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Кондиционер, внешний блок

Описание:
This design uses the UCC28610 quasi-resonant flyback controller to generate 3 isolated outputs from an universal input (90VAC - 290VAC). It was built on a low cost single layer PCB. The regulated output provides 12V@1.89A and the maximum output power is 33W.

Возможности:

Universal input voltage Valley switching Multiple outputs Single Layer PCB

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PMP10276 is an isolated flyback design with an input range of 85VAC - 265VAC, and an output of 12V at 2A using UCC28700 PSR controller. Efficiency is greater than 83.8% at 120VAC input and 84% at 230VAC input. PMP10276 also has 111mW and 174mW no load power consumptions at 120VAC input and 230VAC input, respectively.

Возможности:

Compact design with 1.6in x 2.25in xy dimension Transformer height less than 0.64in Full load efficiencies are 83.8% at 120VAC input and 84% at 230VAC input No load power consumptions are 111mW at 120VAC input and 174mW at 230VAC input Input range is 85VAC - 265VAC Testing report available

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A quasi-resonant primary-side regulated isolated Flyback is used to provide 12V @ 1A from universal input voltage (90Vac to 264Vac). The converter does not employ any optocoupler and regulates the output voltage by sensing the auxiliary winding on primary side. A peak input voltage detector is used to sense input AC voltage, delivering 1/100 AC RMS equivalent voltage, with a +/-5% precision.
Возможности:

Simple isolated PSR Flyback converter with integrated 700V FET Compact solution ("L" shaped PCB) supplies 12W with almost flat efficiency from 50mA to 1A load (75%...84%) Opto-less topology increases the reliability of the power supply Good output voltage regulation versus load: +/-5% in the whole temperature range

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PMP4259 is a universal AC input, 400V output 3000W interleave PFC controlled by UCC28070.
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The PMP4387 is a low cost single side PCB board solution for AC in, 12V0.5A and 5V50mA dual-rail output on board design. By using primary side regulation (PSR) mode chip UCC28722 which drives bipolar power device, typical efficiency as high as 86.4% @230Vac full load is achieved. The overall size is limited in 43mmx28mmx16mm.

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The PMP7026 reference design uses the TPS54227 synchronous step-down converter to generate a non-isolated output (3.3V @ 1A). Adaptive on-time D-CAP2 mode provides a fast transient response with no external compensation components.
Возможности:

4.5V to 18V input Fast transient response MOSFET integrated converter Test report available

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Описание:
The PMP9638 reference design uses the UCC28740Flyback with resonant-ring valley-switching controller to generate dual DC output 12V/2A and 3.3V/0.5A from a universal AC input. This design minimize switching loss in FET to provide high efficiency. The current regulation feature of the UCC28740 provides accurate current limit protection.

Возможности:

Universal input 85 -264VAC Dual outputs Output constant voltage and constant current mode hold up time for outputs Lower Switching loss

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This bipolar stepper motor system implements an MSP430, a DRV8818, and a NEMA 23 motor. It's suitable for applications requiring up to 140 oz-in of torque, and up to 800 RPM. Motor voltage support is 8V to 35V, and max current is 2.5A. A multitude of configuration options allow fine tuning of the current waveform, including the regulated current level, the microstepping applied, H-bridge FET states during current decay, the time interval of current decay, and current deglitch time. The motor drive stage has integrated protection from short-circuit, shoot-through, under-voltage, and over-temperature.

Возможности:

Highly configurable current waveform allows maximum tunability Integrated power FETs support 8V to 35V and 2.5A Motor speed is easily controlled by the STEP frequency Hardware state machine modulates current with up to 1/8 microstepping for a smooth motion profile Integrated protection for short-circuit, shoot-through, under-voltage, and over-temperature Note: Motor must be ordered through the manufacturer

