Средства разработки и отладки для беспроводных систем передачи данных - Решения

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Позиций:
Описание:
The Graphics Display Truly 3.2” 240x320 Board is a demonstration board for evaluating Microchip’s graphic display solution and graphics library for 16- and 32-bit microcontrollers. It is an expansion board compatible with the PIC24FJ256DA210 Development Board (DM240312), and Graphics LCD Controller PICtail™ Plus SSD1926 Board (AC164127-5).
Возможности:

    • 3.2” QVGA (240x320) TFT LCD with 18-bit parallel RGB interface
    • Resistive 4-wire touch screen

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The MRF24J40MB PICtail™/PICtail Plus Daughter Board is a demonstration and development daughter board for the MRF24J40MB IEEE 802.15.4, 2.4 GHz RF Transceiver module.

The daughter board can plug into multiple Microchip Technology demonstration and development boards. For example, for 8-bit microcontroller development using the PIC18 Explorer Board (DM183032) or for 16-bit microcontroller development using the Explorer 16 Development Board (DM240001). Supporting software stacks and application notes may be downloaded from the Microchip website at www.microchip.com/wireless.
Возможности:

    • Based on the MRF24J40MB surface mount module
    • Compatible with the PIC18 Explorer Board (DM183022) for 8-bit microcontroller development
    • Compatible with the Explorer 16 Development Board (DM240001) for 16-bit microcontroller development
    • Targeted for ZigBee® and MiWi™ Development Environment wireless protocol applications
    • Perfect solution for low-cost, low-power complete embedded wireless PAN applications
    • Supporting software stacks and application notes may be downloaded from the Microchip website at www.microchip.com/wireless

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As an alternative to the MRF24WB0MA Wi-Fi PICtail/PICtail Plus Daughter Board, we suggest customers purchase the AC164149 for evaluating the MRF Wi-Fi series of modules.

The Wi-Fi PICtail/PICtail Plus Daughter Board is a demonstration board for evaluating Wi-Fi connectivity using PIC microcontrollers and the MRF24WB0MA module. This product is compatible with the Explorer 16 Development Board (DM240001), PICDEM.net2 Development Board (DM163024) and PIC32 Starter Kit (DM320001) with I/O Expansion Board (DM320002).

Возможности:

    • Supports low-power, low data-rate
    • Wi-Fi FCC (USA), IC (Canada), ETSI (Europe) Certified
    • Integrated PCB Antenna with Simple four-wire SPI interface to PIC® microcontroller
    • WEP, WPA-PSK, WPA2-PSK Security

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The PIC-IoT WG Development Board combines a powerful PIC24FJ128GA705 MCU, an ATECC608A CryptoAuthentication™ secure element IC and the fully-certified ATWINC1510 Wi-Fi® network controller - which provides the most simple and effective way to connect your embedded application to the Google Cloud IoT Core. The board also includes an on-board debugger, and requires no external hardware to program and debug the MCU.

Out of the box, the MCU comes preloaded with firmware that enables you to quickly connect and send data to the Google Cloud Platform using the on-board temperature and light sensors. Once you are ready to build your own custom design, you can easily generate code using the free software libraries in MPLAB Code Configurator (MCC).

The PIC-IoT WG Board is supported by MPLAB® X IDE.
Возможности:

    • PIC24FJ128GA705 microcontroller
      • 128 KB Flash Memory & 16 KB SRAM
    • ATWINC1510 WiFi Module
      • Single-band 2.4GHz b/g/n IoT Network Controller, Pre-certified Module
    • ATECC608A CryptoAuthentication™ device
      • Protected Storage for 16 Keys, SHA256, AES-CCM, ECDH (Elliptic Curve Diffie-Hellman), ECDSA
    • Other Board Features
      • Four Status LED’s
        • Blue LED indicates a connection to Wi-Fi network
        • Green LED indicates a connection to the Google Cloud servers
        • Yellow LED indicates a packet of sensor data has been successfully published to the Google Cloud MQTT servers
        • Red LED indicates an Error occurred
      • Two mechanical buttons
      • TEMT6000 Light sensor
      • MCP9808 Temperature sensor
      • mikroBUS header to interface to MikroElekronika click Boards™
    • On-board Debugger
      • Auto-ID for board identification in Microchip MPLAB X
      • Programming and debugging
      • Virtual COM port (CDC)
      • One logic analyser channel (DGI GPIO)
    • USB and battery powered
    • Integrated Li-Ion/LiPo battery charger

