Цифровые интегральные микросхемы - Решения

Описание:
The Ethernet PICtail™ Daughter Board provides a cost-effective method of evaluating and developing Ethernet control applications. The board is designed for flexibility and can be plugged into a wide selection of demonstration boards, including the PIC18 Explorer (DM183032). The development board is populated with the 28-pin ENC28J60 Ethernet controller which interfaces to the RJ-45 female connector. With a standard 28-pin PICtail pin out, the board is easily interfaced to Microchip’s 8-bit demonstration boards.
Возможности:

    • 10BASE-T Ethernet
    • RJ-45 Female Ethernet Connector

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The Speech Playback PICtail Plus Daughter Board is for evaluation and development of speech recording and playback applications using Adaptive Differential Pulse Code Modulation (ADPCM). The daughter board is designed to interface with both the PICtail interface used on many PIC16 and PIC18 evaluation boards and the PICtail Plus card edge connector used on PIC24 and dsPIC evaluation boards. Reference AN643 for information on implementing an ADPCM solution.
Возможности:

    • 3V or 5V operation
    • Potentiometer for volume control
    • 4th order Low Pass Filter
    • Mono output via on-board speaker or stereo output via headphones
    • Shutdown control of power amplifier
    • On-board 250 Kbit SPI Serial EEPROM for voice storage

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This PM3 Socket Module supports the programming of Microchip PIC16F MCUs of 20uQFN package, (3x3x0.5)mm or (4x4x0.5)mm body size using the MPLAB PM3 Programmer (DV007004). Please always refer to the Device Tool Selector (www.microchip.com/dtsapp) to verify the programmer and correct socket module.
Возможности:

    20uQFN package, (3x3x0.5)mm or (4x4x0.5)mm body size

Описание:

The MEGA-1284P Xplainedevaluation kit is a hardware platform for evaluating the ATmega1284Pmicrocontrollers. The MEGA-1284P Xplained contain one QTouch button sensor, three mechanical buttons, four LEDs, 3 analog sensors, and a UART to USB bridge. The AVR Xplained expansion headers provide easy access to analog and digital I/O pins. The board is powered by the USB cable and equipped with the standard 10-pin JTAG header that connects to the full range of AVR debuggers.

NOTE: The MEGA-1284P Xplained can be used to evaluate the ATmega164/324/644/1284microcontrollers and the A, P and PA versions of these devices. These devices share thesame peripherals, and differ only in memory size electrical characteristics such as power consumption. The peripherals are in general functionally compatible with other megaAVR devices, and the MEGA-1284P Xplained can thus be used as a general evaluation platform for other megaAVRs as well. Alternatively the STK600 can be used if specific devices need to be evaluated.

Возможности:

    • Atmel ATmega1284P microcontroller
    • Read temperature sensor with the ADC
    • Read light sensor with the ADC
    • Use the Atmel QTouch library to detect touches on the touch button
    • Use PWM as input to an analog filter and ADC to measure the filter response
    • 3 push buttons to interact with the microcontroller
    • 4 LEDs to show status information
    • Board controller that routes data from the ATmega1284P UART to the PC via USB
    • Program the kit via bootloader or an Atmel programmer
    • Expand the board with Xplained top modules

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The ATmega256RFR2 Xplained Pro starter kit is ideal for evaluation and prototyping with the ATmega256RFR2 microcontroller. The ATmega256RFR2 Xplained Pro board is available as an evaluation kit or starter kit. Extension boards can also be individually purchased.

The ATmega256RFR2-XSTK starter kit includes the I/O1 Xplained Pro, OLED1 Xplained Pro, and PROTO1 Xplained Pro extension boards.

If all you need is just the MCU evaluation board, the ATmega256RFR2-XPRO evaluation kit is available and does not include extension boards.

Возможности:

    • ATmega256RFR2 microcontroller
    • One mechanical reset button
    • One mechanical user pushbutton - Wake-up, bootloader entry or general purpose
    • One yellow user LED
    • 32.768kHz crystal
    • 16MHz crystal
    • 5 Xplained Pro extension headers (2 headers are duplicates)
    • Antenna diversity - Ceramic RF antenna and SMA connector for external antenna
    • Temperature sensor
    • Embedded debugger
      • Auto-ID for board identification in Atmel Studio
      • One yellow status LED
      • One green board power LED
      • Symbolic debug of complex data types including scope information
      • Programming
      • Data Gateway Interface: SPI, TWI, 4 GPIOs
      • Virtual COM port (CDC).
    • USB powered
    • Supported with application examples in Atmel Software Framework

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Описание:

This product is no longer available for sale.

This kit includes a WIZnet TCP/IP hardwired chip, a W3100A, and an AT89C51. It is no longer supported. It is still available from Wiznet www.wiznet.co.kr

Возможности:

    This kit includes a WIZnet TCP/IP hardwired chip, a W3100A, and an AT89C51.

Описание:

Типовое решение аудиоустройства Bluetooth + MSP430 компании TI может использоваться для создания разнообразных приложений бюджетных решений с низким энергопотреблением. Возможные варианты применения - игрушки, динамики Bluetooth начального уровня, аксессуары для потокового аудио.