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This reference design is a power stage for brushless motors in battery-powered garden and power tools rated up to 1 kW. The power stage operates from a 10-cell lithium-ion battery with a voltage range from 36 to 42 V. The design uses CSD18540Q5B NexFETs featuring a very low drain-to-source resistance (RDS_ON ) of 1.8 mΩ in a SON5x6 SMD package, which results in a very small form factor of 57 × 59 mm. The three-phase gate-driver DRV8303 is used to drive the three-phase MOSFET bridge, which can operate from 6 to 60 V and support programmable gate current with maximum setting of 2.3-A sink / 1.7-A source. The power stage can be configured for a single-shunt or three-shunt current sensing. The design supports sensorless control for brushless DC (BLDC) and permanent magnet synchronous motors (PMSM) using trapezoidal control or field oriented control (FOC). The C2000™ Piccolo™ LaunchPad™ is used with the power stage to implement InstaSPIN™-FOC using the motor current and voltage feedback. The corresponding test report evaluates the thermal performance of the board and overcurrent protection features such as cycle-by-cycle control and latch control of the DRV8303.

Возможности:

1-kW Power Stage with Field Oriented Control for Permanent Magnet Synchronous Motors, Designed to Operate from 10-Cell Li-Ion Battery Voltage Ranging from 30 to 42 V Delivers up to 30-A RMS Continuous Motor Current with an Airflow of 400 LFM Small PCB Form Factor of 57 × 59 mm using 60- V/400-A PEAK, 1.8-mΩ RDS_ON, SON5x6 Package MOSFETs for Power Stage Uses DRV8303 Three-Phase Gate Driver, Which Can Operate from 6 to 60-V Input, Supporting Programmable Gate Current With Maximum Setting of 2.3-A Sink / 1.7-A Source Overcurrent Protection Configurable for Cycle-by- Cycle Control or Latch Shutdown Designed to Operate at an Ambient Temperature of –20°C to 55°C

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Refrigerators often use a damper to control airflow and a fan to provide circulation. While discrete solutions have been used for years, this TI Design uses integrated motor drivers that provide easy control, high performance, and full protection. The DRV8848 drives the stepper motor damper, and the DRV10983 drives the BLDC fan with quiet 180° commutation. The BLDC even has closed-loop speed control, using an MSP430G2553 and the DRV8812 for a PWM-based power supply. The whole solution uses a single-layer PCB. BLDC and stepper control example code is provided in the MCU firmware. Protection from over-current, over-temperature, and under-voltage are all integrated in the DRV devices.

Возможности:

Easy control of the stepper motor damper and BLDC, along with high performance and full protection. Single-layer PCB design for cost efficiency. Full-step and Half-step indexing examples for the damper. PCB layout accommodates a circular fan. 180° sensorless BLDC control with ultra-low acoustic noise. BLDC has closed-loop speed control with minimal hardware changes

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This reference design provides a simple means through which to isolate I2C or SPI type communication lines. This is often required in Grid Infrastructure applications such as, protertion relays and circuit breakers, where high voltages are involved. This reference design provides the complete solution in which, both power isolation and signal isolation is handled.

Возможности:

Module designed such that it can be adopted with designs requiring isolation for Communication channels (Transformer and Motor / Generator protection) Designed to Operate with 24V Auxiliary DC input (typical in smart grid) Optimized design for Multiple Isolated & Non-Isolated Supplies using single Converter Device capable of providing signal isolation of 2500 Vrms for 1 minute per UL and 4242 Vpk per VDE

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Описание:
This reference design is a multiple output (12V, 3.3V/5V), 2.4W bias power supply for home appliances using a low cost Quasi-resonant PWM controller. The design supports conversion of wide range DC input ranging from 90V DC to 425V DC or AC input ranging from 85V AC to 300V AC to standard power rails of 12V and 3.3V/5V. TIDA-00434 is able to achieve reduced switching losses, using a buck power stage operating in discontinuous mode with valley switching. The design offers high efficiency (>70%) and low stand-by power of <100mW when system is in idle mode. The design uses low cost external 800V BJT as a switch providing higher operating voltage margin. The PWM controller has integrated safety feature that turns off the external switch in case of loss of feedback which helps in preventing high output voltages. Reconfiguring the designfor different output voltage and standby power consumption levels is easier with simple resistor value changes. Overall the design offers a simple and rugged bias power supply with low standby power.