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Описание:
Tire Pressure Monitoring System (TPMS) measures the tire pressure and wirelessly transmits the data to a controller which displays it on a LCD screen.
Возможности:

    The TPMS system contains the following components:

    Board Features Benefits
    Base Station
    • PIC 18F4680 is the Core MCU of the TPMS
    • Provides Scheduling Table for up to 5 Tires
    • Displays Pressure and Temperature Information
    • Supported Communication Protocol: CAN, LIN and RF (UHF)
    • Centralized Unit that can easily be expanded to incorporate additional functionalities such as Passive Keyless Entry or Immobilization.
    Low Frequency Initiator
    • PIC18F2680 enables the interface between Base Station and Tire Pressure Sensor Module
    • Supported Communication Protocol: CAN, LIN and RF (125KHz)
    • Flexible design allows designers to choose between either a CAN or LIN network for communication to Base Station.

    Tire Sensor
    • Uses MCP2030 AFE for detecting the 125Khz signal
    • Analog Sensor for Pressure and Temperature measurements
    • PIC16F684 handles all measurements, calculations and communications
    • Supported Communication Protocol: RF (UHF and 125KHz)

    • Low power consumption
    • Reliable means for detection of the Low Frequency Signal
    • Increased Design Flexibility




    The TPMS Reference Design can be expanded up to five tire sensor nodes with Microchip’s TPMS Accessory Kit (APGAC031).

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This product is no longer available for sale.

The ATmega128RFA1 evaluation kit accelerates development, debugging, and demonstration of IEEE 802.15.4-compliant wireless applications. The kit contains two evaluation boards for the ATmega128RFA1 device, which covers the 2.4GHz ISM bands for use with the STK600 Starter Kit.

Возможности:

    The kit contains two evaluation boards for the ATmega128RFA1 device, which covers the 2.4GHz ISM bands for use with the STK600 Starter Kit.

Документация:
  • Схемотехника
Описание:

This product is no longer available for sale.

Mature tool; no longer supported.

Возможности:

    Mature tool; no longer supported.

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A complete IEEE802.11b+g WLAN evaluation and development kit for 32-bit AVR UC3 microcontrollers. The kit contains the HDG104 WLAN module from H&D Wireless AB, which offer the low power consumption, high communication speed, and long range.

The Wi-Fi extension board has an SD card form factor, and connects easily to any 32-bit AVR UC3 evaluation kit with a SD card socke. The Wi-Fi TCP/IP stack is included in the AVR UC3 Software Framework, and supports both SPI and SDIO communication to the board.
Возможности:

    • Complete IEEE802.11b+g WLAN platform
    • Low power
    • High speed
    • Long range
    • SD card accessible
    • Supports SPI and SDIO

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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The RF4CE-EK Evaluation Kit demonstrates the unique performance of the 2.4GHz System-on-Chip solution ATmega128RFA1. The RF4CE-EK contains two Radio Controller Boards (RCB) assembled with the ATmega128RFA1 and a SMA connector at the RF port. The RCB is powered by two AAA batteries and forms a full functional and portable wireless node.
Возможности:

    • Evaluate the outstanding performance of the ultra-low power ATmega128RFA1 single-chip transceiver

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Руководство по разработке недорогой платы, содержащей антенны для беспроводных систем, работающих в диапазонах до 1 ГГц и 2,4 ГГц.

 

 

Возможности:

  • PCB-антенны;
  • Винтовые антенны;
  • Чипы антенны 169, 433, 868, 915 МГц и 2,4 ГГц;
  • Согласованные сопротивления.