Дизайн представляет собой экономически эффективную реализацию аудио, а предоставленные полные файлы для проектирования позволяют вам сосредоточить свои усилия на разработке приложений и конечных продуктов. Программное обеспечение, поддерживаемое этим эталонным дизайном, включает стек Bluetooth Stonestreet One Bluetopia (сертифицированный и бесплатный).

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Описание:

The C51ASM assembler is a two-pass macro assembler for the AT89 Family of 8051 microcontrollers with specific features for the AT89LP single-cycle devices. C51ASM is installed as a part of the AT89LP Developer Studio. It is also available separately for the Microsoft Windows and Linux platforms.

Release Notes (V1.2)
- Support added for the following devices:
AT89LP3240 AT89LP51RB2 AT89LP51RC2 AT89LP51RD2 AT89LP51IC2 AT89LP51ID2 AT89LP51ED2 AT89LP51
- Improved handling of address overlaps during code generation

Возможности:

    • C51ASM Assembler

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Описание:
The PICDEM™ LIN board demonstrates the capabilities of several Microchip microcontrollers using the LIN bus protocol. It specifically supports slave node applications with PIC16C432, PIC16C433, PIC16C7XX and master node applications with PIC16X8X and PIC18FXX8. PIC16C432, PIC16C433 are the first industry microcontrollers with on board LIN transceivers according to LIN bus specification Version 1.2.
Возможности:

    • 18-, 28- and 40-pin DIP sockets (although 3 sockets are provided, only one device may be used at a time
    • On-board +12V regulator for direct input from 12V.
    • RS-232C socket and associated hardware for direct connection to RS-232C interface
    • CAN bus interface
    • Control panel interface for LIN bus master
    • RF stage for keyless entry function
    • Seat memory unit
    • Motor control slave unit
    • Jumper to disconnect on-board RC oscillator
    • Prototype area for custom user hardware

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Xpress Your Creativity

Brilliant ideas are fleeting. As soon as they are recognized, they must be captured quickly, and made real with the highest possible urgency. In embedded design, the creative process is often blunted by the massive array of choices required to simply begin the development cycle. The tasks of selecting a target MCU, finding the appropriate tool chain, and setting everything up on your PC can keep your best ideas from becoming great products. The MPLAB Xpress PIC18F47K42 Evaluation Board (DM182026) was designed with a single objective – to help your ideas take the shortest journey from imagination to reality.

Crafted for Cloud-Based Development

The MPLAB Xpress PIC18F47K42 Evaluation board offers seamless integration with our software tool chain, including the MPLAB Xpress cloud-based IDE. MPLAB Xpress is an online development environment that contains the most popular features of our award-winning MPLAB X IDE. This simplified & distilled application is a faithful reproduction of our desktop-based program, which allows users to easily transition between the two environments.

On-Board Application Processor

PIC18(L)FxxK42 MCUs integrate a rich set of core independent peripherals, intelligent analog peripherals and large Flash/RAM/EEPROM memories. These 28-, 40- and 48-pin devices also offer a host of low power features, performance improvements and design flexibility options that easily and rapidly enable the complex set of functions required by many of today's embedded control applications.


Drag-and-Drop Programming

Programming the MPLAB Xpress PIC18F47K42 Evaluation Board is quick and easy. We’ve integrated a unique drag-and-drop programmer for compatibility with almost any USB-connected PC, laptop, or tablet. The MPLAB Xpress Evaluation board connects to your PC as a USB Flash drive, so no drivers are needed. Programming of the target device is completed in microseconds, with no waiting.
Возможности:

    Integrates seamlessly with MPLAB Xpress cloud-based IDE and MPLAB Code Configurator for the quickest development cycle

    On-Board PIC18F47K42 MCU Application Processor

    Integrated Drag-and-Drop Programmer with USB Interface- no drivers required!

    Compact footprint offers flexibility during prototyping phase


    Visit our MPLAB Xpress Cloud-based IDE homepage to Login and for all other relevant information.

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The PICDEM MC LV Development Board provides a cost-effective method of evaluating and developing sensored or sensorless brushless DC (BLDC) motor control applications. The board supports Microchip’s 28-pin, PIC18F microcontrollers and dsPIC30F Digital Signal Controllers. The board is capable of controlling motors rated up to 48V and 2.2 Amps.

The development board also comes with two pre-programmed, Flash-based devices for easy development: the PIC18F2431 device will populate the 28-pin socket and the dsPIC30F3010 will ship in a separate sample box. Additionally, the board comes with a free Motor Control Graphical User Interface (MC-GUI) which can set and modify all motor parameters. Custom programming and in-circuit debugging are facilitated with the ICD connector for Microchip’s MPLAB® ICD 2 In-Circuit Debugger, DV164004.

Возможности:

    • Motor control graphical user interface (MC-GUI)
    • Motor terminal strip
    • 3-phase voltage source inverter bridge
    • Motion sensor inputs
    • Over current protection, level programmable using potentiometer
    • Temperature sensor with I2C interface
    • Push button switches and master reset
    • 9 LEDs, 3 for generic status indication and 6 for PWM indication
    • Test points for motor current and back EMF sensing
    • Speed control potentiometer
    • Active RS-232 port
    • 24V external power supply (optional)
    • 3-phase, 24V BLDC low voltage motor (optional)
    • MPLAB ICD 2 connector
    • MPLAB ICE connector
    • Example software and documentation CDROM

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The full-featured, modular PRO MATE® II device programmer lets you quickly and easily program your software into Microchip’s entire line of PICmicro® MCUs, KEELOQ® security products and Serial EEPROMs. PRO MATE II runs under MPLAB® IDE and operates as a stand-alone unit or in conjunction with a PC-compatible host system.