Возможности:

Designed for wide operating input range 90VDC to 425VDC or 85 VAC to 300 VAC Very low standby power of < 100mW for no load conditions. Ultra-Simple circuit with low cost Off-the-shelf components Tight output regulation of < ±1% on all output rails. Robust Supply protected for Output Over-Current, Short-Circuit and Output Over-voltage conditions. Inherent open loop /loss of feedback detection in the controller shuts the converter and safe-guards the system from High voltage intrusion. Configurable for most of the output voltage needs from 1.5V to 15V with simple resistor change. Efficiency of 75% at 125VDC input, and 74% at 325VDC input and full load Small PCB form factor of 52 x 25 mm offers simplicity in usage. Meets the requirements of Conducted Emissions standard – EN55011 class A

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This reference design is a power stage for brushless motors in battery-powered garden and power tools rated up to 1 kW, operating from a 10-cell lithium-ion battery with a voltage range from 36 to 42 V. The design uses 60V, N-channel NexFETsTM featuring a very low drain-to-source resistance (RDS_ON ) of 1.8 mΩ in a SON5x6 SMD package, which results in a very small PCB form factor of 57 × 59 mm. The three-phase gate-driver is used to drive a three-phase MOSFET bridge, which can operate from 6 to 60 V and supports programmable gate current with maximum setting of 2.3-A sink / 1.7-A source. The C2000™ Piccolo™ LaunchPad™ LAUNCHXL-F28027 is used along with this power stage and 120 degree trapezoidal control of BLDC motor with Hall sensors is implemented in software. The cycle by cycle current limit feature in the gate-driver protects the board from excessive current that is caused during motor stalls, by limiting the maximum current allowed in the power stage to a safe level.

Возможности:

1-kW Power Stage with Hall sensor based Trapezoidal Control for Brushless DC Motor implemented on TMS320F28027 MCU. Designed to Operate from 10-Cell Li-Ion Battery Voltage Ranging from 30-V to 42-V Delivers up to 32-ARMS Continuous Motor Current With an Airflow of 400 LFM Small PCB Form Factor of 57mm x 59 mm using CSD18540Q5B 60-V/400-Apeak, 1.8-mΩ RDS_ON, SON5x6 package MOSFETs for Power Stage Uses DRV8303 Three-Phase Gate Driver, Which can Operate from 6 to 60-V Input, Supporting Programmable Gate Current With Maximum Setting of 2.3-A Sink / 1.7-A Source Hardware Cycle-by-Cycle Overcurrent limit with Configurable Threshold for motor stall protection Provision for Sense Feedback of Individual Phase Voltage, DC Bus Voltage, DC Bus current sense and Low-Side Current sense on Each Phase for Sensorless Control TPS54061 based 3.3-V/0.15-A Step-Down Buck Converter for Powering MCU Designed to Operate at an Ambient Temperature of–20°C to 55°C

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The TIDA-00472 is a discrete IGBT-based three-phase inverter for driving brushless DC (BLDC) motors rated up to 250 W, for example, used in cooker hoods, using a sensor-less, trapezoidal control method. The design provides software implementation for DC bus voltage ripple compensation resulting in 30% reduction in the DC bus capacitor requirement and reduced overall BOM cost. The cycle-by-cycle overcurrent protection feature protects the power stage from large current spikes and the board can work up to 65°C ambient. This design has also been tested to pass EN55014 standards for conducted emissions, Surge and EFT.

Возможности:

250W Mains Powered BLDC Motor Drive with Sensor-less Trapezoidal Control using InstaSPIN-BLDC Software Implementation for DC Bus Ripple Compensation Resulting in 30 % Reduced DC Bus Capacitor Current Sensing using Single Shunt on the DC Bus Return for Cycle-By-Cycle Current Limit and Protection The High Efficient Circuit Board Enable Working up to 200W without heat sink up to 65 OC ambient temperature Hardware design to meet surge, EFT and conducted emission as per EN55014 This Design is a Tested, Ready to Use Hardware and Software Platform for Drving High Voltage BLDC Motors

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The TIDA-00473 is a reference design of universal input, 10-W high efficiency, low cost power supply with three isolated outputs. This is a Constant-Voltage (CV) and Constant-Current (CC) flyback converter without Optical-Coupler and external MOSFET. The hardware is designed and tested to pass conducted emissions, surge, and EFT testing as per the EN55014 requirements for household appliances. This can be used in applications like cooker hoods and other appliances wherever motor drive along with user interface is involved.

