolation amplifier, as an analog front end to measure voltage and current. It demonstrates measurement of voltage inputs in an input-to-output isolation configuration and current inputs in a channel-to-channel isolation configuration. Also it includes power isolation, which makes it a complete subsystem for measuring isolated voltages and currents. This AFE can be used in applications that require replacing current transformers (CTs) with shunts. Shunts and potential dividers are provided onboard to directly connect current and voltage inputs.

Возможности:

Onboard shunt and potential divider provided for easier interface Input signal conditioned using Isolation Amplifier (fully differential) with fixed gain, high common mode rejection ratio and very low nonlinearity Three current input channels are galvanically isolated Three voltage input channels share a single isolated power supply Current accuracy performance < ±0.5% Voltage accuracy performance < ±0.5%

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The TIDA-00557 reference design provides an interface for a true RS-232 (eight signal + ground) physical layer interface for data terminal equipment (DTE) using a DB-9 plug-type connector with a provision for a data communication equipment (DCE) interface. This is intended for smart grid IED’s, protection relays and substation automation segments. This design meets +-/ 8kV contact discharge ESD protection as per IEC61000-4-2 and +/-1kV surge protection as per IEC61000-4-5.

Возможности:

Demonstrated Modem Control Hardware using RS232 with 2,4 and 8- wire interface Provide DTE /DCE Interface with DB-9 connector Baud Rate 1200, 2400, 4800, 9600, 19200-115200bps SN6501 transformer driver based Isolated output Galvanic Isolation by Digital isolators with options of 2, 4 and 8 Wire interface Operates with Single 5V input ESD IEC61000-4-2 +/- 8kV Contact Discharge Surge IEC61000-4-5 +/- 1.0kV

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The TIDA-00661 reference design features signal processing front-end subsystem for electronic trip units (ETU) used in air circuit breakers (ACB) or molded case circuit breakers (MCCB). This subsystem consists of Delta-Sigma ADC with 24-Bit resolution and fast startup (< 3ms), ±2.5V regulator, FRAM-based microcontroller (MCU) for interfacing to ADC and processing the inputs. The subsystem is designed to start-up, compute full-cycle RMS current, make decisions, and provide trip signal to the solenoid within 30 ms.

Возможности:

Measurement of AC input from 10V to 750V and 50mA to 25A within ±1% with fixed gain Voltage and Current inputs are interfaced to a 24-Bit Delta-Sigma ADC with Fast startup (< 3ms) DC-DC converters configured in Fly-Buck configuration to generate supply output (2W/ 8W) Provides option to measure 3 earth fault current inputs with a single gain opamp interfaced to 12-Bit internal ADC of MCU On-Board potential divider provided to measure the AC input voltage and Burden resistors are provided to connect external CT secondary input for current measurement Regulators generate 3.3V and 5V (MCU and ADC board), ±2.5V and 3V (ADC analog supply)

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TIDA-00701 is a 100W, 24V, Industrial AC-DC power supply designed for use in Industrial & Instrumentation systems such as process controls, factory automation and machinery control. This reference design has front end Power Factor Correction (PFC) circuit designed using UCC28051 PFC controller, followed by Quasi-Resonant flyback converter implemented using UCC28740 Primary Side regulated (PSR) CC-CV flyback controller, with all the necessary protections built-in. Hardware is designed and tested to pass conducted emissions, surge, and EFT requirements. The key highlights of this reference design are: Reduced component count design to achieve NEC Class-2 and Limited Power Source (LPS) norms Meets Energy Star Rating and 2013 EU eco-design directive Energy-related Products (ErP) Lot 6 Meets stringent current THD norms Robust output supply protected for output over-current, output short circuit, output over-voltage, and over temperature conditions

Возможности:

Wide operating input range 85-VAC to 265-VAC, with full power delivery over entire range. Designed to drive wide range of downstream 24V Industrial systems and motor drives up to 100W. High efficiency of 88% at 115VAC and >89% at 230VAC for wide load range from 40% to 100% load. No external cooling needed up to 60oC ambient operation High power factor >0.97 at both 115VAC and 230VAC for 100% load. Meets Current THD regulations as per IEC 61000-3-2, Class-A. Precision current limit within ±1% ensures maximum power delivery for entire AC input voltage range. Very low standby power of < 200mW. Start-up with high load capacitance up to 8500uF Built-in loss-less ORing feature for paralleling multiple modules Meets the requirements of Conducted Emissions Standard – EN55011 class B, EFT norm IEC6000-4-4 –Level-3, and Surge norm IEC61000-4-5 –Level-3.