PRO MATE II software is an integrated component of MPLAB IDE. Firmware updates, if available will be listed below, but typically, the latest firmware must be used only with the latest version of MPLAB IDE.

PICSTART® Plus Flash Upgrade Module
This PICSTART Plus Flash Upgrade Module is a printed circuit board assembly containing a PIC18F6720 device. It permanently replaces the PIC17C44 inside the PICSTART Plus. Once installed, the firmware is upgradeable using MPLAB IDE. All future upgrades will no longer require the opening of the enclosure to upgrade the PICSTART Plus firmware.

IMPORTANT: PICSTART Plus units with hardware revision of R20 or later already have this feature and do not require this kit.

This upgrade kit supersedes UK003007 and UK003006.

Before You Begin
You can only use this upgrade with MPLAB IDE v6.40 or later, PICSTART Plus hardware revision must be Rev 5 or later. MPLAB IDE is downloadable from this web site. The hardware revision of the PICSTART Plus is the last digit(s), immediately following "-R", of the serial number on the bottom of the plastic product enclosure port.


Возможности:

    • Three operating modes: Host Mode, Safe Mode, and Stand-Alone Mode
    • Complete line of interchangeable socket modules supports all package options (sold separately)
    • Universal platform can quickly and easily support future Microchip products
    • MPLAB® project support to automatically download object file to PRO MATE II
    • Complete documentation including all user manuals and technical document CD
    • Supports the serial programming mode in PICmicro MCUs

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Analog Devices’ cost-effective Universal Serial Bus (USB)-based emulator and High performance (HP) Universal Serial Bus (USB)-based emulator each provide an easy, portable, non-intrusive, target-based debugging solution for Analog Devices JTAG processors and DSPs. These powerful USB-based emulators perform a wide range of emulation functions, including single-step and full speed execution with pre-defined breakpoints, and viewing and/or altering of register and memory contents. With the ability to automatically detect and support multiple I/O voltages, the USB and HP USB emulators enable users to communicate with all of the Analog Devices JTAG processors and DSPs using either a full speed USB 1.1 or high speed USB 2.0 port on the host PC. Applications and data can easily and rapidly be tested and transferred between the emulators and the separately available VisualDSP++ development and debugging environment(sold separately).

The plug-and-play architecture of USB allows the emulators to be automatically detected and configured by the host operating system. It can also be connected to and disconnected from the host without opening the PC or turning off the power to the PC. A 3-meter cable is included to connect the emulators to the host PC, thus providing abundant accessibility to hard to reach targets.

The HP USB-based emulator also supports the Background Telemetry Channel (BTC), a non-intrusive method for exchanging data between the host and target application without affecting the target system's real-time characteristics.

Part Number:
USB-Based Emulator
Part Number: ADZS-USB-ICE
High Performance USB-Based Emulator
Part Number: ADZS-HPUSB-ICE

Tools Support:
Tel: 1-800-ANALOGD (262-5643)
Contact Support

For additional information, contact your local Analog Devices Sales Office or Distributor.

Возможности:

  • Full speed USB 1.1 interface enabling download speeds of up to 150 KB/Sec (ADZS-USB-ICE) or High speed USB 2.0 interface enabling download speeds of up to 1.5MB/sec (ADZS-HPUSB-ICE)
  • Background Telemetry Channel (BTC) support enabling non-intrusive data exchange at up to 2.0 MB/sec (ADZS-HPUSB-ICE only)
  • 1.8V, 2.5V, and 3.3V compliant and tolerant
  • Support for all ADI JTAG processors and DSPs
  • 5V tolerant and 3.3V compliant for 5V processors and DSPs
  • Multiprocessor support
  • 14-pin JTAG connector
  • 3-meter USB cable for difficult-to-reach targets
  • CE-certified

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With versatile programmability, the AD5232 allows multiple modes of operation, including read/write access in the RDAC and EEMEM registers, increment / decrement of resistance, resistance changes in ±6 dB scales, wiper setting read-back, and extra EEMEM for storing user-defined information, such as memory data for other components or a lookup table.

The AD5232 supports dual-supply ±2.25 V to ±2.75 V operation and single-supply 2.7 V to 5.5 V operation, making the device suited for battery-powered applications and many other applications. In addition, the AD5232 uses a versatile SPI-compatible serial interface, allowing speeds of up to 50 MHz.

The EVAL-AD5232SDZ can operate in single-supply and dual-supply mode and incorporates an internal power supply from the USB.

Complete specifications for the AD5232 part can be found in the AD5232 data sheet.

Возможности:

  • Full featured evaluation board for the AD5232
  • Several test circuits
  • Various ac/dc input signals
  • PC control via a separately purchased system demonstration platform (SDP-B)
  • PC control software
  • 26 extra bytes in EEMEM for user-defined information
  • Resistor tolerance error stored in EEMEM

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The AD5242 supports single-supply 2.7 V to 5.5 V operation, making the device suitable for battery-powered applications and many applications requiring superior low temperature coefficient performance.