Возможность заказа
  • Заказать BOM
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  • BOM
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Данный базовый дизайн радиочастотной схемы обладает хорошими характеристиками развязки и удачным взаимным расположением элементов в составе малопотребляющего РЧ-устройства, работающего в диапазоне частот 868 МГц. Данный проект можно использовать в применениях, в которых необходимо соответствовать требованиям EN300 220 в европейском субдиапазоне частот 869,4-869,65 МГц (g3). Максимальная выходная мощность составляет +27 dBm.

 

Возможности:

  • Рекомендованная разводка платы для достижения оптимальных характеристик
  • Расположение элементов по вертикали друг над другом
  • РЧ-развязка
  • Оптимальные типы и значения компонентов
  • Известные производители компонентов

Возможность заказа
  • Заказать BOM
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Описание:
Базовый проект CC1175EM содержит схему электрическую принципиальную и файлы трассировки отладочного модуля CC1175EM, предназначенного для работы в частотных диапазонах 868 МГц / 915 МГц. Данный базовый проект обладает хорошими характеристиками развязки и удачной РЧ-трассировкой CC1175. Для оптимальной работы в РЧ-диапазонах данные секции следует копировать предельно точно. Данное решение представляет собой 4-слойную печатную плату с дискретным балуном и SMA-разъёмом антенны для работы с антенной при несбалансированном подключении с импедансом 50 Ом. Данная РЧ-секция предназначена для работы в частотных диапазонах от 863 МГц до 870 МГц (ЕС) и от 902 МГц до 928 МГц (США).

Базовый проект имеет характер аппаратного решения.
Возможности:


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Аппаратный базовый проект и платформа для разработки программного обеспечения для решения CC2533 RF4CE. Данный проект доступен для приобретения в TI Store.

Базовый проект имеет характер аппаратно-программного решения.

Возможности:

  • Двуслойный базовый проект
  • Опциональная печатная антенна
  • Крепится на платформу для разработки SmartRF05EB

Возможность заказа
  • Заказать BOM
Документация:
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  • BOM
Возможности:


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Описание:
Решение CC2545EM содержит схемы и необходимые для производства платы файлы. Дизайн демонстрирует правильную развязку для CC2545 и радиотракта. Для достижения оптимальных характеристик РЧ эталонный дизайн должен быть точно скопирован. Схема реализована на четырехслойный плате с инвертированной F-антенной и SMA разъемом для подключения внешней антенны, с согласованным сопротивлением 50 Ом. Используемый вариант антенны выбирается установкой перемычки 0 Ом.
Возможности:


Возможность заказа
  • Заказать PCB
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Описание:
Типовое решение CC85XX-CC2590EM содержит схемы и файлы для производства печатной платы для модуля CC85XX-CC2590EM, используемого в комплекте отладочной платы PurePath Wireless CC85xxDK. Дизайн демонстрирует правильную развязку для CC85XX-CC2590 и разводку радиотракта. Для достижения оптимальных высокочастотных характеристик рекомендуется точно скопировать и схему и печатную плату. Решение выполнено на четырехслойной печатной плате с балуном на дискретных компонентах и двумя вариантами антенн: либо разъем SMA для несиметричной антенны 50 Ом, либо инвертированная F антенна(выбирается путем установки резистора-перемычки 0 Ом). РЧ-секция рассчитана на работу в диапазоне частот 2,4 ГГц.
Возможности:


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The DM080101 Water Tolerant Touch Surface development kit enables easy evaluation of the 2D Touch Surface library. The kit demonstrates water tolerance and noise immunity on a touch pad and has two touch buttons, all controlled by the same MCU.

Возможности:

    • Surface Sensor: 5x6 Surface diamond pattern with dedicated driven shield
    • Two Self-Capacitance Touch buttons
    • ATtiny1617 8-bit AVR Microcontroller - 20 MHz, 16 Kbytes Flash, 2 Kbytes RAM,128 bytes of EEPROM
    • Debugging and Programming: mEBDG with CDC UART
    • LEDs to indicate position and mode
    • LED Driver: MCP23017

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The DM0164149 Water Tolerant 2D Touch Surface development kit - PIC Edition enables easy evaluation of the 2D Touch Surface library. The kit demonstrates water tolerance and noise immunity on a touch pad and has two touch buttons, all controlled by the same MCU.