Возможности:

Universal input voltage range to address customer needs across all regions Up to 700-V Start-Up and Smart Power Management Enables < 30-mW Standby Power Primary Side Regulation (PSR) control eliminates the optical-coupler Multiple operating modes and valley switching for optimum efficiency over entire operating range Valley Switching and Frequency Dithering to Ease EMI Compliance No need of external voltage compensation components Meets the requirements of Conducted Emissions standard – EN55022 class B Meets the requirements of EFT norm IEC6000-4-4 & Surge norm IEC61000-4-5 Small Use PCB form factor (72 x 65 mm)

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The TIDA-00564 TI design is meant to be a universal sensor Interface (IF) based on a SAR ADC built in a BoosterPack form factor to be easily connected to TI LaunchPad for development and testing. The analog front-end (AFE) circuitry has been carefully designed to reduce the noise and increase the sensitivity of the system, which makes it ideal choice for sensor interfaces such as thermopiles, Infrared (IR) thermometers, thermocouple amplifiers, pH electrode buffers and Piezoelectric accelerometers.

Возможности:

Physical form factor in BoosterPack for compatibility with all TI LaunchPad Scalable from generic to specific evaluation within minutes Low-input referred noise and low input bias current Suitable 16 bit SAR ADC:ADS8320 Ideal choice for high-impedance output sensors

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The TIDA-00618 reference design is a Primary Side Regulation switcher which provides isolated dual outputs, 5V and 12V rails, with DC stacking of the secondaries to provide output voltage regulation that is equivalent to opto-coupler based solution. Low system parts count and built in advanced protection features result in a cost-effective solution with an average efficiency of nearly 75% at 230V

Возможности:

Isolated 5V and 12V output at 500mA maximum Conducted EMI compliant 100ms typical start-up time Primary side control eliminates need for optocoupler Input under & Output over voltage protection Primary over current protection Controlled start up and restart after fault Protection

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For achieving energy efficiency, ceiling fans and ventilation fans are moving from simple AC induction motors to brushless DC motors (BLDC). Operation of BLDC motors from AC supply requires AC-DC conversion with high efficiency and power factor. It also needs an inverter which is controlled efficiently for low noise operation. The reference design TIDA-00652 helps to meet these challenges of higher efficiency and power factor in a simpler way, by using a single stage power supply to convert the AC mains input into low voltage DC output. It also combines a fully integrated and well protected single chip sensor-less sinusoidal brushless motor controller for low noise operation.

Возможности:

High efficiency, single power stage to convert 230 VAC to 24 VDC Buck PFC topology, to achieve high input Power Factor (>0.94) and high efficiency (>91%) Universal input capability (50/60 Hz, 90-265 VAC) with minimum variation in efficiency Startup and full speed operation even at 90 VAC Input Highly integrated and protected single chip, sinusoidal brushless motor controller reduces external parts count and helps avoiding motor control programming overhead IR Remote based speed control

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TIDA-00707 is a 1-kW, compact (100mmX80mm) power factor converter (PFC) designed for telecom, server, and industrial power supplies. This reference design is a continuous conduction mode boost converter, implemented using a UCD3138A Digital Power Supply controller with all protections built-in. Hardware is designed and tested to pass conducted emissions, surge, and EFT (as per EN55014) requirements. This reference design provides a ready platform of front-end PFC to address various power supplies up to 1 kW, Improves overall system performance lower bus capacitance, lower RMS currents, and front-end protections. It meets stringent current THD and power factor norms and protects from output overcurrent, overvoltage, and undervoltage conditions.