In addition, the AD5242 uses a versatile I2C-compatible serial interface that operates in fast mode, allowing speeds of up to 400 kHz. This interface can be used to read back the wiper register and EEPROM content.

The EVAL-AD5242DBZ daughter board and the EVAL-MB-LV-SDZ motherboard can operate in single-supply mode and incorporate an internal power supply from the USB.

Complete specifications for the AD5242 can be found in the AD5242 data sheet.

Возможности:

  • Full featured evaluation board used in conjunction with low voltage digiPOT motherboard (EVAL-MB-LV-SDZ)
  • Multiple test circuits
  • Multiple ac/dc input signals
  • PC control via a separately purchased system demonstration platform (SDP-B or SDP-S)
  • PC software for control

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The AD7414/AD7415 evaluation board allows the AD7414/AD7415 digital temperature sensor to be quickly and easily evaluated using a PC. Using the evaluation board and its accompanying software, the AD7414/AD7415 evaluation board can be interfaced to a PC through its USB connection. The drivers will work on 32-bit Windows 7 machines.


Please note: This Evaluation software does not run on Windows 8 or Windows 10 (USB driver is non-compliant with OS >Windows 7).

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The AD8403 supports a single-supply 2.7 V to 5.5 V operation, making the device suited for battery-powered applications and many other applications, offering a ±1% channel-to-channel matching tolerance.

In addition, the AD8403 uses a versatile SPI serial interface, allowing speeds of up to 50 MHz.

The EVAL-AD8403SDZ can operate in single-supply mode and incorporates an internal power supply from the USB.

Complete specifications for the AD8403 part can be found in the AD8403 data sheet.

Возможности:

  • Full-featured evaluation board for the AD8403
  • Various test circuits
  • Various ac/dc input signals
  • PC control via a separately purchased system demonstration platform (SDP)
  • PC software for control

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Please be aware that this product is not compatible with current Microsoft operating systems. In addition, the interface cable between computer and the evaluation board requires a parallel printer cable not available on newer computers. For new designs, the AD9956 and AD9912 should be considered.
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This page contains ordering information for the evaluation board used to evaluate the ADF4111 Single, Integer-N, 1.2 GHz PLL With Programmable Prescaler And Charge Pump.

This evaluation board requires an SDP Controller board for connection to the PC. The SDP controller board connects to the PC via USB 2.0. The evaluation board will connect to the SDP controller board. The evaluation board cannot be connected directly to the PC. The evaluation software running on the PC will communicate through the SDP Controller board, to the evaluation board. The SDP Controller board is a separate list item in the ordering guide below (EVAL-SDP-CS1Z). If you have not previously purchased an SDP Controller board, please do so to ensure a full evaluation setup.

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This page contains ordering information for the evaluation board used to evaluate the ADF4113 Single, Integer-N 4.0 GHz PLL with Programmable Prescaler and Charge Pump.

This evaluation board requires an SDP Controller board for connection to the PC. The SDP controller board connects to the PC via USB 2.0. The evaluation board will connect to the SDP controller board. The evaluation board cannot be connected directly to the PC. The evaluation software running on the PC will communicate through the SDP Controller board, to the evaluation board. The SDP Controller board is a separate list item in the ordering guide below (EVAL-SDP-CS1Z). If you have not previously purchased an SDP Controller board, please do so to ensure a full evaluation setup.

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This page contains ordering information for the evaluation board used to evaluate the ADF4118 Single, Integer-N, 3.0 GHz PLL.


This evaluation board requires an SDP Controller board for connection to the PC. The SDP controller board connects to the PC via USB 2.0. The evaluation board will connect to the SDP controller board. The evaluation board cannot be connected directly to the PC. The evaluation software running on the PC will communicate through the SDP Controller board, to the evaluation board. The SDP Controller board is a separate list item in the ordering guide below (EVAL-SDP-CS1Z). If you have not previously purchased an SDP Controller board, please do so to ensure a full evaluation setup.

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This adapter is for use on UART targets powered at 3V to 5.5V. It consists of a small PCB included in a 1.5m long cable to provide easy interface from a standard PC COM port to the UART of the ADuC8xx and ADuC7xxx evaluation boards that have UART capability. It can be used for download, debug and general purpose communication via UART. It is based on an ADM3202 RS232 interface device. It provides an alternate to the 4-wire UART–to–PC interface as described in UC-006.

For devices with I2C or LIN download capability, use USB-I2C/LIN-CONV-Z.
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Development System for evaluation of the ADuC814, 6-Channel 12-Bit ADC + Dual 12-Bit DAC + 8K-Byte Flash MCU.

The QuickStart Kits for the ADuC8x-series (8052-core) Precision Analog Microcontrollers feature serial-port download/debug capability and an assembly-source debugging environment.

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Development system for evaluation of the ADuC834, 24-Bit ADC + 16-Bit ADC + 12-Bit DAC + 62K-Byte Flash MCU. This development system is also recommanded for evaluation of ADuC836, Dual 16-Bit ADC + 12-Bit DAC + 62K-Byte Flash MCU.