Please be aware of the sister kit (DM080101) offering the same functionality and form factor, running the 2D Touch surface library on a ATtiny1617.

The QT8 Xplained Pro Extension Kit (AC164161) enables you to combine a small touch pad with supported XPRO MCU boards, 8bit and 32bit.

Возможности:

    • Touch Pad: 5x6 surface, diamond pattern with dedicated driven shield
    • Two Self-Capacitance, water tolerant Touch buttons
    • PIC16F18456 8-bit PIC Microcontroller - 32 MHz, 28 Kbytes Flash, 2 Kbytes RAM, 256 bytes of EEPROM
    • Debugging and Programming: PKoB 4 (direct MPLAB and Daa Visualizer support
    • LEDs to indicate position and mode
    • LED Driver: MCP23017

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The EVAL-AD7380FMCZ and EVAL-AD7381FMCZ are full featured evaluation boards that evaluate all features of the AD7380 and AD7381 analog-to-digital converters (ADCs). The evaluation boards can be controlled by the EVAL-SDP-CH1Z via the 160-way system demonstration platform (SDP) connector, J4. The EVAL-SDP-CH1Z board controls the evaluation boards through the USB port of a PC using the Analysis, Control, Evaluation (ACE)software, which is available for download from the ACE software page.

Complete specifications for the AD7380 and AD7381 are provided in the AD7380/AD7381 data sheet. Consult these specifications in conjunction with this user guide when using the evaluation boards. Full details on the EVAL-SDP-CH1Z are available on the SDP-H1 product page. The comprehensive ACE user guide is available on the ACE software page.

Figure 1 shows the typical setup of the EVAL-AD7380FMCZ board. The setup for the EVAL-AD7381FMCZ board is the same as the EVAL-AD7380FMCZ setup.

Возможности:

  • Full featured evaluation board multichannel, simultaneous sampling ADC
  • On-board reference, reference buffer, and ADC driver
  • On-board power supplies
  • Board-compatible, high speed system demonstration platform (SDP-H1) controller
  • PC software for control and data analysis

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This page contains ordering information for the evaluation boards used to evaluate the ADF7012 Multichannel ISM Band FSK/GFSK/OOK/GOOK/ASK Transmitter.

Документация:
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The ADF7020 evaluation board software controls the operation of the ADF7020 evaluation boards from a PC over a USB . Install the ADF7020 evaluation software by clicking on "ADF7xxx_ADIismLINK Install_*.exe" at the link provided. The software will be available under Programs -> Analog Devices->ADF7xxx . The Analog Devices example network protocol software, ADIismLINK Rev2.0, is also installed as part of this setup file: Programs -> Analog Devices-> ADIismLINK V2 Host Application.

ADF7020 schematic and BOM are included in the Evaluation Board User Guide.

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This page contains ordering information for the evaluation boards used to evaluate the ADF7020-1 High Performance, ISM Band, FSK/ASK Transceiver IC.

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Two different board layouts are available for the ADF7023. In the first layout there are separate matching circuits for both the single ended PA and for the differential LNA/PA. This layout is used on the EVAL-ADF7023DB1 and EVAL-ADF7023DB3 evaluation boards.


In the second layout there is a single matching network connecting the single ended PA and the differential LNA/PA. This layout is used on the EVAL-ADF7023DB2 and EVAL-ADF7023DB4 evaluation boards.


Both layouts are 4-layer boards and use 0402 passives.

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The ADF7024 daughter boards are intended for use with the EVAL-ADF7XXXMB4Z mother board, which needs to be ordered separately.


Two different board layouts are available for the ADF7024. In the first layout there are separate matching circuits for the single ended PA and differential LNA. This layout is used on the EVAL-ADF7024DB1 (matched for 862-928MHz) and EVAL-ADF7024DB3 (matched for 431-435MHz) evaluation boards.


