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Avnet Board Solutions

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  Automotive
  Consumer
  Industrial
  LED lighting
  Others

Automotive
RF Transmitter and Receiver module
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RF transmitter and receiver module which operates on 433/315Mhz with a power output of +5dBm and a better receive sensitity for a long range communication. It can be used in automotive keyless entry, industrial RF data communication, and RF remote controller of home appliances. This module can be interfaced to any microntroller using serial port.
Car Tuner module
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This radio tuner module can receive AM/FM radio, it can be used for car audio set. This module can be interfaced to MCU using I2C interface.
 
STLM002 - 315/433MHz Remote Keyless Entry (RKE) receiver
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STLM002 is a remote keyless entry (RKE) receiver reference board design that is specified over automotive temperature (-40 deg. C to +125 deg. C) range. The design implementation is based on MAXIM MAX7034 315/434 ASK superheterodyne receiver, which is ideal for cost sensitive and power-sensitive applications. STLM002 supports interface to external antenna and data rate of 1.25kbps.
 
 
Consumer
MOD288L01 - Nordic 2.4GHz nRF24L01 RF transceiver module
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MOD288L01 is a 2.4GHz wireless module design based on Nordic's nRF24L01 RF transceiver IC. The module comes with embedded printed circuit antenna, antenna connector and external host connection via SPI interface. Avnet also supports a test kit (MOD269TBD) for customers who intend to test the RF performance of nRF24L01 module.
MOD269TBD - Test Board for Avnet nRF24L01 module (MOD288L01)
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MOD269TBD is a test kit which supports RF performance measurement of Avnet's nRF24L01 module via PC console. This kit comes with a PC test program.
 
 
Industrial
MOD750LDC - 16-ch @0.5Watt/ch DMX512 LED controller
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MOD750LDC is a 16-ch (@ 0.5Watt per channel) LED controller reference design which supports a DMX512 receiver communication protocol. The design supports on-board 9-bit DMX address and physical interface to external DMX512 transmitter via RS485 interface. The design implemention is based on Renesas's 16-bit micro controller, R5F21254, and TI's LED drivers, TLC5940.
MOD750LDC - 12-ch @1.0Watt/ch DMX512 LED controller
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MOD760LDC is a 12-ch (@ 1Watt per channel) LED controller reference design which supports a DMX512 receiver communication protocol. The design supports on-board 9-bit DMX address and physical interface to external DMX512 transmitter via RS485 interface. The design implemention is based on Renesas's 16-bit micro controller, R5F21254, and TI's LED drivers, TLC5940.
 
 
LED lighting
R/G/B HB LED control boards with DMX512
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Controller BD: R5F21254 Renesas
LED driver board for Street Lamp/stage lamp, up to 500mA
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LM3402HV (NSC)
 
LED driver board for Street Lamp/stage lamp, up to 1.5A
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LM3406HV (NSC)
LED driver board for Street Lamp/stage lamp, up to 700mA
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MAX16832A (Maxim)
 
LED driver board
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MAX16830(Maxim) with extra MOSFET
4-channel LED driver board
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MAX16832A (Maxim)
MAX5033(Maxim)
 
LED driver board
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MAX16834(Maxim) boost mode
LED driver board
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LM3421(NSC) boost mode
 
LED Flashlight Demo
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MAX16820/PIC12F629 with control function
Nuventix with LED Driver ( Demo)
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MAX16820/TPS54331
 
LED Lighting for refrigerator with 0.5W LED
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NCP3603/Seoul LED
Aluminium PCB
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Aluminium PCB for OSRAM Ostar SMT
 
Aluminium PCB
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Aluminium PCB for OSRAM OSLON
Aluminium PCB
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Aluminium PCB for SSC Z1 / F50360
 
Aluminium PCB
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Aluminium PCB for 10 pcs of Z1 or F50360
LED driver board for Luminus Device with current up to 20A
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MAX16821(MAXIM)
 
R/G/B HB LED control boards with DMX512
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Cypress PowerPSoC with 4-channel LED driver
High efficiency LED DC-DC solution
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BCM series (Vicor)
 
 
Others
8Channel PCIe Surveillance Card
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RCaptures 8 channels of composite video input and stores in PC harddrives.It captures realtime at 30fps (frames per second). Deliverables comes complete with Windows XP software drivers and demo video capture application. The software application also includes integration of video compression engine.
NS Power module for PCIe Surveillance Card
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A general power regulator module with customizable voltage output (0.8-3.3V) based on 5V input. It supplies up to 4A current with module size of 23x38mm.
 
SRAM Adapter Board for Spartan3A Evaluation Kit
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Cypress SRAM add-on board enhances the of the host board Spartan 3A Evaluation Kit with 1MB (1M x 8) of memory.
16Channel PCIe Surveillance Card
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Captures 16-channels of composite video input and stores in PC harddrives. Captures realtime at 30fps (frames per second). Deliverables comes complete with Windows XP s/w drivers and demo video capture application. The s/w application also includes integration of video compression engine.
 