The QuickStart Kits for the ADuC8x-series (8052-core) Precision Analog Microcontrollers feature serial-port download/debug capability and an assembly-source debugging environment.

ADI also provides a non-intrusive emulation POD called the USB-EA-CONVZ allowing assembly & C-source debugging.

It can be ordered separately.

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The Blackfin SHARC USB EZ-Extender plugs onto the expansion interface of the ADSP-BF518F and ADSP-21469 EZ-Board and EZ-KIT Lite’s. The EZ-Extender aids the design and prototyping phases of the processor targeted applications and extends the capabilities of the evaluation system by providing a connection between the asynchronous memory bus of the Blackfin/SHARC processor and a USB 2.0 device.


Ordering Information:
Part number: ADZS-BFSHUSB-EZEXT


CROSSCORE® Tools Support:
Tel: 1-800-ANALOGD (262-5643)
Contact Support

Возможности:

  • ADSP-21469: 176-pin LQFP package, 25 MHz CLKIN oscillator
  • ADSP-21479: 196-pin BGA package, 16.625 MHz CLKIN oscillator
  • ADSP-21489: 176-pin LQFP package, 25 MHz CLKIN oscillator
  • Flash Memory: 4 M x 8-bit, Numonyx
  • SDRAM Memory: 16Mb x16 bit, Micron MT48LC16M16A2P-6A
  • Asynch SRAM: 1M x16 bit, ISSI IS61WV102416BLL-10TLI
  • SPI Memory: 16 Mbit
  • Analog Audio: AD1939 Codec
  • SPDIF: RCA phone jacks
  • Temp Sensor: ADM1032 Two Wire Sensor
  • UART: ADM3202 RS-232 line driver/receiver
  • Power Supply: 5V @ 3.6 Amps
  • LEDs: 10 LEDs: 1 power (green), 1 board reset (red), and 8 general purpose (amber)
  • Push Buttons: (5) push buttons: (1) reset, (2) connected to DAI, (2). IRQ/Flag
  • SHARC Expansion Interface II: AMI, Flags/IRQs, DAI, DPI, PWR_IN, 3.3V, GND
  • Other Features: Standalone Debug Agent Interface, RTC (Real Time Clock) implementation, Shift Register Interface, MP JTAG IN and OUT Connectors, 0-ohm resistors for DSP current measurement, CE compliant

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The ADSP-CM40x mixed-signal control processor family is based on the ARM®Cortex®-M4 core and is designed for motor control and industrial applications. The ADSP-CM40x Evaluation Hardware provides a low cost hardware solution for evaluating the Analog Devices ADSP-CM40x mixed-signal control processor family, and consists of the ADSP-CM403F and ADSP-CM408F EZ-Boards, J-LINK LITE ARM debug probe from Segger and optional probing boards .

The ADSP-CM403F EZ-KIT Lite and ADSP-CM408F EZ-KIT Lite include all hardware necessary to immediately begin evaluation.

The ADSP-CM403F EZ-Board and the ADSP-CM408F EZ-Board can also be purchased separately, if a debug probe is already available to the customer.

The ADSP-CM40x Board Design Database contains all of the electronic information required for the design, layout, fabrication and assembly of the ADSP-CM40x EZ-Boards, and is available to download from the Products Download area on this page.

Two expansion connectors are available for connecting probing boards that extend the system’s evaluation capabilities:

  • Analog 120-Pin Probing Board - The board provides probing points for any analog signal of the 120-pin expansion interface connector.
  • PWM 180-Pin Probing Board - The board provides probing points for any PWM/digital signal of the 180-pin expansion interface connector.

The probing boards are available separately as daughter boards that plug onto the ADSP-CM403F or <adsp-cm408f<> EZ-Board evaluation systems. Another expansion connector is provided for connecting an Anybus® board and/or a memory/FPGA extender card. </adsp-cm408f<>


IAR Embedded Workbench is a complete high-performance C/C++ compiler and debugger toolchain that incorporates a compiler, an assembler, a linker and a debugger into one easy-to-use IDE. It is required for development and purchased directly from IAR Systems. Free evaluation versions are available for download.

The CM40x Enablement Software package provides C language programming environment and Application Programming Interface (API) supporting a quick and easy functional interface to the Analog’s ADSP-CM40x mixed-signal control processor family products. The API abstracts the low-level details of various peripherals (Controller Registers, DMA Engine and Interrupt Controller) into a simple, easy-to-use programming model. It comes in source form with various example programs to shorten your application’s time to market. Current and future versions of the software are available free of charge and always downloadable from here.

The software and documentation pack for the J-Link LITE ARM is available directly from Segger and requires entry of the serial number displayed on the back of the probe to activate it.

For applications that require use of the Ethernet or USB peripherals, the ADZS-CM40x family is supported by Micrium's uC/TCP-IP and uC/USB Device ARM M-Series solutions. Both of these items require use of uC/OS-III® RTOS and all must be purchased directly from Micrium.