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The TIDA-00702 is a 60-W, industrial AC-DC power supply designed for use in industrial and instrumentation systems such as process controls, factory automation, and machinery control. This reference design is a Quasi-resonant (QR) flyback converter implemented using the UCC28740 CC-CV flyback controller with optocoupled feedback for voltage and primary-side regulation (PSR) for constant current regulation, with all the necessary protections built-in. Hardware is designed and tested to pass conducted emissions, surge, and EFT requirements. The key highlights of reference design: Reduced component count design to achieve NEC Class-2 and Limited Power Source (LPS) norms Meets Energy Star Rating and 2013 EU eco-design directive Energy-related Products (ErP) Lot 6 Robust output supply protected for output over-current, output short circuit, output over-voltage, and over temperature conditions

Возможности:

Wide Operating Input Range of 85-V to 265-V AC With Full Power Delivery Over Entire Range Designed to Drive Wide Range of Downstream 24-V Industrial Systems and Motor Drives up to 60 W High Efficiency of > 89% at 115-V AC and > 91% at 230-V AC for Wide Load Range From 30% to 100% Load; No External Cooling Needed up to 60°C Ambient Operation Meets Current THD Regulations as per IEC 61000-3-2, Class-A Precision Current Limit Within ±1% Ensures Maximum Power Delivery for Entire AC Voltage Range Very Low Standby Power of < 200 mW Start-up With High Load Capacitance up to 8500 μF Built-in Lossless ORing Feature for Paralleling Multiple Modules Meets the Requirements of Conducted Emissions Standard – EN55011 Class B, EFT Norm IEC6000- 4-4 – Level-3, and Surge Norm IEC61000-4-5 – Level-3 Power Supply With Small PCB Form Factor (96 × 82 mm)

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The TIDA-00706 reference design is a 25W, multiple output, auxiliary power supply designed for use in power converters targeted for Server, Telecom and Industrial system applications. This solution is a multiple output flyback converter implemented using the UCC28700 to provide Constant-Voltage (CV) and Constant-Current (CC) output regulation and uses quasi-resonant valley-switching to achieve higher efficiency. The design is compact and low cost due to minimal component count with all the necessary built-in protections such as output overcurrent and output short circuit. Hardware is designed and tested to pass EFT requirements and meets low power efficiency performance of Department of Energy (DoE) Level VI standards. Additionally, the design has a built-in eFuse for fault isolation on 12V main rail without affecting any other outputs.
Возможности:

High average efficiency of 83.8% at 400VDC and 87.2% at 165VDC to meet DoE Level VI and EU CoC Tier-2 energy efficiency norms Peak efficiency of ~86% at 400VDC and ~88% at 165VDC at full load Low stand-by power (<100mW) to help meet no- load condition limits of multiple energy norms (DoE level VI and EU CoC Tier-2) Wide input voltage range from 120VDC to 400VDC to power universal input AC-DC converters Multiple outputs: -7.2/5/12V and isolated 6/7.2/11/12V to address all system rails in one unit

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The TIDA-00737 TI design demonstrates working of various functional blocks of an Automatic Power Factor Controller used in MV/LV electrical distribution including – Accurate measurement and computation of voltages, currents, power and power factor; Display of measured parameters using 4 digit seven segment display; Alarms and Status indication using LEDs; Switching outputs for driving Contactor or Thyristor for switching capacitor banks; Monitoring of local and remote temperature using a breadth of products from TI’s portfolio.

Возможности:

Accurate measurement of 3 Φ voltage, current (simultaneous sampling), power, power factor – Accuracy < 0.5% achieved using 24b ΔΣ ADC. Seven Segment (SS) LED – Two constant current drivers are cascaded to drive four digit SS LED display with decimal point. Relay/ Transistor output switching – Options for controlling Contactor and Thyristor is provided. 3 channels (expandable to 7) is dedicated for controlling Relay output (Contactors) 2 channels (expandable to 4), with isolation, for controlling Transistor output (Thyristors). Status indication – 16 LEDs are controlled using a constant-current LED sink driver. Sensors for Temperature and Light sensing are included.