Возможности:

Wide Operating Input Range: 195-V to 270-VAC Designed to Drive Wide Range of Downstream DC/DC Converters and Inverter-Fed Motors up to 1 kW High Power Factor > 0.99 and < 5% THD From Medium-to-Full Load (50% to 100%); Meets Current THD Regulations as per IEC 61000-3-2 High Efficiency of > 97% at Full Load Over Entire Operating Voltage Range PFC Converter designed with a simple, small PCB form factor (100 x 82mm)

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In order to provide system designers a new cost-effective and easy alternative to assured precision temperature measurement, this reference design discusses the new tiny 2-pin digital output IC temperature sensor with single wire pulse count interface that enhances reliability and greatly simplifies the design of galvanic isolation architecture for sending both power and unidirectional data through same low profile transformer and remote operation. In addition, with fewer error sources, computation of error budget is easier. Cost budgets, accuracy, size and simplicity of interfacing with other circuit elements are main factors in selecting a sensor to do a job and this reference design system tremendously helps in meeting all these requirements. With less-than 0.25°C maximum measured error over temperature range -50°C to 150°C, functional isolation of 400VRMS and IEC61000-4-4 pre-compliance testing, this design significantly reduces the design time for development of high-accuracy temperature measurement systems.

Возможности:

Allows Single Low-Profile Transformer for Power and Data Isolation While Eliminating the Need for Optocoupler or Digital Isolator on Data Line Power and Data Coexist on 2–Wire Interface for Remote Temperature Sensing Across Isolation No Need of System Level Calibration Unlike Thermistors Replacement for RTDs and NTC or PTC Thermistors Eliminates High-Precision Active or Passive Components Functional Isolation of 400 VRMS and Dielectric up to 2500-V AC for 60 seconds Pre-Compliance Testing: Meets IEC61000-4-4 EFT (Level 4): ±2 kV – Class-A Accuracy Over Temperature: Measured Error Using LUT: < 0.25ºC (-35ºC to 150ºC) Measured Error Using 1st Order Transfer Function: < 0.25ºC (15ºC to 100ºC) Guaranteed Limits from LMT01 Datasheet Using LUT: < 0.5 max. (-20ºC to 90ºC), 0.62 max. (90ºC to 150ºC), < 0.7 max. (-50ºC to -20ºC)

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TIDA-00765 is a less than 100nVpp analog front end for resistive strain gauge bridge load cell-based weight and vibration measurement. It is ideally suited for appliances, which require high-resolution due to large dynamic range or have considerable weight offset. In the face of significant levels of switching supply noise and rapid temperature changes, drift and interference are common issues in harsh environments.The design’s high integration, AC excitation, and robust filtering suppress drift and interference to ensure consistent performance in tough environments.
Возможности:

Captures outputs of both multiple and single resistive strain gauge-based load cell bridges simultaneously Consistent <100nVpp low-noise performance <5-μV total error from 0бµ’C to 85бµ’C AC excitation robustly eliminates drift introduced by parasitic thermocouples and othercauses Highly robust to >500mVpp 100-kHz switching-supply noise Captures vibrations up to 500 Hz with sample rate ≤2 kSps

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The TIDA-00778 reference design demonstrates fast and accurate current sensing for a three-phase motor driven with sensorless field-oriented control (FOC). Drives with lower audible noise require faster andaccurate current sensing. The most common low-cost current-sensing methods use a single shunt on the DC bus return path or two to three shunts in the inverter legs. The major challenge in motor control is to enable accurate current sensing even with the lowest active vector duration. TIDA-00778 demonstrates sub-microsecond settling and accurate current sensing in such scenarios. The referencedesign is applicable to major appliances,especially in compressor motors, and the inverter power stage can work up to 2 kW.
Возможности:

Fast and accurate current sensing for sensorless FOC with single-, dual-, and triple-shunt topologies to minimize torque ripple and audible noise in motor drives Single-shunt current sensing with minimum settling time and gate driver with lowest propagation delay enable active voltage vector duration < 1 μs Single-shunt DC bus current sensing with < 0.15% calibrated accuracy Dual- and triple-shunt current sensing with < 1.5-μs settling time and < 0.04% calibrated accuracy enabling accurate current sensing at extreme duty cycles Overcurrent detection with response time < 1.5 μs Input voltage 270-V to 390-V DC (rectified from 195-V to 265-V AC)

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The TIDA-00779 is a 3.5-kw, cost competitive power factor regulator converter designed for room air-conditioner and other major appliances. This reference design is a continuous-conduction-mode (CCM) boost converter implemented using TI’s UCC28180 PFC controller provided with all of the necessary built-in protections. The hardware is designed and tested to pass surge, and EFT testing as per the IEC61000 requirements for household appliances.

Возможности:

High efficiency of > 98% over entire operating voltage range and thus get smaller heat sink Wide full load operating input range of 190 VAC to 270 VAC High power factor > 0.99 and less than 5% THD from medium-to-full load (50-100%) Up to 3.5 kw high power output to cover most of single phase input PFC application 8-Pin PFC solution (No AC line sensing Needed) enable a very simply design Reduced current sense threshold minimizes power dissipation High power density for smaller dimension

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The TIDA-00800 reference design entails 4 temperature sensors along a daisy chain in a cabling environment. The sensors connect to the SensorTag development platform via the UART interface where the information can be transmitted wirelessly. The Bluetooth low energy wireless technology makes testing and demonstration easier due to its integration in most modern equipment. The form factor and electrical connections are compatible with TI SensorTag 2.0 ecosystem, allowing easy prototyping with other wireless technology (Zigbee, Wifi, sub 1GHz…), while the selected sensor allows industrial grade accuracy and resolution.

Возможности:

• Daisy-chained temperature sensors (TMP107) • Bluetooth Low Energy™ link from SensorTag platform • SMAART WIRE™ Interface: Allows up To 32 Daisy-Chained devices using UART interface • Temperature range: -55°C to +125°C • Accuracy: ±0.4°C from -20°C to +70°C • Resolution: 14 bits (0.015625°C) • Daisy-chained temperature sensors (TMP107) • Bluetooth Low Energy™ link from SensorTag platform • SMAART WIRE™ Interface: Allows up To 32 Daisy-Chained devices using UART interface • Temperature range: -55°C to +125°C • Accuracy: ±0.4°C from -20°C to +70°C • Resolution: 14 bits (0.015625°C)

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TIDA-00940 представляет собой неизолированный источник смещённого питания с КПД до 80 % и отличными характеристиками ЭМС, разработанный для управления двигателями и подсистем драйверов, для удешевления системы и получения других преимуществ. Данный базовый проект имеет два неизолированных выхода с понижающей топологией, а реализован он на контроллерах UCC28881 и TPS5405 от TI, обеспечивающих полную защиту. Аппаратное обеспечение разработано и успешно испытано на соответствие требованиям EN-55014 Class B для домашних применений.

Возможности:

  • Дизайн на основе неизолированной понижающей топологии позволяет удешевить стоимость компонентов системы с учётом минимального количества внешних компонентов для каскада AC/DC
  • Отличные характеристики ЭМС с запасом 15 дБ, что соответствует требованиям EN-55014 Class B (наведённые помехи)
  • Надёжный запуск в применениях с высокой ёмкостью нагрузки
  • Нет необходимости во внешнем охлаждении (функционирование при температуре окружающей среды до 85°C)
  • Поддерживает запуск с собственным напряжением питания до 700 В без необходимости во вспомогательной обмотке смещения

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The TI Design TIDA-00946 demonstrates a 10.5mmx14.5mm, 94% efficiency, low electromagnetic interference (EMI) DC/DC module with the TPS54202, replacing Low DropOut Regulator (LDO) in major home appliance applications. The high efficiency eliminates the need of heat sink for smaller and cheaper solution. The higher current capability enables additional feature to be added (WiFi, sensors, etc ). The high efficiency and low current consumption help achieving stringent energy rating.
Возможности:

5V regulated, up to 1A output load 94% efficiency 1.6μA standby current and 76μA no load current Small form factor: size and pin-compatible and smaller than TO-220 (10.5mmx14.5mm) Less than 35 degree C increase at full load, which eliminate the need of heat sink Reduce the on-board DC/DC design complexity, save R&D time and efforts for switching power supply EMC design (quicker to market)

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  • BOM
Описание:
The TI Design TIDA-00947 demonstrates a 10.5mmx14.5mm, 92% efficiency, low electromagnetic interference (EMI) DC/DC module with the TPS54202, replacing Low DropOut Regulator (LDO) in major home appliance applications. The high efficiency eliminates the need of heat sink for smaller and cheaper solution. The higher current capability enables additional feature to be added (WiFi, sensors, etc ). The high efficiency and low current consumption help achieving stringent energy rating.
Возможности:

3.3V regulated, up to 1A output load 92% efficiency 1.5μA standby current and 84μA no load current Small form factor: size and pin-compatible and smaller than TO-220 (10.5mmx14.5mm) Less than 31oC increase at full load, which eliminate the need of heat sink Reduce the on-board DC/DC design complexity, save R&D time and efforts for switching power supply EMC design (quicker to market)

Документация:
  • Схемотехника
  • BOM
Описание:
The TI Design TIDA-00948 demonstrates a 15mmx20mm, 94% efficiency, low electromagnetic interference (EMI) DC/DC module with the TPS54202, replacing Low DropOut Regulator (LDO) in major home appliance applications. The high efficiency eliminates the need of heat sink for smaller and cheaper solution. The higher current capability enables additional feature to be added (WiFi, sensors, etc ). The high efficiency and low current consumption help achieving stringent energy rating.
Возможности:

5V regulated, up to 1A output load 94% efficiency 2.5μA standby current and 89μA no load current Small form factor: size and pin-compatible and smaller than TO-247 (15mmx20mm) Less than 30 degree C increase at full load, which eliminate the need of heat sink Reduce the on-board DC/DC design complexity, Save R&D time and efforts for switching power supply EMC design (quicker to market)

Документация:
  • Схемотехника
  • BOM
Описание:
The TI Design TIDA-00949 demonstrates a 15mmx20mm, 92% efficiency, low electromagnetic interference (EMI) DC/DC module with the TPS54202, replacing Low DropOut Regulator (LDO) in major home appliance applications. The high efficiency eliminates the need of heat sink for smaller and cheaper solution. The higher current capability enables additional feature to be added (WiFi, sensors, etc ). The high efficiency and low current consumption help achieving stringent energy rating.
Возможности:

3.3V regulated, up to 1A output load 92% efficiency 2.3μA standby current and 105μA no load current Small form factor: size and pin-compatible and smaller than TO-247 (15mmx20mm) Less than 32oC increase at full load, which eliminate the need of heat sink Reduce the on-board DC/DC design complexity, save R&D time and efforts for switching power supply EMC design (quicker to market)

Документация:
  • Схемотехника
  • BOM
Описание:
The TIDA-00972 reference design provides a sensor module level solution for +/- 2% of accuracy and reliable Relative Humidity (RH) and +/- 0.2 °C accuracy temperature sensing. The sensor module utilizes TI’s digital humidity and temperature sensor HDC1080 together with integrated communication bus buffer TCA9517 to provide high accuracy sensing result with robust communication over meters of wiring distance. The reference design addresses the key considerations during development and manufacturing of the sensor module with test results.
Возможности:

Relative humidity accuracy ±2%, temperature accuracy ±0.2°C Small form factor of PCB size 15.7 mm x 7.6 mm Very low power consumption during operation and when idle: 1.2uA without I2C buffer. Supply cut during idle. Supports long-cable I2C communication over common wire (AWG24 with 2 meter length) Supports both 5V and 3.3V power supply

