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Процессоры (Программируемые контроллеры - ПЛК)

Описание:
The PIC10F32X Development Board is intended to be a learning tool for individuals interested in PIC ® microcontroller design and developing applications using the Configurable Logic Cell, Complimentary Waveform Generator and Numerically Controlled Oscillator peripherals. The PIC10F322 microcontroller is ideal for use on the PIC10F32X Development Board due to its small size, high efficiency, speed and peripheral configurations.
Возможности:

    • PIC10F320
    • Configurable Logic Cell
    • Complementary Waveform Generator
    • Numerically Controlled Oscillator

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Summary
The Explorer 8 Development Kit is a full-featured development board and platform for 8-bit PIC® microcontrollers. This kit is a versatile development solution, featuring several options for external sensors, off-board communication and human interface. Additionally, it offers ample room for expansion, making it an excellent solution for developers and engineers looking for a tool with the largest number of supported 8-bit PIC MCUs.

Enterprise-Class 8-bit Development
The Explorer 8 Development Kit is the latest offering in a long line of enterprise-class tools for 8-bit PIC microcontrollers. The board is an evolution of the popular PIC18 Explorer Board, and has been updated to take advantage of our most modern features including:
  • On-chip Core Independent Peripherals
  • Compatibility with all PIC MCUs
  • 8-, 14-, 20-, 28-, 40/44-, 64- and 80-pin footprints
With the Explorer 8 Development Kit, you can have a single development platform that allows you to update a legacy design while supporting our newest MCU offerings.

All-in-One Solution
Microchip designed the Explorer 8 Development Kit to be your main tool for 8-bit development with support for a wide variety of functions. On-board components enable easy development of human interface, power conversion, Internet of Things (IoT), battery charging and other applications using a powerful 8-bit PIC microcontroller. Additionally, the Explorer 8 Development Kit also has a large capacity for expansion. Two Digilent Pmod™ interfaces, two MikroElectronika Click™ board sockets and two custom expansion headers allow you to quickly adapt as your development needs change. The Explorer 8 Development Kit supports several program and debug solutions including the PICkit™ 3, ICD 3 and MPLAB® REAL ICE™ In-Circuit Emulator.

Made for MPLAB® Code Configurator
The Explorer 8 Development Kit seamlessly integrates with MPLAB Code Configurator (MCC) for a modern embedded development experience. MCC is a free software plug-in that bridges our MCUs, development hardware and MPLAB X Integrated Development Environment (IDE). It allows you to generate easily modifiable, production-ready application code for many 8-bit PIC MCUs in just a few mouse clicks. Find out more at www.microchip.com/MCC

Please visit our Explorer 8 Design Center for more information.
Возможности:

    Please visit our Explorer 8 Design Center for more information.

    • Supports all 8-bit PIC microcontrollers from 8 to 80 pins
    • Programming headers and power connections for all MCU sockets
    • Three individual power supplies
    • 5V, 3.3V, variable (1.5-4.5V)
    • 16 × 2 character LCD module
    • External connections for industry-standard communications and expansion interfaces
    • RS232 and Bluetooth® Low Energy interfaces
    • Push button switches for device reset and user-defi ned inputs
    Connection Points

    The Explorer 8 Development Kit supports several options to easily add functionality to your design.

    • Micro USB to I2C or Serial - Use the USB interface for diagnostic or control interfaces. USB to I2C/serial conversion is handled automatically.
    • MikroElektronika Click Board Support - Two sockets provide access to nearly 100 add-on boards, with capabilities ranging from GPS to alcohol sensing.
    • Digilent Pmod Support - Two 12-pin interfaces provide access to expansion boards with options for communications, sensing and power conversion capability.
    • Multiple Expansion Options - A legacy expansion header for PICtail™ daughter card connectivity and a 120-pin edge connector enable you to expand the Explorer 8 Development Kit's capability to suit your needs.
    • 20-pin Add-On Board Connector - Design your own add-on boards for sensor interface or motor drive, and connect them with this simple header.

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Описание:
Summary
The PICDEM™ Lab II Development Board is a development and teaching platform for use with 8-bit PIC® microcontrollers (MCUs). At its center, a large prototyping breadboard enables users to easily "experiment" with different values and configurations of analog components for system optimization. Several external connectors allow for user-customizable expansion, while our library of labs and application notes enrich the development experience. The PICDEM Lab II Development Board is also fully compatible with our latest software development environment.

Embedded Development Powerhouse
The original PICDEM Lab Development Board has remained one of the most popular development tools for PIC MCUs since its introduction. Microchip has taken this concept and expanded it for 21st century embedded development. The PICDEM Lab II Development Board supports any 8-bit PIC microcontroller (6-, 8-, 14-, 18-, 20-, 28- and 40-pin footprints), and provides an expansive array of connections for programming, I/O, analog and communications interfaces. The PICDEM Lab II Development Board will be a valuable resource to engineers across a broad spectrum of specialties, from analog designers looking to explore the power and flexibility of MCU-based systems to engineering professors seeking a flexible and relevant teaching tool that they can add to their curricula.

Hardware Flexibility Enables Experimentation
In keeping with the original, the PICDEM Lab II Development Board was designed to give you a simple development experience without the hassle of and expense of building a custom PCB in the early stages of your project. You can design a system with one or several PIC MCUs, since power and programming connections are replicated across all of the available sockets. Off- chip connections can be made in any manner, and the expansive breadboard provides a convenient area to add analog signal conditioning and drive components to a design. Three separate power supplies give the capability to provide fixed or variable voltage to a system. With several industry-standard interfaces in addition to a system of configurable conntectors, the off-board expansion possibilities are abundant.