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The TIDA-00738 TI design demonstrates a unique approach for extending the current measurement range using a single shunt and voltage measurement using AMC1304Mx5 Isolated Delta-Sigma (ΔΣ) modulator. With careful selection of a low value shunt resistor that minimizes power dissipation, a front end amplifier with low noise and by introducing two gain paths, both upper and lower current limit is extended. Accuracy of < ±0.5 % for both current and voltage measurement is achieved by interfacing the modulator output to AM437x host processor which performs the Sinc3 filtering.

Возможности:

Single Phase voltage and current measurement (shunt based) using isolated delta-sigma modulator (AMC1304Mx5) Measurement accuracy: AC Current: < ± 0.5% from 0.1A to 40A (or 60A) for In = 1A AC Voltage: < ± 0.5% from 10V to 300V AFE interfaced to host MCU (AM437x Sitara™ ARM® Cortex®-A9 Processor) which performs Sinc3 digital filtering using PRU-ICSS Onboard isolated ± 2.5V and +5.0V Power supply for AMC1304Mx5 and OPA188 using Transformer Driver and LDOs Designed to work from 0.1A to 60A (In=1A) and can be extended for wider range (In=5A) by changing Shunt and Gain values.

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The TIDA-00809 TI design showcases a cost optimized architecture that improves resolution of a binary input module. A microcontroller unit (MCU) is shared between two input channels (group isolation) to minimize the cost per channel. Wide input range is covered using an amplifier with gain and a MCU integrated 10-bit analog-to-digital converter (ADC) to measure with in ±3% accuracy. This architecture eliminates the need for multiple hardware versions based on input voltage range as is the case with an opto-coupler based topology. A digital isolator is used to communicate the ADC code or the root-mean-square estimate of the input to the host processor. The design is tested for ESD, EFT and Surge as per IEC61000-4 Level 4.
Возможности:

Measurement accuracy: <±3% over a wide input range for AC/ DC input using 10-bit SAR ADC MCU shared between two channels (group isolation) to minimize cost per channel with additional unassigned input channels for larger channel count group isolation Wide input range covered using an amplifier with two gain stages Choice of basic or reinforced isolation between input and the host processor using digital isolator Onboard current pulse generator (20mA-50mA, 50ms) using MCU PWM output to remove the contamination (anti-burnishing) on the binary input contacts

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The TIDA-00810 reference design accurately measures analog inputs performance and includes chip diagnostics to help identify power systems failures early by using a highly accuracy AC voltage and current measurement analog front end (AFE) and a four-channel, 24-bit simultaneously-sampling differential input Delta-Sigma ADC for measurement over wide dynamic range. The ADC is configured to measure 0-5 V unipolar. The inputs are scaled to ADC measurement range using a fixed gain amplifier with 2.5 V DC output level shift. The AFE can be used to measure output of a current transformer, potential divider with analog isolation and Rogowski active integrator. The AFE uses 10-Bit low resolution successive approximation register (SAR) ADC in parallel with a 24 bit ∑-∆ ADC for ADS131A04 diagnostics.

Возможности:

Data acquisition and diagnostics coverage provided using 24-bit ∑-∆ ADC and 10/12-bit SAR ADC Output from the ∑-∆ ADC is validated by comparing it with SAR ADC – peak/RMS value is used for validation ∑-∆ ADC reference output or external reference is monitored using a comparator Current measurement accuracy is verified using current transformer and Rogowski coil with hardware integrator Voltage measurement accuracy is verified using a potential divider (PD) without and with an isolation amplifier

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This reference design provides accurate measurements of ambient light intensity used to detect arc flash faults with a fast response of 1 ms, protecting or minimizing damages to power distribution switchgear. This design also monitors temperature (using switch, analog, digital or remote ), humidity, dust, and pressure accurately for online monitoring of busbar, transformers, and capacitor banks for early indication of faults, insulation failures, or ageing, resulting in increased operational life. This design provides a unique diagnostics approach within 1 ms during low load current for diagnostics of an ambient light sensor (ALS), increasing the system reliability. The sensors can be interfaced to microcontrollers with I2C or a low-power, wireless interface to perform weather transmitter functions for continuous online monitoring to simplify the system design.
Возможности:

Measures light, temperature, humidity, dust, vibration and pressure with support for multiple types of temperature and ambient light sensors Measures arc flash light using analog output ambient light sensor for fast response of <1 ms Uses 10-bit SAR ADC with I2C interface and alert output to measure output of ALS Deisgn uses hardware comparator for fast fault response to ambient light changes. Threshold can be set using 10-bit DAC or digital potentiometer Measures remote temperature using daisy-chain UART interface, alert output, and capability to daisy chain or multiplex sensors Supports accurate diagnostics of ambient light and temperature sensor with diagnostics time of ~1ms allowing online diagnostics

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The TIDA-00834 reference design accurately measures voltage and current inputs using simultaneously sampled, 16-bit, ±10 V, bipolar input SAR ADC critical to identify power systems malfunction and power quality related failures accurately and quickly. This results in reduced power systems downtime. The AFE includes signal conditioning based on precision instrumentation or precision amplifier for current measurement upto 125A and opamp based signal conditioning circuit for voltage measurement upto 300V. The gain amplifier for voltage and current inputs are used to scale the sensor output to the ADC range. Coherent sampling of the analog input signals is implemented using comparator and FPGA. The power supply for data acquisition front end is generated using a +5V input.
Возможности:

Based on bipolar input 16-bit 8-channel simultaneous sampling SAR ADC simplifying system design On-board potential divider with reinforced isolation amplifier and fixed gain precision amplifier for measurement up to 300V On-board DC/DC converter and LDOs to generate ±12V, ±15V, ±5V, +5V, +3.3V and isolated +5V from single +5V input for easy adaptation to current designs Measurement accuracy within ±0.25% for ≥ 1000:1 dynamic range Option to configure sampling rate and number of cycles for data capture using HMI enhancing system performances

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Базовый дизайн TIDA-00835 позволяет производить точное измерение тока и напряжения с использованием биполярной конфигурации входа посредством четырёхканального 24-битного дельта-сигма АЦП с одновременными выборками и дифференциальным входом в широком динамическом диапазоне. АЦП настроен так, чтобы измерять биполярный вход ±2,5 В. Входы отмасштабированы до диапазона измерения АЦП ± 2,5 В с использованием усилителя с постоянным коэффициентом усиления. Аналоговое аппаратное средство объединяет два АЦП с помощью внешнего тактового сигнала для увеличения входных каналов до восьми, выборка по которым происходит одновременно. С увеличением количества измерительных каналов в модуле уменьшается общая стоимость системы.

 

Возможности:

  • Точный сбор информации в широком входном диапазоне с помощью четырёхканального 24-битного дельта-сигма АЦП с одновременными выборками
  • Увеличение количества каналов за счёт объединения нескольких устройств и одновременная выборка путём синхронизации с общим буферным тактовым сигналом
  • Высококачественное измерение тока с помощью трансформатора тока или катушки Роговского с аппаратным интегратором
  • Высококачественное измерение напряжения с использованием делителя потенциала без/с изолирующим усилителем (с базовой или увеличенной изоляцией)

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The TIDA-00847 TI design showcases space and cost optimized architecture for a 4 channel DC input binary module with improved measurement accuracy and status indication using only two TI products simplifying system design. MCU based binary module improves measurement resolution of binary input resulting in improved system performance including accurate and repeatable fault indications and eliminates the need for multiple hardware versions (use same design for multiple nominal voltage inputs) reducing design, testing, manufacturing and field support efforts. In this TI design 4 input channels are configured as group isolated inputs to minimize cost per channel. A 10-bit analog-to-digital converter (ADC) measures the DC inputs with in ±3% ±1 V accuracy over wide range. Pre-compliance tests for EMI and EMC have been performed.
Возможности:

Binary input module design based on reinforced isolation ISOW7841 or ISOW7841F, digital isolator with integrated high efficiency, power converter with soft-start and 75 mA current output (quad with various configurations for GPIO or SPI or UART interface) simplifying system design MSP430G2332 or MSP430FR2111, MCU based 4 channel DC input or 2-channel AC or DC voltage input measurement type binary Input module ISOW7841 provides 46% efficiency with output ripple of 100mV for 70mA load (pkpk) Accuracy <= ±3% of measured value ±1 V (programming resolution or step size) Meets pre-compliance tests for EMI and EMC as per IEC61000-4 and CISPR22 standards