,The ADSP-CM40x mixed-signal control processor family is based on the ARM®Cortex®-M4 core and is designed for motor control and industrial applications. The ADSP-CM40x Evaluation HardwareADSP-CM40x mixed-signal control processor family is based on the ARM®Cortex®-M4 core and is designed for motor control and industrial applications. The ADSP-CM40x Evaluation Hardware
Возможности:

ADSP-CM408F EZ-Lite
  • ADSP-CM408F mixed-signal control processor
  • 2 – 16-bit t ADCs with 8 inputs each
  • 10/100 Ethernet PHY
  • USB
  • 2 – CAN interfaces ADI ADM3053
  • RS-485 transceiver ADI ADM2682E
  • RS-232 transceiver ADI ADM3252E
  • 256K x 16–bit (4 Mb) SRAM
  • 2 Mb internal quad SPI flash
  • 40 character TWI display
  • Expansion Interface
ADSP-CM403F EZ-Lite
  • ADSP-CM403F mixed-signal control processors
  • 2 – 16-bit t ADCs with 12 inputs each
  • 2 – 12-bit DACs
  • CAN interface ADI ADM3053
  • RS-232 transceiver ADI ADM3252E
  • 256K x 16–bit (4 Mb) SRAM
  • 2 Mb internal quad SPI flash
  • 40 character TWI display
  • Expansion Interface

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Analog Devices provides a line of evaluation boards designed to help users evaluate our instrumentation amplifiers in 8 pin packages. Access the user guide UG-261.

This user guide describes three generic evaluation boards that can be used to evaluate many of Analog Devices instrumentation amplifiers. For information on the performance of a specific instrumentation amplifier, see the data sheet for that instrumentation amplifier.

  • 3 generic, easy-to-use evaluation boards
  • Shipped with an assortment of Analog Devices, Inc., in-amps
  • Solder in the in-amp to be tested
  • Test pins already populated
  • Decoupling capacitors already populated
  • EVAL-INAMP-62RZ board: Compatible with AD620, AD621, AD622, AD623, AD627, AD8223, and AD8225 in SOIC or PDIP
  • EVAL-INAMP-82RZ board: Compatible with AD8221, AD8226, AD8227, AD8228, AD8229, AD8421, AD8422, AD8428, and AD8429 in SOIC package
  • EVAL-INAMP-82RMZ board: Compatible with AD8220, AD8221, AD8226, AD8227, AD8228, AD8236, AD8421, and AD8422 in MSOP package

Analog Devices provides a line of evaluation boards designed to help users evaluate our instrumentation amplifiers in 8 pin packages. Access the user guide UG-261.

This user guide describesAnalog Devices provides a line of evaluation boards designed to help users evaluate our instrumentation amplifiers in 8 pin packages. Access the user guide UG-261.

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These evaluation kits (EV kits) simplify testing of the MAX250_. The EV kits provide 50Ω SMA connectors to all RF ports and BNC connectors to the baseband I/Q inputs. The kits enable testing of the devices' RF performance and all modes of operation.

Each kit is assembled with the corresponding IC and incorporates all matching components.

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The MAX2622/MAX2623/MAX2624 evaluation kits (EV kits) simplify evaluation of the MAX2622/MAX2623/MAX2624 VCOs. These kits enable testing of the devices' RF performance and require no additional support circuitry. The signal output uses an SMA connector to facilitate the connection to RF test equipment.

The MAX2622 EV kit is assembled with the MAX2622 and incorporates output matching components optimized for an RF frequency of 868MHz. The MAX2623 EV kit is assembled with the MAX2623 and incorporates output matching components optimized for an RF frequency of 917MHz. The MAX2624 EV kit is assembled with the MAX2624 and incorporates output matching components optimized for an RF frequency of 973MHz.
Возможности:

  • Easy Evaluation of MAX2622/MAX2623/MAX2624
  • +2.7V to +3.3V Single-Supply Operation
  • RF Output Matched to 50Ω
  • All Critical Peripheral Components Included

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The MAX5498 evaluation kit (EV kit) is an assembled and tested PCB that demonstrates the MAX5498 10-bit (1024-tap), dual, nonvolatile, SPI™-interface, linear-taper digital potentiometer. Windows® 2000/XP- and Windows Vista®-compatible software provides a handy user interface to exercise the features of the MAX5498.

The EV kit can also be used to evaluate the MAX5494, MAX5495, MAX5496, MAX5497, or MAX5499. The MAX5494/MAX5495 provide two programmable voltage-dividers, the MAX5496/MAX5497 provide two variable resistors, and the MAX5498/MAX5499 provide one programmable voltage-divider and one variable resistor. The MAX5494/MAX5496/MAX5498 devices have 10kΩ end-to-end resistance and the MAX5495/MAX5497/MAX5499 devices have 50kΩ end-to-end resistance. To evaluate the MAX5494–MAX5497 or MAX5499, request a free sample (ETE+ suffix) along with the MAX5498 EV kit.
Возможности:

  • 2.7V to 5.25V Single-Supply Operation
  • Power-On Recall of Wiper Position from Nonvolatile Memory
  • On-Board USB Interface Circuit
  • USB Powered
  • USB-PC Connection (Cable Included)
  • PCB Pads for User-Supplied Microcontroller Interface Signals
  • Labeled Test Points for Potentiometer Signals (L, W, and H)
  • Proven USB-Compatible PCB Layout
  • Evaluates MAX5494–MAX5499
  • Windows 2000/XP- and Windows Vista (32-Bit)-Compatible Software
  • Lead(Pb)-Free and RoHS Compliant
  • Fully Assembled and Tested

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The MAX54X evaluation kit (EV kit) provides a proven design to evaluate the MAX541/MAX542 serial-input, voltage-output, 16-bit digital-to-analog convertors (DACs). The EV kit also includes Windows XP®-, Windows Vista®-, and Windows® 7-compatible software that provides a simple graphical user interface (GUI) for exercising the features of these devices.