Please visit our PICDEM Lab II Design Center for more information
Возможности:

    Please visit our PICDEM Lab II Design Center for more information

    • Supports all 8-bit PIC MCUs from 6 to 40 pins
    • Programming headers and power connections for all MCU sockets
    • Three individual power supplies
    • 5V, 3.3V, variable (1.5-4.5V)
    • Large breadboard area for external analog and sensor connections
    • External connections for industry-standard communications and expansion interfaces
    • Lab hardware and documentation for four labs included in the box
    • RS232 and Bluetooth® Low Energy interfaces
    Connection Points
    • Power Distribution Connectors - Supply power to other parts of your design using one of the PICDEM Lab II Development Board's on-board power supplies.
    • USB to I2C™ - Use the USB interface for diagnostic or control interfaces without worrying about the specifics of USB communication. USB to I2C conversion is handled automatically.
    • MikroElectronika Click Board Support - Two sockets give you access to nearly 100 inexpensive add-on boards, with capabilities ranging from GPS to alcohol sensing.
    • LCD Module Connector - A simple 16-pin connector supports a number of standard segment LCD module interfaces.
    • 20-pin Add-On Board Connector - Design your own add-on boards for sensor connectivity or motor drive, and connect them with this simple interface.

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Satisfy Your Curiosity
Your next embedded design idea has a new home. Curiosity is a cost-effective, fully integrated 8-bit development platform targeted at first-time users, Makers, and those seeking a feature-rich rapid prototyping board. Designed from the ground-up to take full advantage of Microchip's MPLAB X development environment, Curiosity includes an integrated programmer/debugger, and requires no additional hardware to get started.

Your Tool for Function Enablement
Curiosity is the perfect platform to harness the power of modern 8-bit PIC® Microcontrollers. Its layout and external connections offer unparalleled access to the Core Independent Peripherals (CIPs) available on many newer 8-bit PIC MCUs. These CIPs enable the user to integrate various system functions onto a single MCU, simplifying the design and keeping system power consumption and BOM cost low.

Internet of Things Ready
Have an IoT design idea? Curiosity can make it real. Out of the box, the development board offers several options for user interface - including physical switches, an mTouch™ capacitive button, and an on-board potentiometer. A full complement of accessory boards is available via the MikroElectronika Mikrobus™ interface footprint.
In addition, Bluetooth Low Energy communication can easily be added using an available Microchip RN4020 module.

Visit our Curiosity Design Center for Code Examples and other information.
Возможности:

    Visit our Curiosity Design Center for Code Examples and other information.


    • Supports 8-, 14-, 20-pin 8-bit PIC® Microcontrollers with low voltage programming capability
    • Integrated Programmer/Debugger with USB Interface
    • Integrates seamlessly with MPLAB X IDE and Code Configurator
    • Various user interface options - mTouch button, analog potentiometer, and physical switches
    • Mikrobus™ support with over 100 MikroElectronika Click™ add-on boards available
    • RN4020 Bluetooth module footprint
    Note: USB mini-B cable required, not included

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Описание:
This low-cost demo board is for evaluation of our PIC18 MCU families. The PIC18 is our highest performance 8-bit architecture and has three different families: standard PIC18, PIC18 J-series and PIC18 K-series. This single development board supports dozens of the general purpose PIC18 families using various processor Plug-In Modules (PIMs). PICtail daughter boards enable many different accessory boards to connect to the PIC18 Explorer board for a flexible and complete development environment. This board is the ideal complement to the MPLAB® PICkit 3 or ICD 3 debugger and programmer for a full-featured, economical, PIC18 development environment.

Newer version development tools are available now. Please consider Explorer 8 Development Board (DM160228) for new designs

Возможности:

    в—Џ Multiple PIC18 processors, both a PIC18F8722 on board (128KB Flash, 80 pins, superset of traditional PIC18 family), and a PIC18F87J11 Plug-In Module (128KB Flash, 80-pins, superset of J-series, PIM adjusts to accommodate 3V device). A switch selects the desired processor.
    в—Џ Supports many other PIC18 devices with Plug-In Modules, supporting 28 to 80-pin PIC18 devices
    в—Џ PICtail ™ daughter board connector for connection to standard expansion boards such as Ethernet, speech playback, and the many different sensors
    в—Џ Expansion connector accesses full device pin-out and breadboard prototype area
    в—Џ Convenient connection for MPLAB PICkit 3, ICD 3 or REAL ICE for in-circuit programming and debugging
    в—Џ Alpha-numeric LCD display
    в—Џ USB interface for USB to RS-232 communication
    в—Џ 25LC256 SPI EEPROM
    в—Џ Crystal oscillator
    в—Џ Potentiometer (connected to 10-bit A/D, analog input channel)
    в—Џ Analog output temperature sensor
    в—Џ LEDs
    в—Џ RS-232 port
    в—Џ Power supply connector and programmable voltage regulator, capable of operation from 2.0V to 5.5V
    в—Џ Demo software including temperature sensor demo included (illustrates Microchip’s analog temperature sensor MPC9701A) and 32 kHz crystal for Real Time Clock demonstration

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Описание:
The audio development board for dsPIC33E (DM330016) provides developers a flexible platform for 24-bit audio record and playback, USB digital audio and sample rate conversion.
Возможности:

    - On-board dsPIC33EP512MU810 with 60 MIPS of performance, 512 KB Flash, 24 KB Auxiliary Flash and 52KB of RAM
    - 24-bit Wolfson codec
    - USB Type A interface
    - On-board microphone
    - Headphone out and Line in
    - High quality 2” Color LCD
    - Pre-loaded demo code
    - iPod®, iPhone® dock edge connector

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Microchip’s PICkit™ 3 In-Circuit Debugger/Programmer uses in-circuit debugging logic incorporated into each chip with Flash memory to provide a low-cost hardware debugger and programmer. In-circuit debugging offers these benefits:
  • Low cost
  • Minimum of additional hardware needed for debug
  • Expensive sockets or adapters are not required
The PICkit 3 can now also reprogram any PIC microcontroller with a simple push of a button: Find out more about Programmer-To-Go function*
*Please consult the PICkit 3 readme to determine Programmer To Go device support limitations.

Note: The PICkit 3 In-Circuit Debugger/Programmer is NOT a production programmer. It should be used for development purposes only.

The MPLAB PICkit 3 allows debugging and programming of PIC® and dsPIC® Flash microcontrollers at a most affordable price point using the powerful graphical user interface of the MPLAB X Integrated Development Environment (IDE). The MPLAB PICkit 3 is connected to the design engineer's PC using a full speed USB interface and can be connected to the target via an Microchip debug (RJ-11) connector (compatible with MPLAB ICD 2, MPLAB ICD 3 and MPLAB REAL ICE). The connector uses two device I/O pins and the reset line to implement in-circuit debugging and In-Circuit Serial Programming™.