In the second layout there is a single combined matching network connecting the single ended PA and the differential LNA. This layout is used on the EVAL-ADF7023DB2 (matched for 862-928MHz) and EVAL-ADF7023DB4 (matched for 431- 435MHz) evaluation boards.


Both layouts are 4-layer boards and use 0402 passives.


For detailed information on the ADF7024 daughter boards please download the ADF7024 design resource package.

Описание:

ADL5386-EVALZ is 4-layer, FR4-based evaluation board. For normal operation, it requires a 5 V/300 mA power supply and the 5 V power supply should be connected to the clip leads labeled VPOS and GND. The LO and baseband inputs (which should be biased at 0.5 V) are applied to edge-mounted SMA-type RF connectors (labeled LO, IP, IN, QP, and QN). The IQ modulator output can be configured to drive the ADL5386's VVA block. Alternatively, the IQ modulator's output can be accessed directly at the SMA connector labeled VMOD. An AGC mode can be implemented using the on-board log detector/controller. DC voltage proportional to die temperature is available at the clip leads labeled TEMP.

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The MAX2112 evaluation kit (EV kit) simplifies the testing and evaluation of the IC direct-conversion tuner. The evaluation kit is fully assembled and tested at the factory. Standard 50Ω SMA and BNC connectors are included on the EV kit for the inputs and outputs to allow quick and easy evaluation on the test bench.

This document provides a list of equipment required to evaluate the device, a straightforward test procedure to verify functionality, a description of the EV kit circuit, the circuit schematic, a component list for the kit, and artwork for each layer of the PCB.
Возможности:

  • Easy Evaluation of the MAX2112
  • 50Ω RF Input SMA Connector
  • 50Ω Baseband Output BNC Connector
  • Single 3.3V ±5% Supply
  • I²C 2-Wire Serial Interface
  • All Critical Peripheral Components Included
  • Fully Assembled and Tested
  • PC Control Software (Available at www.maximintegrated.com/evkitsoftware)

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The MAX2235 evaluation kit (EV kit) simplifies evaluation of the MAX2235 power amplifier (PA). It enables testing of the device's RF performance and requires no additional support circuitry. The EV kit's signal inputs and outputs use SMA connectors to facilitate the connection of RF test equipment.

The MAX2235 EV kit is assembled with a MAX2235 and incorporates input and output matching components optimized for the 824MHz to 849MHz RF frequency band. All matching components may be changed to work at RF frequencies from 800MHz to 1000MHz.
Возможности:

  • Easy Evaluation of MAX2235
  • +2.7V to +5.5V Single-Supply Operation
  • RF Input and Output Matched for Operation from 824MHz to 849MHz
  • All Critical Peripheral Components Included

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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 MAX2659 evaluation kit (EV kit) simplifies evaluation of the MAX2659 GPS/GNSS low-noise amplifier (LNA). The MAX2659 high-gain, LNA is designed for GPS, Galileo, and GLONASS applications. The EV kit enables testing of the device's performance and requires no additional support circuitry. The MAX2659 EV kit is fully assembled with the MAX2659 IC on-board and incorporates input matching components to optimize performance. The EV kit's signal inputs and outputs use SMA connectors to facilitate the connection of RF test equipment.
Возможности:

  • Easy Evaluation of the MAX2659 IC
  • 1.6V to 3.3V Single-Supply Operation
  • RF Input and Output Matched to 50Ω
  • Jumper Included for Shutdown Setting
  • Fully Assembled and Tested

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The MAX7036 low-cost receiver is designed to receive amplitude-shift-keyed (ASK) and on-off-keyed (OOK) data in the 300MHz to 450MHz frequency range. The receiver has an RF input signal range of -109dBm to 0dBm.

The MAX7036 requires few external components and has a power-down pin to put it in a low-current sleep mode, making it ideal for cost- and power-sensitive applications. The low-noise amplifier (LNA), phase-locked loop (PLL), mixer, IF filter, received-signal-strength indicator (RSSI), and baseband sections are all on-chip. The MAX7036 uses a very-low intermediate frequency (VLIF) architecture. The MAX7036 integrates the IF filter on-chip and therefore eliminates an external ceramic filter, reducing the bill-of-materials cost. The device also contains an on-chip automatic gain control (AGC) that reduces the LNA gain by 30dB when the input signal power is large. The MAX7036 operates from either a 5V or a 3.3V power supply and draws 5.5mA (typ) of current.