The DACs are controlled by an on-board MAXQ® microcontroller, which provides two separate SPI control interfaces.

The EV kit provides an on-board +2.5V high-precision voltage reference (MAX6126). The EV kit also provides precision bipolar and ultra-precision unipolar op amps, the MAX9632 (single) and MAX44251 (dual), respectively.

The EV kit comes with the MAX541AESA+ and a MAX542AESD+ installed; however, it can also be used to evaluate other parts in the same family. Contact the factory for free samples of the pin-compatible devices shown in Table 1 in the full data sheet.

Возможности:

  • Provides Both Bipolar and Unipolar Outputs
  • On-Board +2.5V High-Precision Voltage Reference
  • On-Board Bipolar and Unipolar High-Precision Op Amps
  • Proven High-Performance 16-Bit DAC PCB Layout
  • High-Speed USB 2.0 USB-PC Connection (Cable Included)
  • Windows XP-, Windows Vista-, and Windows 7-Compatible Software
  • RoHS Compliant
  • Proven PCB Layout
  • Fully Assembled and Tested

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The MAX6635 evaluation kit (EV kit) is a fully assembled and tested surface-mount PCB that evaluates the MAX6635 12-bit plus sign temperature sensor IC. The MAX6635 accurately measures temperature and provides an undertemperature/overtemperature interrupt and a maximum temperature active-low OVERT output logic signal.

The EV kit is self-powered from the on-board USB interface circuit and selects between four available I²C slave addresses. The MAX6635 EV kit can also evaluate the MAX6633 and MAX6634 ICs. If needed, request free samples from the factory when ordering the MAX6635 EV kit.

The MAX6635 EV kit provides an on-board SMBus™/I²C interface and is connected to the computer through the universal serial bus (USB) port. The EV kit includes Windows® 2000/XP®- and Windows Vista®-compatible software that provides a graphical user interface (GUI) for control of the MAX6635's programmable features.
Возможности:

  • Self-Powered from USB Source
  • Optional 3V to 5.5V Single Power Supply
  • 12-Bit Digital Temperature Sensor
  • Selects from Four Available SMBus/I²C Slave Addresses
  • Windows 2000/XP- and Windows Vista (32-Bit)-Compatible Software
  • Also Evaluates MAX6633 and MAX6634
  • On-Board SMBus/I²C Interface Control Through USB
  • Lead(Pb)-Free and RoHS Compliant
  • Fully Assembled and Tested

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Temperature is one of the most widely measured parameters in industrial process control and automation. This reference design provides a complete signal-chain solution that works with any type of RTDs, from PT100 to PT1000. The Novato PT100 2-wire, loop-powered smart temperature transmitter guarantees a low-power, easy-to-use, reliable solution of temperature measurement from -200°C to +850°C with accuracy better than 0.1% or 1.0°C, whichever is more accurate, over the entire operating range.

The Novato MAXREFDES16 smart sensor transmitter reference design features:

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Решение создано на основе документа SLAA283 от Texas Instruments, но с небольшим отличием - схема поддерживает отладчики SBW JTAG как TI, так OLIMEX. По умолчанию джампер установлен в положение для работы с OLIMEX JTAG, поэтому, если вы используете TI JTAG, вам следует переместить перемычки в положение TI.

Плата MSP430-PIR использует малопотребляющий микроконтроллер MSP430F2013 от Texas Instruments со следующими функциями:

  • Низкое напряжение питания от 1,8 В до 3,6 В

  • Сверхнизкое энергопотребление (пять режимов энергосбережения)

  • Активный режим: 220 мкА при 1 МГц, 2,2 В

  • Standby Mode: 0,5 мкА

  • Off Mode (сохранение ОЗУ): 0,1 мкА

  • сверхбыстрое включение из режима ожидания менее чем за 1 мкс

  • 16-битная RISC-архитектура, 62,5 нс цикл инструкции

  • 16-битный таймер с двумя регистрами захвата/сравнения

  • 16-разрядный сигма-дельта аналого-цифровой преобразователь с дифференциальными входами PGA и внутренним опорным напряжением

  • Универсальный последовательный интерфейс (USI ) Поддержка SPI и I2C

  • Последовательное встроенное программирование, Внешнее напряжение для программирования не требуется

  • Защита кода с Security Fuse

  • Логика On-Chip Emulation с интерфейсом Spy-Bi-Wire

  • 2 КБ + 256B флэш-памяти

  • 128B RAM

Основные конфигурации модуля синхронизации:

  • Внутренний генератор до 16 МГц с четырьмя калиброванными частотами с точностью до ± 1%

  • Внутренний малопотребляющий низкочастотный генератор

  • Кварц 32-кГц

  • Внешний источник тактирования

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Not recommended for new designs and does not support new devices. To be discontinued. Please see the PICkit 3: PG164130.

This item is not available for the academic discount.