If you need older software for programming with your PICkit 3, please visit our archives.

Header Information

Some 8-, 14- and 18-pin devices use small header boards with a special MCU for debugging. This special MCU has extra pins for PICkit 3 communication and therefore allows the use of all pins on the part for the application. The header board is not used or needed for programming. However, when debugging these devices the header must be used. See the "Header Specification" document below.
Возможности:

    • USB (Full speed 12 Mbits/s interface to host PC)
    • Real-time execution
    • MPLAB IDE compatible (free copy included)
    • Built-in over-voltage/short circuit monitor
    • Firmware upgradeable from PC/web download
    • Totally enclosed
    • Supports low voltage to 2.0 volts (2.0v to 6.0v range)
    • Diagnostic LEDs (power, busy, error)
    • Read/write program and data memory of microcontroller
    • Erase of program memory space with verification
    • Freeze-peripherals at breakpoint
    • Program up to 512K byte flash with the Programmer-to-Go*
    • Header Information

    *Please consult the PICkit 3 readme to determine Programmer To Go device support limitations.

    Some 8-, 14- and 18-pin devices use small header boards with a special MCU for debugging. This special MCU has extra pins for PICkit 3 communication and therefore allows the use of all pins on the part for the application. The header board is not used or needed for programming. However, when debugging these devices the header must be used. See the "Header Specification" document below.

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Описание:
The wide 9-36Vdc input range of this design is well suited for applications operating from 12V/24V dc inputs. The synchronous rectifier provides excellent efficiency over the full input range.
Возможности:

Excellent efficiency (89% at 3A) 1500VRMS isolation Small size (32 x 35mm) 8.4mm max transformer height

Документация:
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Описание:
PMP11184 is a chipset solution for high current ASIC core rail regulation. It utilizes TPS53647 4-phase controller for 120A high current rail, which employs DCAP+ control for fast transient response and TI's proprietary AutoBalance for tight steady and dynamic phase-to-phase current balance. It also utilizes TPS40428 dual controller for dual 30A rails. Both controllers drive TI NexFET smart power stages for high power density and efficiency. PMBus capability and on-board NVM enable easy design, configuration, and customization, with telemetry of output voltage, current, temperature, and power.

Возможности:

Detached layout enables flexible placement High efficiency 91% at 1V/120A, 300kHz, 12Vin Excellent thermal performance (72C FET temperature at full load with 200LFM air flow) Combined ripple and transient response within +/-2%. Full PMBus telemetry of output voltage, current, power and temperature

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Описание:
PMP11399 is a complete PMBus power system for 3 ASIC/FPGA cores, DDR3 core memory, VTT termination, and auxiliary voltages commonly found on high-performance Ethernet Switches. The hardware is accompanied by a GUI that allows the user to perform real-time configuration and monitoring of the power supplies.

Возможности:

12V / 300W system power solution with nine point-of-load buck converters PMBus communication configures hot-swap, SWIFT buck converters, multiphase PWM controller, and power sequencer/supervisor High-density power conversion utilizing Inductor On Top of IC layouts Voltage margining through PMBus and PWM UCD90240 GPIs allow for event-based power supply control

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Описание:
The PMP15025 comprises a single phase synchronous buck converter that supplies a stable 5V @ 4A solution from a 24V input. The design features high efficiency and power density, which are suitable for industrial automation applications, such as robotics and motor drives.
Возможности:

90% efficiency at 24VIN, 5V/4A at 390kHz 4.44mV of Output Ripple at full load current Minimal Phase Ringing at full load current 30kHz Loop Bandwidth with 75° of Phase Margin for fast, stable, transient response

Документация:
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Описание:
This reference design is a multi-output output isolated flyback, working from universal line. The main regulated output is 3.3V@350mA; the 5V and 12V outputs are regulated by means of linear regulators and the 24V output has been generated with a small charge pump. The converter takes advantage of the cascode-flyback topology and quasi-resonant working mode to deliver low EMI and good efficiency at light load.
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This reference design provides an easy method to evaluate the power, and features of SMPS dsPIC® Digital Signal Controllers for high wattage AC - DC conversion application. Discover the many benefits of digital power control implementation in this reference design. The SMPS AC - DC Reference Design unit works with universal input voltage range, and produces multiple DC outputs. The design is based on a modular structure, which features three major power stages; the input stage, intermediate stage and the third stage, a Point of Load. The input stage is a PFC Boost Converter, the intermediate stage is a Phase-Shifted Zero Voltage Transition (ZVT) Converter, which includes ZVT Full Bridge Converter and Synchronous Rectification, and the third stage is Single-phase and Multi-phase Buck Converters. This reference design uses two dsPIC33F16GS504 devices; one used for the PFC Boost Converter and ZVT Full Bridge Converter, while the other dsPIC® DSC is used for Single-phase and Multi-phase Buck Converters.


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Возможности:

    • Primary and Secondary MOSFET control
    • Operates at universal input voltage (85-265Vac, 45-65Hz)
    • Operates up to 300W sustained output
    • Full Load operation on 3.3V and 5V outputs when loaded individually and/or simultaneously:
      • 3.3V output @ 56A
      • 5V output @ 23A
    • Power Factor Performance of 0.99 at full load (110Vac/220Vac)
    • Fault Indication and Protection
    • Excellent Dynamic Load Performance and Output Sequencing
    • Separate boards, one for digital signals (Signal Board) and the other for the Power stages (Power Board)
    • Signal Board has two dsPIC33F16GS504 devices controlling different power stages
    • MPLAB® ICD 2 or REAL ICE support

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The Intel Core i7 power management design is a complete solution for Intel IMVP-7 SVID. A GUI communication program is available along with several test points on the board to evaluate the static and dynamic performance of the CPU's DC/DC Controller. The design features an IMVP-7 3-Phase CPU supply, a 2 Phase GPU Vcore supply, a 1.05VCCIO supply, and a DDR3L/DDR4 memory rail. To greatly improve power density and thermal performance, TI's 5-mm x 6mm NEXFET Power Block MOSFETs are used.

Возможности:

• Design supports a 9-20V input from Vbatt • Small high-density power solution for Ivy Bridge • 3 Phase CPU supply supports up to 94A • 90% peak (80% full-load) efficiency from 12Vin to 1.05Vout - CPU Supply • Low CPU supply ripple: 25mV • Design has been built and tested. Board available.