The MAX7036 is available in a 20-pin thin QFN package with an exposed pad and is specified over the AEC-Q100 Level 2 (-40°C to +105°C) temperature range.
Возможности:

  • ASK/OOK Modulation
  • < 250µs Enable Turn-On Time
  • On-Chip PLL, VCO, Mixer, IF, Baseband
  • Low IF (200kHz Nominal)
  • 5.5mA DC Current
  • 1µA Standby Current
  • 3.3V/5V Operation
  • Small 20-Pin Thin QFN Package with an Exposed Pad
  • AEC-Q100 Qualified

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The MAX7036 evaluation kit (EV kit) provides a proven design to evaluate the MAX7036 ASK receiver in a TQFN package with an exposed pad. The EV kit enables testing of the device's RF performance and requires no additional support circuitry. The RF input uses an SMA connector for convenient connection to test equipment.

The MAX7036 EV kit is available in two versions, 315MHz (MAX7036EVKIT315+) and 433.92MHz (MAX7036EVKIT433+). The passive components are optimized for these frequencies. The EV kit PCBs come with a MAX7036GTP/V+ installed on both EV kit versions.
Возможности:

  • Lead(Pb)-Free and RoHS Compliant
  • Proven PCB Layout
  • Proven Components List
  • Available in 315MHz and 433.92MHz Versions
  • Fully Assembled and Tested

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MSP430-CCRFLCD is development board with CC430F5137IRGZ microcontroller from Texas Instruments. This ultra-low-power microcontroller has integrated CC1101 RF transceiver. The board has also LCD, two status leds, two user buttons and UEXT, which canbe modified as device or host.

MSP430-CCRFLCD can communicate with other boards with integrated CC1101 RF transceiver via radio connection.

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The nRF51822 Bluetooth® Smart Beacon Kit is a reference design that lets you explore the full range of development possibilities for beacons using Bluetooth Smart technology. It consists of hardware, firmware and apps for both iOS and Android on Bluetooth 4.0 enabled smartphones.

It is ultra-compact at 20 mm diameter and can run from CR1632 coin-cell batteries. The kit has two buttons which can be programmed to enable easy switching between modes and/or functionality, as well as an RGB LED which can be configured to indicate different events. Ten GPIO pins are available for expansion and the kit can be connected to an external programmer/debugger during development work. The nRF51822 Bluetooth Smart Beacon Kit also supports complete Over-The-Air (OTA) Device Firmware Upgrade (DFU) for all firmware on the nRF51822 chip.

KEY FEATURES of nRF51822

  • Multiprotocol 2.4GHz radio

  • 32-bit ARM Cortex M0 processor

  • 256kB/128kB flash and 32kB/16kB RAM

  • Software stacks available as downloads

  • Pin compatible with other nRF51 Series devices

  • Application development independent from protocol stack

  • Fully on-air compatible with nRF24L Series

  • Programmable output power from +4dBm to -20dBm

  • RSSI

  • RAM mapped FIFOs using EasyDMA

  • Dynamic on air payload length up to 256 Bytes

  • Flexible and configurable 31 pin GPIO

  • Programmable Peripheral Interface - PPI

  • Simple ON/OFF global power modes

  • Full set of digital interfaces including: SPI/2-wire/UART

  • 10-bit ADC

  • 128-bit AES ECB/CCM/AAR co-processor

  • Quadrature demodulator

  • Low cost external crystal 16MHz ± 40ppm

  • Low power 16MHz crystal and RC oscillators

  • Ultra low power 32kHz crystal and RC oscillators

  • Wide supply voltage range (1.8 V to 3.6 V)