Документация:
  • Даташит
  • Схемотехника
  • BOM
Описание:
The TIDA-01141 TI design provides a reference solution for ±100A shunt-based, high-side continuous bi-directional current measurement addressing applications such as battery current monitoring and current monitoring in UPS, Telecom Rectifiers and Server PSUs. This design achieves high accuracy with low shunt resistance value thus reducing power loss and hence shunt sizing.
Возможности:

Shunt-based ±100A continuous bi-directional current measurement solution for accurate current monitoring applications Tight DC accuracy of <1% across temperatures from 25ЛљC to 85ЛљC Low shunt value offers reduced power loss and enhances the system efficiency High-side current sense solution for batteries ranging from 6V to 60V (12V/24V/36V/48V) and common mode voltage up to 80V Adaptable for current sensing even close to fast switching nodes without any external common-mode filtering Fast (<10us) over-current fault alert in either direction for system safety, with programmable threshold

Документация:
  • Схемотехника
  • BOM
Описание:
Frost and ice buildup on cooling bodies and evaporators can significantly decrease system energy efficiency in many appliance applications such as refrigerators, air conditioners, and freezers.This sensor reference design helps to achieve the more stringent energy efficiency requirements of modern appliances through reducing the number of unnecessary defrost cycles by sensing the amount of ice buildup (resolution of < 1mm) on enclosures and metal surfaces of cooling bodies to trigger defrost cycles only when necessary, versus the traditional defrost trigger method of using a timer or temperature sensor.
Возможности:

Resolution of < 1mm, temperature drift < 0.25% Reduce energy by minimizing defrost cycle of melting ice or frost on evaporator coils to eliminate unnecessary defrost cycles Fit for universal application in all types of refrigeration equipment with great sensitivity, high reliability, and low cost Accurately sense thickness of ice or frost accumulated on surface of evaporating coils of refrigeration equipment

Документация:
  • Схемотехника
  • BOM
Описание:
The Sitara AM437x simplified power sequence feature provides flexibility to power designers. This reference design implementation is a BOM-optimized discrete power solution for the AM437x processor with a minimal number of discrete ICs and basic feature set. The solution represents a baseline of a discrete power solution that can be extended for additional features and capabilities of the AM437x processor.

Возможности:

Simplified, BOM-optimized discrete power solution for the Sitara AM437x processor. AM437x includes an integrated LDO that simplifies processor power sequencing requirements. Systems without controlled power down can greatly benefit from this feature since the integrated LDO always ensures power up/down sequencing is met for VDDS and VDDSHVx supplies The TLV62565 step down converter provides the 3.3 volt supply and the TLV62080 provides the 1.1 volt supply. Two TLV702xx low drop out regulators (LDOs) provide the 1.5-V and 1.8-V supplies. TLV803M voltage supervisor keeps the processor in reset until all rails are operational and to reset the processor when input power is lost. This design is tested and includes schematics, BOM, design guide, and test data.

Документация:
  • Схемотехника
  • BOM
Описание:
This refernce design demonstrates best practices for integrating both single axis motor control and power factor correction (PFC) into a single microcontroller. This practice is popular when designing variable frequency compressors, particularly for HVAC systems. This implementation is optimized to perform using a sensorless Field Oriented Control (FOC) algorithm to drive a permanent magnet synchronous motor (PMSM) and two phase interleaved PFC on the TMS320F2805x microcontroller. The FOC algorithm maintains efficiency in a wide range of speeds and takes into consideration torque changes with transient phases by processing a dynamic model of the motor.

Возможности:

Includes reference circuit for a 3-Phase inverter stage, up to 350V DC input voltage and 1KW maximum load for both sensored and sensorless control of ACI, PMSM or BLDC motors Includes a power factor correction stage rated for 600W that can operate up to 96% efficiency Includes an AC rectifier stage rated for 600W that can generate the DC Bus voltage or provide the input for the PFC stage present on the board Integrated communication with the kit over CAN or UART Four analog pins available to obsrve the system variables on an oscilloscope for debug Includes overcurrent protection and PWM trip zone protection for IPM faults

Возможность заказа
  • Заказать BOM
  • Заказать PCB
Документация:
  • Даташит
  • Схемотехника
  • BOM