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This TI Design implements the Tiva™ C Series MCU as a front-end controller for TI's suite of Programmable Logic Controller (PLC) analog and digital I/O module reference design boards. The design includes sockets for interfacing and simultaneously controlling two TI Designs I/O reference design boards. It allows maximum versatility whereby the I/O boards can be any combination of analog or digital, input or output modules. The controller system automatically identifies and configures each I/O board appropriately, setting any required compensation of the analog circuitry. On-board power supplies are included to power the controller board as well as providing isolated power to both I/O boards, eliminating the need for multiple external power supplies. Additional circuitry is provided that optimizes the I/O signal aquisition and data throughput, enabling full 1-MSPS data acqusition and 20-MHz SPI bus performance. This design also performs as an evaluation platform for each of the I/O boards, analyzing the performance of several key parameters and relaying the results to a PC via an onboard USB 2.0 connector. Included in the design is an easy-to-use Graphical User Interface that runs a LabView™-based analysis program facilitating comprehensive evaluation of the I/O reference designs. The GUI provides many options for configuration of the test parameters as well as filtering and set up options that allow for comprehensive analysis of the individual I/O module boards. Full documentation and design files of the platform are provided.

Возможности:

32-bit, 80MHz Tiva™ C Series ARM® Cortex™-M4 MCU Modular plug-in design: two identical interface sockets for simultaneously controlling and analyzing TI's suite of PLC I/O module reference design boards Circuitry for enhanced throughput enabling full 1-MSPS data acquisition and 20-MHz SPI performance EMC-compliant isolated RS485 interface for fieldbus connectivity and EMC-compliant USB 2.0 interface for PC connectivity High-efficiency, isolated power supply for both I/O boards using LM5017 Flybuck™ topology Power supply protection circtry for safeguarding against reverse polarity, transient/surge, and in-rush current LabView™-based GUI for functional testing and performance analysis

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Описание:

Полное описание этого решения для обеспечения бесконтактного интерфейса. Служба интерфейсов позволяет чтение логов и настройку системы (калибровка данных, обновление микропрограммы и др.) в промышленных приложениях, таких как человеко-машинный интерфейс (HMI). Содержимое FRAM на ультраэкономичном микроконтроллере MSP доступно одновременно через NFC и серийный порт (I2C, SPI), позволяет считывать сообщения системы, например, передатчиков данных о температуре и давлении даже когда система отключена от питания. Параметры настройки могут быть запрограммированы при вводе в эксплуатацию, до (или после) того, как система установлена и подключена к питанию. Функция системы позволяет настраивать и считывать логи устройства без подключения к питанию, что значительно сокращает затраты при вводе в эксплуатацию или в качестве возвратов.

 

Возможности:

  • ISO14443B интерфейс (RF430CL330): стандарт Android NFC;
  • 64 КБ FRAM (MSP430FR5969);
  • Пропускная способность до 8 МБ/с в/от FRAM через последовательный интерфейс;
  • Пропускная способность 800 КБ/с в/от FRAM через NFC;
  • Питание через NFC Power ORing между основной системой и дочерней картой NFC для демонстрации пробуждения NFC карты, когда основная система не работает.

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Описание:

Дизайн подсистемы показывает реализацию защиты на основе ИМС от повышенного напряжения, перегрузки по току, реверсивного тока, обратной полярности и обрыва провода, которая является более точной, более энергоэффективной и быстрой по сравнению с предохранителями, PTC и диодами. Модули ввода-вывода программируемого логического контроллера, подключенного к полевому источнику питания имеют преимущество при неисправностях питания, которые могут повредить  модуль.

 

Возможности:

  • Защита от короткого замыкания;
  • Защита от перегрузки по напряжению и нехватке напряжения;
  • Защита от переполюсовки;
    Защита от обратного тока и отсутствия кабеля;
  • Защита от импульсов IEC61000-4-5;
  • Дизайн протестирован и включает в себя все необходимые файлы.

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Описание:
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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Описание:
The TIDA-00548 design is an isolated dual-channel 4- to 20-mA analog input reference design, which can be used as a sub-part for functional safety programmable logic controllers (PLC). This reference design delivers digitized input values using a 32-bit high-performance analog-to-digital converter (ADC). The RM4x dual-core ARM® Cortex®-R4 based CPU with lockstep technology and built-in self-tests (BIST) compares the converted values of up to nine selectable analog input signal chain paths. The dual input approach with two separate burden resistors allows redundant measurement of either a single 4- to 20-mA loop or two independent loops. Hercules™ RM ARM Cortex-R based MCUs for functional safety applications (part of the SafeTI designs packages) help to develop systems according to IEC 61508 SIL 3.
Возможности:

Two channel 4- to 20-mA current measurement for redundancy with full-scale error less than ±0.01% Two ADC references (external, internal) Utilizes ADC built-in features such as test DAC, secondary ADC, analog signal level alarm, SPI CRC and timeout, and more Hercules RM ARM Cortex-R based MCU (for development of IEV 61508 functional safety applications) Isolator shutdown upon failure provides reliable notification to backend All integrated circuits: MTBF greater 4·10^8

Документация:
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Описание:
This “18-bit, 2-Msps Isolated Data Acquisition Reference Design to achieve maximum SNR and sampling rate” illustrates how to overcome performance-limiting challenges typical of isolated data acquisition system design: Maximizing sampling rate by minimizing propagation delay introduced by digital isolator Maximizing high-frequency AC signal chain performance (SNR) by effectively mitigating ADC sampling clock jitter introduced by the digital isolator

Возможности:

18-Bit, 2Msps, 1-Ch, differential input, isolated data acquisition (DAQ) system Leverages multiSPI™ digital interface of ADS9110 to achieve 2MSPS sampling rate while maintaining a low SPI data rate Source synchronous SPI data transfer mode to minimize isolator propagation delay and improve sampling rate Techniques to reduce Isolator-induced jitter resulting in 12dB improvement in SNR (100kHz Fin, 2-MSPS) Tested design includes theory and calculations, component selection, PCB design, and measurement results