The PICkit 2 and PICkit 3 are not production programmers.

The PICkit™ 2 Development Programmer/Debugger (PG164120) is a low-cost development tool with an easy to use interface for programming and debugging Microchip’s Flash families of microcontrollers. The full featured Windows® programming interface supports baseline (PIC10F, PIC12F5xx, PIC16F5xx), midrange (PIC12F6xx, PIC16F), PIC18F, PIC24, dsPIC30, dsPIC33, and PIC32 families of 8-bit, 16-bit, and 32-bit microcontrollers, and many Microchip Serial EEPROM products. With Microchip’s powerful MPLAB Integrated Development Environment (IDE) the PICkit™ 2 enables in-circuit debugging on most PIC® microcontrollers. In-Circuit-Debugging runs, halts and single steps the program while the PIC microcontroller is embedded in the application. When halted at a breakpoint, the file registers can be examined and modified.
Возможности:

    Not recommended for new designs and does not support new devices. To be discontinued. Please see the PICkit 3: PG164130.

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  • Програмное обеспечение
  • Тестирование
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Данный базовый проект имеет характер аппаратного решения.

Возможности:


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В проекте от TI используется сдвиговый регистр TLC6C5912, управляемый посредством двух таймеров 555, интегрированный в устройство TLC556, для демонстрации бюджетного решения для системы с плавно переключающимися светодиодами. Этот проект также способен выдерживать холодный запуск автомобильного двигателя и полноценно работает от напряжения питания 5 В с возможностью функционирования от напряжения питания вплоть до 3,3 В.

Возможности:

  • Схема переключения светодиодов остаётся периодической, но может быть отрегулирована пользователем – гибкость в количестве используемых светодиодов
  • Отсутствие необходимости в МК или программном обеспечении – бюджетное решение, позволяющее уменьшить время до запуска в производство
  • Защитная функция выключения при перегреве, интегрированная в TLC6C5912-Q1 – избегание перегрева и повреждения МС
  • Медленное переключение (время нарастания – 207 нс, время спада – 128 нс) – позволяет значительно уменьшить ЭМП

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В проекте реализован однофазный счётчик электроэнергии класса 0,2 согласно ANSI / IEC с усиленной защитой от электростатического разряда. Кроме того, в данном проекте есть возможность связи по ZigBee™. Для выполнения всех метрологических функций данного счётчика электроэнергии используется система на кристалле (SoC), которая также передаёт данные об активной мощности на дополнительную плату CC2530EM. Разработчики могут использовать парный проект домашнего дисплея от TI (TIDM-LOWEND-IHD) для отображения данных в режиме удалённого доступа.

В данном базовом проекте использован MSP430F6736A. Также в данном базовом проекте можно использовать MSP430F6736.

Возможности:

  • Однофазный счётчик электроэнергии, который превосходит требования к устройствам класса 0,2 согласно ANSI и IEC
  • Успешно прошёл испытания на разряд в воздухе уровня 4 согласно IEC 61000-4-2 (подробно см. в руководстве проекта)
  • Прощивка Energy Library от TI позволяет рассчитать все параметры измерений электроэнергии, включая активные и реактивные мощности и энергии, среднеквадратичные значения тока и напряжения, коэффициент мощности и частоту в электросети
  • Поддержка подключения по ZigBee® к домашнему дисплею или подключений по Wi-Fi®, беспроводной M-Bus и IEEE-802.15.4g к дополнительным модулям связи
  • Автоматическое или ручное переключение между главным и вспомогательным источниками питания для метрологического движка

Возможность заказа
  • Заказать PCB
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Данное типовое решение – простой трехфазный счетчик электроэнергии на базе системы на кристалле MSP430F449, прецизионного операционного усилителя LMV324 и LDOTPS76333. Он соответствует требованиям класса точности 0.5 стандартов ANSIC12.20 и IEC-62053. Система на кристалле MSP430F449 – это недорогое решение для инженеров, разрабатывающих устройства мониторинга электроэнергии для коммунальных нужд и промышленного применения. Операционный усилитель используется в цепи измерения напряжения и тока с токового трансформатора. Для удешевления решения используется источник питания на базе TPS76333 с гасящим конденсатором. Аппаратное и программное обеспечение позволяет проводить измерения разных параметров электросети, таких как действующие напряжение и ток, активную и реактивную мощность, коэффициент мощности и частоту. Данное типовое решение позволяет разработчику убедиться в том, что система на кристалле MSP430F449 подходит для разработки недорогого умного электросчетчика.

Возможности:

  • Трехфазный счетчик, соответствующий требованиям класса точности 0.5 стандартов ANSI и IEC;
  • Встроенное программное обеспечение TI Energy Library позволяет мерить все параметры сети, включая активную и реактивную мощность, действующие ток и напряжение, коэффициент мощности и частоту линии;
  • Встроенный 160-сегментный дисплей;
  • Питание от трехфазной сети.

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The USB-EA emulator allows downloading of code to the ADuC83x and ADuC84x family of parts via the EA pin. It enables debugging of parts and can be used with the applicable ADI downloader tools. The USB-EA emulator is connected between the EA pin of the ADuC8xx part and a USB port of a PC with these tools installed. This provides an alternative to debugging via the UART.


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