  • On-chip DC/DC buck converter

  • Individual power management for all peripherals

  • Package options: 48-pin 6x6 QFN/WLCSP, Thin-CSP

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Based on Microchip's new low power IEEE 802.11b/g/n Wi-Fi module the RN1810, the RN1810 PICtail™/ PICtail Plus Daughter Board allows customers to easily develop Wi-Fi applications using Microchip’s 8, 16 and 32-bit PIC® microcontrollers. The kit includes a fully integrated TCP/IP stack allowing for a simple serial to Wi-Fi connection to the microcontroller. The board features a USB interface for easy plug-and-play development with a PC. The board is also compatible with the Explorer 16 Development Board (DM240001), PICDEM.net2 Development Board (DM163024) and PIC32 Starter Kit (DM320001) with I/O Expansion Board (DM320002).
Возможности:

    • Enables rapid development with the RN1810 low power 802.11b/g/n Wi-Fi module
    • PICtail™ and PICtail Plus interfaces for connection to Microchip Explorer 16 (DM240001) , PIC32 I/O Expansion board (DM320002) or PIC18 Explorer (DM183032) development boards
    • On-board USB to UART bridge for easy development from PC
    • On-board connection and data status LEDs
    Module Features:

    • IEEE 802.11b/g/n Compliant Transceiver
    • 2.4 GHz IEEE 802.11n Single Stream 1x1
    • UART Interface to Host Controller (4-wire including RTS/CTS)
    • Configured using Simple ASCII Commands
    • Supports Infrastructure and SoftAp Networking Modes
    • Built-In Networking Applications: IPv4/IPv6, TCP, UDP, DHCP, DNS, ICMP, ARP, HTTP, FTP, SNTP, and SSL/TLS
    • Complete On-Board TCP/IP Networking
    • Upgrade Firmware Over the Air using TFTP
    • Supports Wi-Fi® Protected Setup (WPS)
    • Modular Certified for the United States (FCC), Canada (IC), Europe, Australia, New Zealand, Korea, Taiwan, and Japan

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The STEVAL-TDR023V1 is a common source N-channel enhancement-mode lateral field effect RF power amplifier designed for UHF mobile radio application.

Возможности:

  • Excellent thermal stability
  • Frequency: 460 - 540 MHz
  • Supply voltage: 13.6 V
  • Output power: 20 W
  • Gain: 13.3 dB typ.
  • Efficiency: 51% - 66%
  • Load mismatch: 20:1
  • BeO free amplifier
  • In compliance with the 2002/95/EC European directive

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Данный BoosterPack™ с CC1120 и CC1190 sub-1 ГГц диапазона частот для сетей SIGFOX представляет собой сертифицированный аппаратный проект, с помощью которого пользователи получают возможность подключаться к платформе энергоэффективной сети дальнего радиуса действия (Low Power Wireless Area Network, LPWAN) SIGFOX и который предназначен для рынка Интернета вещей (IoT).

Данный BoosterPack™ с CC1120 и CC1190 предназначен для использования со сверхмалопотребляющими наборами для разработки LaunchPad™ MSP-EXP430F5529, а также для работы в качестве автономного модуля с использованием программного приложения SmartRF™ Studio. Данный BoosterPack с CC1120 и CC1190 имеет интегрированную печатную антенну, которая работает в ISM-диапазонах частот 902 МГц – 928 МГц (США) и 869 МГц – 870 МГц (Европа).

Данный базовый проект имеет характер аппаратного решения.

Возможности:

  • Семейство устройств CC112x sub-1 ГГц диапазона частот представляет собой полностью интегрированные однокристальные РЧ-приёмопередатчики, предназначенные для высокопроизводительной работы при крайне низких уровнях энергопотребления и низких напряжениях питания в составе бюджетных беспроводных систем
  • В РЧ-приёмопередатчик интегрированы все необходимые фильтры, что позволяет избавиться от необходимости в дорогостоящих внешних фильтрах средних частот
  • Устройство CC1120 в основном предназначено для промышленных, научно-исследовательских и медицинских (ISM) диапазонов частот, а также для диапазонов частот устройств ближнего радиуса действия (SRD) 164 МГц – 192 МГц, 410 МГц – 480 МГц и 820 МГц – 960 МГц
  • CC1190 представляет собой устройство увеличения зоны покрытия для РЧ-приёмопередатчиков, РЧ-передатчиков и SoC-устройств диапазона частот 850 МГц – 950 МГц
  • CC1190 увеличивает энергетический потенциал линии связи благодаря наличию в нём усилителя мощности (УМ) для увеличения выходной мощности и малошумящего усилителя (МШУ) с низким значением уровня шума для увеличенной чувствительности приёмника, а также переключателей и компонентов РЧ-согласования для упрощения дизайна высокопроизводительных беспроводных систем