Возможность заказа
  • Заказать PCB
Документация:
  • Схемотехника
  • BOM
Описание:
The TIDA-01366 (also known as PMP9799) demonstrates a complete power solution for Altera's MAX® 10 FPGA. This simple solution uses just three DC/DC converters to power the MAX 10 cost-effectively. This TI Design supports numerous industrial applications and any application that requires a small, high efficiency, high temperature power supply.
Возможности:

Supports Dual-Supply Power Option of MAX 10 to Enable Full FPGA Functionality Requires Just Three DC/DCs for a Cost-Effective and Simple Power Solution Total Solution Size < 300 mm² for Space-Constrained Applications 92% Efficiency at Half of Rated Load and 89% Efficiency at Full Rated Load for Low Temperature Rise and High Reliability Supports Instant-On Feature for Fastest Startup of MAX 10 125°C Rated Devices and Passives for High Temperature Applications with a Temperature Warning Flag at 120°C

Документация:
  • Схемотехника
  • BOM
Описание:
CAN and CANopen are legacy fieldbus protocols used in many applications in factory automation. Whenever high voltage could damage the end equipment there is need for isolation. Today’s smart factories utilize several energy efficient automation nodes. This reference design, which incorporates the ISO1050 and SN6501 devices, is built as a BeagleBone Black CAPE. The design can then be easily tested on the BeagleBone Black development board using the existing Linux software infrastructure.
Возможности:

Isolated CAN transceiver reference design with ISO1050 Energy efficient with transformer driver SN6501 2.5kV isolation with DUB package (used by this TI reference design) and 5kV isolation with DW package BeagleBone Black CAPE form factor CAN bus address, CAN bus speed rotary switches and CAN status LEDs

Документация:
  • Схемотехника
  • BOM
  • Топология платы
Описание:
CAN and CANopen are legacy fieldbus protocols used in many applications in factory automation. Whenever high voltage could damage the end equipment there is need for isolation. This isolated CAN flexible data (FD) raterepeater reference design adds electrical isolation between two CAN bus segments. The CAN frames on either bus segment side are repeated to the other side. The CAN transceiver and arbitration logic in this TI design support CAN FD speed up to 2Mbps. The TI design is supplied by a wide range voltage supply between 6V to 36V.
Возможности:

Isolated CAN FD transceiver with 3000 VRMS isolation rating Support classic CAN and 2 Mbps CAN FD Single 24V industrial supply Wide supply voltage range of 5V to 36V Onboard generation of isolation voltages

Документация:
  • Схемотехника
  • BOM
Описание:
This TI Design provides a solution for input power path protection and backup supply design in a typical PLC controller unit. It replaces traditionally used discrete-circuit implementations with fully integrated protection circuits.
Возможности:

19.2-V to 28.8-V input, 28-W output power Overload, overvoltage, undervoltage, and reverse-current protection Protects from field miswiring or reverse polarity ±500-V, 2-Ω (8/20-μs) surge compliance with Criteria A performance (IEC 61000-4-5) 120-ms backup time at 7-W output

Документация:
  • Схемотехника
  • BOM
Описание:
PROFINET is becoming the leading industrial Ethernet protocol in automation due to its high-speed, deterministic communications and enterprise connectivity. However, as the world’s most popular fieldbus, PROFIBUS’s importance and usage will continue for many years due to legacy investment protection. Recognizing the ‘hybrid’ attribute in process plants, this TI design presents an integral solution for the migration of existing fieldbus technology into a real-time Ethernet network, based on the Programmable Real-Time Unit and Industrial Communication SubSystems (PRU-ICSS) of TI's Sitara™ AM57x processor. The TI design demonstrates PROFIBUS master and PROFINET IRT device on AM572x with protocol stacks simultaneously running on an ARM Cortex-A15 core while the entire PROFINET switch and PROFIBUS frame handler are executed on the two PRU-ICSS respectively. The migration scheme is generally also suitable for other fieldbus and industrial protocols.
Возможности:

PROFIBUS: Cyclic PROFIBUS-DP (DPV0) and enhancements to DP (DPV1) for acyclic services. Supports transmission speeds of 9.6Kbaud to 12Mbaud PROFINET IRT: conformance classes A, B, and C functionality with a minimum cycle time of 250us PROFIBUS master and PROFINET IRT device simultaneously supported Simplified protocol translation between PROFIBUS master and PROFINET IRT Leverages PRU-ICSS-INDUSTRIAL-SW for Sitara processors built on top of Processor-SDK-RTOS This reference design is tested on the TMDXIDK5728 board and includes documentation, software, demo application, and hardware design files

Документация:
  • Схемотехника
  • BOM
Описание:
This reference design details a CCLink IE Field Basic implementation operating on the Sitara™ AM335x processor, with both Processor SDK RTOS and Processor SDK Linux. For RTOS, the design uses the Network Development Kit (NDK component within Processor SDK) transport layer and is supported with examples for both the standard Ethernet switch (CPSW) and PRU-ICSS. For Linux, it uses the Linux networking stack which can be based on either the standard Ethernet switch (CPSW) or PRU-ICSS. The implementation can be used in both configurations, i.e. Master station or Slave station.
Возможности:

CC-Link IE field basic master and slave implementation for 100Mbps on a standard ethernet port and PRU-ICSS Supported by Processor-SDK-RTOS and Linux Server function of SLMP (Seamless Message Protocol) supported by slave station Maximum 64 slave stations supported by master station Fully customizable with source code available Support on other Sitara ARM processors also available

Документация:
  • Схемотехника
  • BOM
Описание:
Industrial embedded systems are balancing traditional and proven real-time solutions based on bare-metal or real-time operating system (RTOS) with new requirements to add cloud connectivity and advanced graphical interfaces. Linux is often the most efficient way to provide sophisticated and secure cloud connectivity and enable advanced human to machine (HMI) interfaces. Modern embedded processors such as the Sitara AM5728 processor offer the ability to integrate the functionality of a real-time application with Linux applications. This TI design describes using the ARM® Cortex®-A15 cores and an open source static hypervisor called Jailhouse to support the coexistence of real-time and Linux applications.
Возможности:

Jailhouse Embedded Hypervisor running on Sitara AM572x with Linux on one ARM Cortex-A15 core and bare-metal on the other ARM Cortex-A15 core Demonstration of static partitioning of AM572x peripherals between Linux and bare-metal Demonstration of support for running a bare-metal binary and an RTOS based binary on the second core Performance (interrupt latency) measurements for the virtualized bare-metal system with and without a processing load on Linux Tested on the TMDXIDK5728 and TMDSEVM5728 evaluation boards

Документация:
  • Схемотехника
  • BOM
Описание:

Данное типовое решение предназначено для применения в ведомых устройствах связи EtherCAT и позволяет разработчикам внедрять стандарт связи в реальном времени EtherCAT в широком спектре приложений автоматизации промышленного оборудования. Малогабаритная конструкция с минимальным количеством внешних компонентов и самым низким в своем классе энергопотреблением подходит для применения в таких приложениях, как промышленная автоматизация, автоматизация производства или промышленная связь.