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This ethernet brick reference design provides a simplified solution that eliminates the need to have multiple boards for copper or fiber interface. It uses a small form factor, low power 10/100 Mbps ethernet transceiver to reduce board size for a cost optimized and scalable solution with reduced power consumption in high temperature industrial applications. The DP83822 provides all physical layer functions needed to transmit and receive data over both standard twisted-pair cables or connect to an external fiber optic (SC or ST or SFP) transceiver. The design provides option to configure different power supply levels for Analog and IO supply using fixed or programmable LDOs. The brick is interfaced to TM4C129X TIVA™ MCU with internal MAC. The design is tested for radiated emission, ESD and EFT as per IEC61000-4 standard level 4.
Возможности:

DP83822 ethernet PHY with fiber (100BASE-FX ) or twisted-pair (copper - 100BASETX and 10BASE-Te) interface Provision to configure analog and IO supply voltage levels separately based on application Programmable LED support for link and activity Meets EN55011 Class-A radiated emission requirements, and meets IEC61000-4-2 level 4 criterion B D83822 works for temperature of 40oC to 125oC

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The TIDA-00979 TI Design is a multi-segment RGB Signal Tower for industrial process automation. The reference design enables fully flexible control of color and brightness and allows to change easily the amount of segments. With this smart process condition and safety indicator any type of industrial stack light tower can be realized and configured via software.
Возможности:

Flexible and easy to control RGB LED tower light design Different configurable modes like: stack light, level indication, flash light Controllable RGB color, brightness and blinking speed 1-5 RGB LED segments, each with 4 individual channels Adjustable maximum LED current up to 60mA per channel

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The TIDA-01090 reference design enables half-duplex communication over an RS-485 bus without requiring additional driver-enable/receiver-enable controls. The design allows for the transceiver used on each node to go into transmit mode automatically when data is being transmitted from a local Microcontroller (MCU) or Universal Asynchronous Receiver/Transmitter (UART) and then transition back into receive mode once the data frame is complete.
Возможности:

Automatically enables an RS-485 driver when data is output from an MCU or UART Transitions RS-485 transceiver into receive mode when data is not being transmitted Works with any RS-485 transceiver Low-cost due to minimal number of components Adjustable data frame length via passive component selection

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This reference design provides accurate measurements of AC voltage and current inputs using a precision 16-bit SAR ADC over a wide input range, covering protection and measurement range (including sampling requirements of IEC 61850-9-2), simplifying system design and improving trip time performance and reliability. The analog input module (AIM) is isolated from the host processor using a digital isolator with an integrated power. For a limited function and cost optimized design approach, An AC AIM can be designed using only three TI products, reducing system cost and board size. The alarm feature identifies the AC analog input faults on a sample basis for faster fault detection. The ADC has an additional auxiliary channel to diagnose the supply output of the digital isolator. A 12-bit ADS8668 ADC with a gain amplifier can increase the dynamic range by using programmable internal ranges, further optimizing the system cost.
Возможности:

This referencedesign is based on ADS8688A 16-bit SAR ADC and supports measurement of up to 16 analog inputsby daisy chaining ADC interface isolated from host for improved safety in harsh operating conditions using ISOW7841 with integrated power converter providing current output of > 60 mA with efficiency ≥ 45% AC AIM provides ENOB of > 14.9 bits, SNR of > 91 dB, and THD of > –110 dB 12-bit ADC8668 with front-end gain amplifier for increasing dynamic range of low-voltage output sensors in cost-optimized applications Load switch used at input of ISOW7841 to protect AC AIM during output overload

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This reference design highlights an architecture that is optimized for size and cost for achieving channel to channel isolation when measuring AC/DC voltage and current signals. Accuracy of ±0.3% is achieved using an ultra low power (<1mW @ 1MSPS) 12-bit ADC and an ARM core MCU. Space savings and component count reduction is achieved using a digital isolator with integrated power converter that isolates channels and ADC and MCU.
Возможности:

Channel to channel isolation using digital isolator with integrated power converter (ISOW7841) AC/DC voltage and current measurement accuracy AC Voltage: < ±0.25% for 5V-300V AC Current: < ±0.3% for 0.5A-50A Ultra low power (<1mW) data acquisition using ADS7043/ADS7044 and TLVx316 Space savings achieved using REF1930 (integrated REF, REF/2) and ISOW7841 (integrated digital isolator, power converter) Low power consumption and simplified multi-SPI interface achieved using MSP432P401R, an ARM® Cortex®-M4F based MCU

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This reference design showcases a data acquisition architecture that uses a dual channel SAR ADC paired with a digital isolator with integrated power converter to achieve phase isolated, simultaneous measurement of voltage and current. Accuracy of <0.3% is achieved using 12-bit, 2-channel, 750ksps ADC while the digital isolator isolates both data and power. An ARM® core MCU with multi-SPI peripherals is used to interface with ADC as it provides flexibility to the interface. A two-chip data acquisition architecture allows users to adapt the ADC performance to their dynamic range and resolution requirements.
Возможности:

Phase isolated simultaneous voltage and current measurement using highly integrated components. Simultaneous AC voltage and current measurement accuracy:– AC Voltage: < ±0.25% for 5 to 300 V. – AC Current: < ±0.3% for 0.5 to 50 A Data acquisition specifications: 12-bit, 14-bit at 750ksps pin compatible ADC family Reinforced isolator at 100Mbps data rate with integrated power converter Digital processing specifications: ARM® 32-Bit Cortex®-M4F CPU for advanced measurement and monitoring computations Multi-SPI interface with 8-channel DMA to interface with multiple ADCs Performance vs. space trade-off using two-chip architecture

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This processor-based reference design facilitates a quicker time to market and helps customers design cost-effective, human machine interface (HMI) solutions for protection relay. This reference design showcases a two-dimensional (2-D) Qt graphical user interface (GUI), which is typical for protection relay HMI, along with TI processor capabilities for software rendered graphics. The AM335x processors provide scalability by offering a range of processing speeds and using the same software development environment to satisfy low- to high-end applications as well as ample connectivity with the key peripherals required for protection relay HMI, such as universal asynchronous receiver/transmitter (UART) and CAN.
Возможности:

Example screens of protection relay HMI using software accelerated graphics and Qt Resistive touchscreen enabled Support for 480 x 272 resolution on included 4.3-inch LCD; scalable up to 2048 x 2048 on other displays Built on TI's processor SDK-Linux for scalability to other Sitara processors

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The Programmable Real-time unit within the Industrial Communication Subsystem (PRU-ICSS) enables customers to support real-time critical applications without using FPGAs, CPLDs or ASICs. This TI design describes the implementation of the SPI master protocol with signal path delay compensation on PRU-ICSS. It supports the 32-bit communication protocol of ADS8688 with a SPI clock frequency of up to 16.7MHz.

Возможности:

SPI master protocol with adjustable signal path delay compensation (not requiring external hardware for signal path delay compensation) Up to 16.7MHz SPI clock Supports ADS8688 SPI communication protocol Automatic measurement of signal path delay for known slave response This PRU-ICSS firmware has been validated with TIDA00164 (ADS8688 and ISO7141CC) and contains firmware source code, implementation description and getting started instructions.

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The TIDEP0053 TI Design implements a solution for high-reliability, low-latency network communications for substation automation equipment in Smart Grid transmission and distribution networks. It supports the High-availability Seamless Redundancy (HSR) specification in the IEC62439 standard and Precision Time Protocol specification in IEEE1588. This solution is a lower-cost alternative to FPGA approaches and provides the flexibility and performance to add features such as IEC61850 support without additional components.

Возможности:

Compliant to IEC62439-3 Clause 5 specification for HSR Ethernet communications. IEEE 1588 peer-to-peer transparent clock profile for network synchronization Traffic filtering based on VLAN ID’s, multicast/broadcast support, and built-in storm prevention mechanism Zero recovery time in case of network failure • Dual-ported, full-duplex 100Mbps Ethernet Fully programmable solution provides platform for integration of additional applications.