NS Kuromi clock solution
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This is a clock generator module targetted for 3G wireless repeaters and basestation applicatons. The module buffers and synthesizes various clocks meeting very high quality jitter requirements of 3G systems application. The board consists of National Semiconductor LMK04031, LMK01000, LMX2541, LMX2531 and a Xilinx Spartan-3 XC3S50AN FPGA for system configuration.
PFC
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PFC (power factor correction; also known as power factor controller) is a feature included in some computer and other power supply boxes that reduces the amount of reactive power generated by a computer. Reactive power operates at right angles to true power and energizes the magnetic field. Reactive power has no real value for an electronic device, but electric companies charge for both true and reactive power resulting in unnecessary charges. PFC is a required feature for power supplies shipped to Europe. PFC is not used solely for computer power supplies. In other industries, PFC equipment is used to reduce the reactive power produced by fluorescent and high bay lighting, arc furnaces, induction welders, and equipment that uses electrical motors.
 
5VSB
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Early PCs using the PC/XT, AT, Baby AT and LPX form factors all use a mechanical switch to turn the computer on and off. Newer form factors, starting with the ATX/NLX, and including the SFX and WTX, have changed the way the power supply is turned on and off. Instead of using a physical switch, these systems are turned on by a signal from the motherboard telling the power supply what to do. In turn, the motherboard can be told to change this signal under software control. This is what allows Windows to shut the power down to a PC, or what allows such features as turning a PC on from a button on the keyboard. This feature is called "Soft Power" and the signal that controls the power supply is called "Power On", or alternately, "PS On" or "PS_On".
LCD TV SPS
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This reference document describes a built-and-tested, GreenPointTM solution for an LCD TV power supply. The reference design circuit consists of one single-sided 130 mm x 200 mm printed circuit board designed to fit into an LCD TV. Height is 25 mm. An overview of the entire circuit is provided by Figure 1. As shown in that figure, ON Semiconductor devices are available for every block of the LCD TV power supply; and by judicious choice of design tradeoffs, optimum performance is achieved at minimum cost.
 
D/D Converter
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Exponential growth in the requirements for higher current at lower operating voltages has created a rough road for designers of DC-DC power management systems. International Rectifier has focused the power semiconductor industry's largest R&D effort to implement a roadmap for high performance and cost-effective DC-DC power management.
TELECOM
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di/dt introduced the family of DC/DC converters, a series of dual quarter-bricks with independently regulated outputs. The 3.3 V/5 V version simultaneously delivers 15 A at 3.3 V and 10 A at 5 V (100 watts). The family is available in any combination of outputs from 5 V down to 1.2 V (5 V, 3.3 V, 2.5 V, 2.0 V, 1.8 V, 1.5 V, and 1.2 V), simultaneously delivering 15 A per output (10 A for 5 V).
 
PC ATX
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These new ICs not only speeded up the overall development cycle for this new design, but also helped achieve the high efficiencies while at the same time keeping a check on the overall cost. With the use of these new ICs, we has proven again that the emerging requirements for high efficiency desktop power supplies can be met and further, can be optimized to meet specific performance vs. cost goals.
This 2nd generation design consists of a single PCB designed to fit into the standard ATX enclosure along with a fan. this design employed an Active Clamp forward topology using the new. A Continuous Conduction Mode (CCM) Power Factor Correction (PFC) IC was employed for the active PFC circuit, provides an integrated, robust and cost-effective PFC solution. The standby controller, is an optimized IC for the ATX power supply and incorporates a high-voltage MOSFET. On the secondary side, this architecture employs a post regulator approach for generating the 3.3 V output. This is an alternative approach to the traditional magnetic amplifier (Mag Amp) approach.
With the introduction of this 2nd generation, high-efficiency ATX Power Supply.
UMPC SPS
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This reference document describes a built-and-tested, GreenPointTM solution for a 30 W power adapter.
The reference design circuit consists of one single-sided 70 mm x 50 mm printed circuit board. Height is 20 mm.
 
Power Meter
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Power Meter IC Provides Precision Measurement for High Performance Residential and Industrial Applications
We provide apparent energy calculation, power factor, fundamental and harmonic energy, line frequency and more. These new ICs maintain the superior performance, offering energy data linearity to within 0.1 percent of reading over a 1000:1 dynamic range. Each IC also provides an on-chip temperature sensor which allows designers to compensate for temperature drift error and increase system accuracy. These ICs also feature a bi-directional serial interface for microcontroller communication, which is initialized and fully functional upon reset.
Street Lamp
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With current requirements to reduce energy usage and “Go Green”, LEDs have become the darling of the lighting industry for both industrial and personal use. In fact, LED technology has stimulated government and utility rebate incentive programs promoting their widespread adoption, particularly in California. Another attractive feature of LED lights is that they emit very little heat. This “cool to the touch” feature makes LEDs perfect for a wide range of applications where temperature is an issue. Additionally, the wattage required to power an LED bulb is a mere fraction of that required for standard incandescent light bulbs. This equates to big energy savings and reduces environmental impact.