 

Возможности:

  • EtherCAT прошел проверку на соответствие в EtherCAT Technology Group (ETG)
  • Бесплатный код стека ведомого устройства EtherCAT от Beckhoff – требуется членство в ETG (это бесплатно) и действующий EtherCAT Vendor ID
  • Бесплатный пакет документации к плате и пакет разработки промышленного программного обеспечения от TI 
  • Решение поддерживает реализацию других промышленных протоколов связи без изменения аппаратной части (например, PROFIBUS, Profinet, Ethernet/ IP и многое другое)
  • Решение, готовое к серийному производству, которое включает в себя схему, перечень компонентов, руководство пользователя, примеры применения, программное обеспечение и многое другое

Документация:
  • Схемотехника
  • BOM
Описание:
Targeted for PROFIBUS slave communications, this development platform allows designers to implement PROFIBUS communications standards in a broad range of industrial automation equipment. It enables low foot print designs in applications such as industrial automation, factory automation or industrial communication with minimal external components and with best in class low power performance.

Возможности:

AM335x ARM Cortex-A8 processor-based design enables 40% system BOM savings by eliminating external ASIC/FPGA Access to other peripherals and interfaces for a scalable HMI, PLC and I/O solution PROFIBUS slave certified by Siemens authorized Test Labs Pre-tested protocol stack for evaluation Free board support package and industrial software development kit from TI Support other industrial communications with the same hardware (e.g., EtherCAT, Profinet, Ethernet/IP and more) Production Ready development platform sub-system which includes schematics, BOM, user guides, application notes, white paper, software, demos and more Getting Started - To get started on development review the literature below, order the development platform and download the latest SYS/BIOS Industrial Software Development Kit.

Документация:
  • Схемотехника
  • BOM
Описание:

Направленная на Ethernet/IP коммуникации, данная платформа разработки позволяет разработчикам реализовать стандарты связи Ethernet/ IP в широком спектре оборудования для промышленной автоматизации. Это дает возможность разрабатывать платы для приложений промышленной автоматизации, автоматизации предприятий и промышленной связи с минимальным количеством внешними компонентов и наибольшей энергоэффективностью в этом классе устройств.

Возможности:

  • Основан на процессоре AM335x ARM Cortex-A8;
  • 30% BOM сохраняется при замене внешних ASIC/ FPGA;
  • Бесплатная поддержка и промышленное ПО от TI;
  • Поддержка других промышленных протоколов связи на этом же оборудовании (например, EtherCAT, PROFIBUS, PROFINET и другие);
  • Готовая к производству платформа разработки, включающая схемы, BOM, руководство пользователя, примечания, ПО, демоверсии и другое.

Документация:
  • Схемотехника
  • BOM
Описание:

Платформа разработки связи по Sercos III TIDEP0010 объединяет процессор AM335x семейства Sitara от Texas Instruments (TI) и физический уровень управления доступом к среде (MAC) на основе Sercos III в единую систему на кристалле (SoC). Будучи сфокусированной на связи с ведомыми устройствами по Sercos III, TIDEP0010 позволяет разработчикам применить стандарт связи в реальном времени по Sercos III в широком ряде оборудования для промышленной автоматизации. Данный проект базируется на движке промышленной связи (ICE) TMDSICE3359.

Возможности:

  • Успешно прошла проверку на соответствие Sercos III
  • Программное обеспечение Sercos III для PRU-ICSS с понятным интерфейсом реестра Sercos MAC
  • Пакет поддержки платформы и набор разработки промышленного программного обеспечения от TI и третьих сторон
  • Платформа разработки, которая включает в себя схемы электрические принципиальные, перечень элементов, руководства пользователя, инструкции по применению, белую книгу, программное обеспечение, тестовые программы и т. д.
  • Поддерживает другие промышленные стандарты связи со схожим аппаратным обеспечением (например, EtherCAT, Profinet, Ethernet/ IP и др.)

Документация:
  • Даташит
  • Схемотехника
  • BOM
  • Топология платы
  • Тестирование
Описание:
The USB 2.0 reference design guidelines are extremely important for designers considering USB2.0 electrical compliance testing. The guidelines are applicable to AM335x and AM437x but also generic to other processors. The approach taken for these guidelines is highly practical, without complex formulas or theory.

Возможности:

Sitara AM437x USB 2.0 High-Speed Port with Integrated High-Speed PHY transceiver Data transfer between USB devices with a line/bus speed up to 480 Mbps Best-practice layout design guidelines for High-Speed USB 2.0 layout Complete sub-system reference with schematics, BOM, design files and test data implemented on a fully assembled board developed for testing and validation.

Документация:
  • Схемотехника
  • BOM
  • Тестирование
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:

Эта реализация режима низкого потребления энергии демонстрирует энергопотребление менее 0,1 мВт при сохранении поддержки регенерации памяти LPDDR2 ~1,6 мВт.

Решение состоит из процессора AM437x Sitara, памяти LPDDR2 и контроллера питания TPS65218. Оно оптимизировано для нового режима сохранения энергии совместно с поддержкой унаследованных режимов низкого энергопотребления.

Энергопотребление процессора минимизируется за счет полного отключения питания процессора, за исключением питания часов реального времени (RTC). Переход системы во включенное состояние может быть реализован с помощью одного интерфейсного сигнала (PMIC_PWR_EN), запрограммированного для регистра PMIC.