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Видеоанализ является критически важной функции во многих приложениях промышленной автоматизации, включая машинное зрение, автоматизацию осмотра, системы видеонаблюдения и обработку изображений. Данный аппаратно-программный комплекс оптимизирован для приложений на базе видеоанализа и включает в себя все необходимые аппаратные элементы данного проекта на ряду с базовым программным обеспечением на C и C++ для быстрой установки и запуска данного базового проекта, при этом предлагая разработчику возможность сфокусироваться на добавлении дифференцированных алгоритмов и функций приложений.

Данный базовый проект имеет характер аппаратно-программного решения.

Возможности:

  • Представляет собой набор для разработки видео (VDK) от компании Critical Link, который представляет собой полноценную аппаратно-программную платформу, предназначенную для ускорения процесса разработки видеоприложений
  • Включает в себя как ППВМ семейства Spartan 6 от Xilinx, так и двухъядерный процессор OMAP-L138 от TI
  • Базируется на готовой к использованию системе в модуле (SoM) MityDSP-L138F от Critical Link
  • Включает в себя исходные файлы проекта для базовой промышленной I/O-карты и карт расширения камеры
  • Обеспечивает простой интерфейс для SOM на базе OMAP-L138
  • Программное обеспечение видеоалгоритма, включая преобразование цветового пространства, выделение границ, свёртку и блоки обработки наряду с программной библиотекой обработки изображений в исходном коде от TI
  • Программное обеспечение графического интерфейса пользователя на базе ARM
  • Поддерживает несколько камер с видеодатчиками в монохромном или цветном формате
  • Предлагает поддержку широкого набора стандартной периферии, включая ENET, USB, SATA и ЖК-дисплеи

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WIZnet’s W5200 Ethernet PICtail™ (Plus) board provides 10/100Mbps, half/full duplex Ethernet connectivity by onboard WIZnet W5200 Ethernet controller, which has a hardwired TCP/IP processing engine.

The board has both PICtail™ headers and PICtail™ Plus side-edge connectors designed to be plugged into the Explorer 16 (DM240001), PIC32 I/O Expansion Board (DM320002), PICDEM.net 2 (DM163024), PIC18 Explorer (DM183032), and other supported development boards.

The board has fast SPI interface, 2K EEPROM with EUI-48™ Node Identity (MAC address) and RJ-45 connector. It also provides Auto-negotiation, Auto-MDI/MDIX, Power-Down Mode and Wake-on-LAN functionalities.

WIZnet’s W5200 Ethernet PICtail™ (Plus) board supports both Microchip’s software TCP/IP Stack and WIZnet’s hardwired TCP/IP Stack simultaneously on PIC18, PIC24, dsPIC and PIC32 platforms. The Hardwired TCP/IP Stack especially fits well for Simple Internet connectivity for PICs with small program memory size like PIC16.

For more information and downloads visit the WIZnet page.
Возможности:

    • WIZnet W5200 Fast SPI Ethernet controller with Hardwired TCP/IP stack
    • Magnetic RJ-45 Connector
    • Microchip 2K SPI Bus Serial EEPROM with EUI-48™ Node Identity
    • Supports Auto-negotiation, Auto-MDIX, 10Base-T/100Base-TX
    • PICtail™ and PICtail™ Plus Daughter Board connection interface
    • Compatible with many boards with PICtail™ and PICtail™ Plus interfaces, including Explorer 16 Development Board, various PICDEM™ boards

*Информация о ценах и сроках поставки носит информационный характер. Офертой является только выставленный счет.

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