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Описание:
The TIDEP0054 TI Design implements a solution for high-reliability, low-latency network communications for substation automation equipment in Smart Grid transmission and distribution networks. It supports the Parallel Redundancy Protocol (PRP) specification in the IEC 62439 standard. This solution is a lower-cost alternative to FPGA approaches and provides the flexibility and performance to add features such as IEC 61850 support without additional components.
Возможности:

Compliant to IEC 62439-3 Clause 4 specification for PRP Ethernet communications Traffic filtering based on VLAN ID’s, multicast/broadcast support, and built-in storm prevention/supervision mechanism Zero recovery time in case of network failure Dual-ported, full-duplex 100 Mbps Ethernet Fully programmable solution provides platform for integration of additional applications

Документация:
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Описание:
The TIDEP0074 referencedesign demonstrates packet switching and filtering logic implemented in the M4 core of AM572x based upon the Ethertype, MAC address and Application ID (APPID) of GOOSE packets received from the PRU-ICSS. Packets are filtered and routed to destinations in order to allow the time-critical events defined in substation communication standard IEC 61580 to be serviced in a dedicated core. The design additionally shows multi-core communication between the ARM Cortex™-A15, Cortex™-M4 and DSP C66x™ cores of the AM572x while Linux runs on the A15s and TI-RTOS runs on the M4 and DSP cores.

Возможности:

Ethernet packet switching logic and IEC61850 GOOSE filtering algorithm implemented on ARM Cortex-M4 cores of AM572x to determine destination routing to A15 or further processing in M4. Interprocessor Communication (IPC) using messageQ in A15 with Linux, and in M4 and DSP with TI-RTOS PRU-ICSS firmware load and boot by M4 for Ethernet packet transfer The TIDEP0074 reference design is tested on the TMDXIDK5728 board and includes documentation, software, demo application, and HW design files.

Документация:
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  • BOM
Описание:
The TIDM-THDREADING reference design implements power quality analysis in a three-phase energy measurement system. Power quality monitoring and analysis has an increasingly large role in improving the reliability of the electricity grid. The design measures Total Harmonic Distortion(THD), monitors voltage sags and swells, and measures phase-to-phase angles to help determine phase sequence and prevent accidental phase swapping. Four-quadrant energy measurement is supported for net metering systems with bi-directional energy flow.

Возможности:

THD calculated for voltage and current Voltage sag and swell events logged with programmable threshold levels Phase-to-phase angle measurement Four quadrant energy measurement with Class 0.2 accuracy Complete Energy Library with fundamental voltage and current, fundamental active and reactive power, active and reactive energy, Root Mean Square(RMS) current and voltage, power factor, and line frequency

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Документация:
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  • Топология платы
Описание:

Устаревшее оборудование часто имеет только последовательный порт, что делает проблематичным подключение таких устройств к общей сети и получение доступа к ним на больших расстояниях (например, подключение к станциям удаленного управления). Преобразователь последовательного интерфейса в Ethernet (S2E) является простым решением данной проблемы. Данное типовое решение от TI – преобразователь S2E на базе микроконтроллера TM4C129x (Tiva) позволяет сократить издержки при производстве и время выхода устройства на рынок.

Возможности:

  • Две пары портов позволяют одновременно и независимо подключить два разных устройства с последовательным портам;
  • Конфигурируемый HTTP Web–сервер для управления параметрами динамического распределения IP адресов, настройками последовательного порта и порта Telnet;
  • Параметры конфигурации хранятся в энергонезависимой памяти (EEPROM) с возможностью восстановления заводских настроек;
  • В программном обеспечении используются FreeRTOS™ для управления планировщиком задач, lwIPTCP/ IPстек и TivaWare™ для микроконтроллеров серии TivaC (включая библиотеки драйверов) для упрощения разработки приложений;
  • Программное обеспечение разработано для отладочных плат EK-TM4C129XL (LaunchPad) и DK-TM4C129X (с минимальными изменениями) и поддерживает такие среды разработки, как Code Composer Studio™ от TI, Keil® MDK, IAR™ Embedded Workbench и GNU;
  • Дополнительная плата с аппаратным интерфейсом RS-232 для простого подключения к EK-TM4C129XL и DK-TM4C129X.

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Документация:
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Описание:
This single-supply open loop current sensing solution to accurately measure dc, ac and pulsed currents. Allows highly accurate current measurements up to 110 A

Возможности:

• Current range up to 100 A • Integrated fluxgate sensor • Sensitivity of 20 mV/A • Current range up to 100 A • Integrated fluxgate sensor • Sensitivity of 20 mV/A

Документация:
  • Даташит
  • Схемотехника
  • BOM