Возможности:

  • Режим ожидания для RAM с низким энергопотреблением:
    • AM437x в режиме RTC-only,
    • TPS65218 в состоянии ожидания,
    • саморегенерация LPDDR2;
  • Система может вернуться в состояние, которое было до включения ожидания
  • Потребление энергии в режиме RTC-only:
    • AM43x + TPS65218: < 0,1 мВт,
    • 2 ГБ LPDDR2 (тип.): 1,6 мВт;
  • События для перехода в/из режима ожидания:
    • программирование регистров RTC,
    • установка времени пробуждения RTC;
  • События возобновления работы:
    • срабатывание пробуждения RTC,
    • нажата кнопка PMIC или подача переменного напряжения;
  • Время возобновления работы:
    • задержка включения аппаратной части < 300 мсек.,
    • восстановление программного обеспечения в предшествующее ожиданию состояние < 1 сек. (в зависимости от используемого ПО);
  • Это решение протестировано и содержит схемы, BOMи руководство по разработке.

Документация:
  • Схемотехника
  • BOM
  • Топология платы
Описание:

Платформа разработчика Ethernet PowerLink TIDEP0028 объединяет процессор AM335x семейства TI Sitara и открытый протокол управления доступом PowerLink в единое решение SoC (system-on-chip). TIDEP0028, ориентированный на Ethernet Power Link коммуникации, позволяет разработчикам в режиме реального времени осуществлять связь стандарта PowerLink для широкого спектра промышленного оборудования. Разработка основана на компоненте промышленной связи TMDSICE3359.

 

Возможности:

  • Протестирован на соответствие Ethernet Powerlink;
  • Встроенное программное обеспечение Ethernet Powerlink для PRU-ICSS совместимо с интерфейсом openMAC;
  • Платформа поддерживает комплект разработчика промышленного ПО от TI и других производителей;
  • Платформа разработки включает чертежи, BOM, руководство пользователя, приложения, демо-версии и др.;
  • Поддерживает другие промышленные системы связи на том же оборудовании (включая EtherCAT, Profinet, Ethernet/IP и другие).

Документация:
  • Схемотехника
  • BOM
  • Топология платы
Описание:

Устройство для Profinet IRT V2.3 с сертифицированной аппаратной и программной частью. Данное решение включает в себя физику промышленного Ethernet, стек Profinet и примеры приложений. Profinet – лидирующий стандарт Ethernet, используемый в промышленном сегменте и в конечном оборудовании, где требуется обмен данными и информацией для обслуживания и диагностики в реальном времени.

Возможности:

  • Соответствует классам A/B/C Profinet;
  • Время цикла 250 мкс;
  • Синхронизация времени за 1 шаг (PTCP);
  • MRP протокол;
  • Интеграция со стеком Molex Profinet;
  • Интеграция со стеком Interniche SNMP.

Документация:
  • Схемотехника
  • BOM
  • Тестирование
Описание:
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.

Документация:
  • Даташит
  • Схемотехника
  • BOM
  • Топология платы
Описание:
The acontis EC-Master EtherCAT Master stack is a highly portable software stack that can be used on various embedded platforms. The EC-Master supports the high performane TI Sitara MPUs, it provides a sophisticated EtherCAT Master solution which customers can use to implement EtherCAT communication interface boards, EtherCAT based PLC or motion control applications. The EC-Master architectural design does not require additional tasks to be scheduled, thus the full stack functionality is available even on an OS less platform such as TI Starterware suported on AM335x. Due to this architecture combined with the high speed Ethernet driver it is possible to implement EtherCAT master based applications on the Sitara platform with short cycle times of 100 microseconds or even below.

Возможности:

EtherCAT Class A or Class B master stack according to ETG.1500 specification High performance CPSW Ethernet driver for maximum EtherCAT performance EtherCAT Feature Pack Cable Redundancy using two CPSW ports EtherCAT Feature Pack Hot Connect to support flexible configuration Support for various operating systems: Linux, TI-RTOS (SYS/BIOS) and partner OS such as VxWorks and QNX

Документация:
  • Схемотехника
  • BOM
Описание:
TI provides the system solution for integrated multi-protocol Industrial Ethernet Communication on Sitara processors. Fast start up after device power up has been defined by various industrial Ethernet standards. This TI design describes system level approach to support fast startup with TI Sitara processors.

Возможности:

Fast startup analysis of key system components Example ARM secondary bootloader in with fast startup functionality NOR and SPI flash timing configuration example

Документация:
  • Даташит
  • Схемотехника
  • BOM
Описание:

В типовом решении TIDEP0050 от TI реализован стек протокола EnDat 2.2 Master и аппаратный интерфейс на базе стандарта HEIDENHAIN EnDat 2.2 для позиционных энкодеров и энкодеров вращения. Данное решение состоит из стека протокола EnDat 2.2 Master, полудуплексной линии связи на базе трансивера RS485 и промышленного набора разработчика на базе Sitara AM437x. Решение полностью протестировано на соответствие стандарту HEIDENHAIN EnDat 2.2. Наряду с поддержкой позиционной обратной связи EnDat, набор разработчика AM437x поддерживает протоколы промышленной связи и возможность реализации управления двигателем, как это описано в руководстве по разработке устройства управления двигателем на одном чипе AM437x.

 

Возможности:

  • Данное типовое решение от TI позволяет разработчикам использовать интерфейс энкодера EnDat 2.2 для создания устройств с маленьким посадочным местом и низким энергопотреблением для промышленной автоматизации;
  • Благодаря высокой разрешающей способности, короткому времени цикла, поддержке длинных линий и возможности диагностики энкодера, EnDat 2.2 является техническим стандартом в технологии прямого управления;
  • Цифровая технология EnDat 2.2 и отсутствие особых требований к соединению и питанию снижают общую стоимость системы;
  • Решение основано на процессоре Sitara AM437x, который можно использовать в приложении управления двигателем и других приложениях управления и связи
  • Готовая к производству подсистема платформы разработчика включает в себя схему, перечень компонентов, руководство пользователя, результаты тестов, программное обеспечение, примеры применения и многое другое;
  • Бесплатный пакет поддержки и промышленный SDK от TI;
  • Sitara AM437x поддерживает несколько промышленных стандартов связи, включая EtherCAT, Profinet, PROFIBUS, Ethernet/ IP, Powerlink и Sercos.

