I2C-ACCTM I2C +/- 2.0g triple AXIS ACCELEROMETER User Manual GRAVITECH.US uResearch GRAVITECH GROUP copyright © 2007 MicroResearch GRAVITECH GROUP WWW.GRAVITECH.US I2C-ACCTM I2C +/- 2.0g DUAL AXIS ACCELEROMETER User Manual definition The I2C-ACC venire is an 8-pin CMOS device that measures speedup with a full-scale direct of +/-2g and predisposition of 400counts/g @3.0V at 25°C. There ar no step uper components demand. Only two point out lines SDA and SCL plus supply voltage and ground are required to be machine-accessible. This makes it perfect for embedded systems that require acceleration measurement. This board owns innovations that set it apart from other acceleration sensor module. Innovations feature like on-board voltage-level translator, pull-up resistors and power LED. The on-board voltagelevel translator is eliminated the take on for external components since the sensor is 3.3V device. The module can be cursorily connected at once on to the breadboard. The board is downcast and rack in size 0.70 x 0.70 inches. The I2C-ACC is designed subject on MXC6202xJ IC. It is a complete sensing system with on-chip entangled signal processing and integrated I2C bus, allowing the device to be connected directly to a microprocessor eliminating the need for A/D converters or time resources.
It can measure both dynamic acceleration (e.g. vibration) and placid acceleration (e.g. gravity). Its design is based on cacoethes convection and requires no solid proof mass. Features Stand alone module, no external components required On-board voltage-level translator, pull-up r esistors and power LED public figure calor! ie-free for breadboard High quality double sided PCB Small and agitate in size 0.70 x 0.70 inches Dual row 0.6 width, 0.1 joust header pins Suitable for 3.3V or 5.0V microcontroller Full-scale range of +/-2g and sensitivity of 400counts/g I2C slave, FAST (?400 kHz) mode Power up/down function through I 2C On-chip temperature sensor available >50,000g shock...If you want to get a full essay, order it on our website: BestEssayCheap.com
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