Документация:
  • Схемотехника
  • BOM
Описание:
TI provides the system solution for Industrial Communication on Sitara™ processors with Programmable Real-Time Unit and Industrial Communication Subsystem (PRU-ICSS). This TI Design describes the integrated multi-protocol digital position encoder master interface support. The supported digital position encoder master protocols are EnDat 2.2, Hiperface DSL ® and BiSS C. The integrated multi-protocol encoder master has the benefit to work without additional field programmable gate array (FPGA), application specific integrated circuit (ASIC) and programmable logic device (PLD) while support multiple of the encoder protocols - therefore it saves cost and reduces board space. This reference design utilizes the Single Chip Drive Evaluation Board (TMDSIDK437X ) and Universal Digital Interface to Absolute Position Encoders Reference Design (TIDA-00179).

Возможности:

Multi-protocol digital position encoder master interface Supports EnDat 2.2, Hiperface DSL and BiSS C digital position encoder interfaces For integrated single chip drives, servo drives and remote position encoder master devices Digital position encoder master interface is supported by the PRU-ICSS peripheral within the Sitara AM437x processor

Возможность заказа
  • Заказать PCB
Документация:
  • Даташит
  • Схемотехника
  • BOM
Описание:
TI provides the system solution for Industrial Communication on Sitara™ processors with Programmable Real-Time Unit and Industrial Communication Subsystem (PRU-ICSS). PRU-ICSS allows custom firmware applications in the field of real-time applications. The I2C peripheral on many application processors does not support SMbus commands like block read and block write transfers. This TI Design implements those SMbus commands with standard I2C commands into the PRU-ICSS peripheral.
Возможности:

Supports I2C and SMbus master interface with PRU-ICSS Dynamic block moe read and write transfer Contains PRU-ICSS source code for customization I2C register interface emulation

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PCI-Express provides for low pin-count, high reliability, and high-speed with data transfer at rates of up to 5.0 Gbps per lane, per direction, and an PCIe module is included on the TI 66AK2G02 DSP + ARM Processor system on chip (SoC). This PCIe PCB design considerations reference design helps developers optimize the printed circuit board (PCB) design by providing best-practice PCB for the PCIe portion of the 66AK2G02 Processor SoC. This in turn enables developers achieve desired PCIe signal performance on the first PCB implementation pass, allowing rapid focus on K2G Processor based application development and test. The 66AK2G02 General Purpose EVM (EVMK2G) is used as a reference to discuss some of these considerations.

Возможности:

Optimized High Speed Signal Routing Surface-Mount PCIe x1 Socket Example of AC Coupling Capacitor Placement Example of Recommended Differential Pair Spacing

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The TIDEP0070 reference design describes system considerations for Dual Data Rate (DDR) memory interface with Error Correcting Code (ECC) support in high-reliability applications, based on the 66AK2G02 Multicore DSP + ARM processor System-on-Chip (SoC). It enables developers to implement a high reliability based solution rapidly by discussing system interfaces, board hardware, software, throughput performance and diagnostic procedures.
Возможности:

Optimized high speed signal routing Surface-mount PCIe x1 socket Example of AC coupling capacitor placement Example of recommended differential pair spacing

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OPC UA is an industrial machine-to-machine protocol designed to allow interoperability and communication between all machines connected under Industry 4.0. The TIDEP0078 TI Design demonstrates use of the MatrikonOPC™ OPC UA server development kit (SDK) to allow communications using an OPC UA data access (DA) server running embedded in a project or design. The OPC UA DA deals with real-time data and is best suited for industrial automation applications where time is an important aspect of the data. A reference OPC UA server implementation is provided that accesses the GPIO capabilities of the AM572x IDK. The reference code can be extended to provide an OPC UA interface to any data the AM572x IDK board can access including data acquired through Profibus, RS-485, CAN bus, and industrial Ethernet-based protocols such as EtherCAT™ or PROFINET™ using the Programmable Real-time Unit Industrial Communication Subsystems (PRU-ICSS).
Возможности:

Fully embedded OPC UA server running on Sitara AM57x processor Matrikon OPC UA server development kit (SDK) R100 and sample OPC UA server (demo version is time limited to two hours) Linux operating environment through Processor-SDK-Linux Control GPIO read/write over TCP/IP from OPC UA sample client with GUI The TIDEP0078 reference design is tested on the TMDXIDK5728 board and includes documentation, software, demo appliaction, and hardware design files

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The TIDEP0079 reference design demonstrates an EtherCAT® master interface running on the Sitara™ AM572x processor using the EC-Master stack from acontis. This EtherCAT master solution can be used for EtherCAT-based PLC or motion control applications. EtherCAT master is profiled on both the Ethernet switch and the PRU-ICSS Ethernet ports of the AM572x processor to give designers flexibility to use any of the two switch ports or four PRU-ICSS Ethernet ports on the device. The EtherCAT master implementation can achieve less than 100µs cycle times for both the switch and the PRU-ICSS Ethernet ports.

Возможности:

Examples for implementing EtherCAT master on both the Ethernet switch (CPSW) and the PRU-ICSS Ethernet ports for design flexibility Highly portable acontis EC-Master stack Cycle CPU consumption of less than 30µs is achieved for both the Ethernet switch and PRU-ICSS Ethernet ports EtherCAT class A or class B master stack according to ETG.1500 specification This reference design is tested on the TMDXIDK5728 board and includes documentation, software, demo application, and HW design files

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This design uses TI's high-performance ARM® Cortex®-M4F based TM4C129x microcontrollers (MCUs) with integrated USB 2.0 controller to interface with an external High Speed USB PHY. The design includes software that allows data exchange between USB high speed and Ethernet. The design also features transceivers for CAN and UART serial interfaces to connect a host to legacy RS232 machines or to interface with CAN bus. Provision for digital communication interfaces like UART, I2C and SSI to bridge external devices and aggregate data from slow interfaces to a high speed USB link has been provided in this reference design.
Возможности:

USB 2.0 High Speed PHY integration with software controlled switch to enumerate USB port as either High Speed or Full Speed. TivaWare™ Software USB Library for ease of developing custom USB software Firmware example and Host application showing how to implement USB to Ethernet. Example code may be extended to support UART, CAN, SPI and I2C over USB. PCB supports connection to external RS232, CAN and Ethernet networks

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