ChipDocs - Datasheet Source for Semiconductor and Electronic Circuit Components
More than
4 307 195 
components listed
Partname:MXD210AC
Description:Low cost, 10.0g, dual axis accelerometer with analog outputs.
Manufacturer:
Package:TO-100 Metal Can
Pins:10
Oper. temp.:-40 to 125
Datasheet:PDF (238K).
Click here to download *)

The MXD210 is a very low cost dual-axis acceleration sensor on a monolithic IC. With no moving parts, the device is extremely reliable and is manufactured on a submicron CMOS process enabling small geometries and small die size, resulting in low overall cost and high functionality. The MXD210 is primarily designed for applications requiring high performance and where overall system cost is a driving factor in component selection. The MXD210 measures acceleration with a full-scale range of up to 10g and produces a PWM digital signal output. Sensor is shipped with a duty cycle period of 10 milliSeconds (100 Hz). Special order sensors are available with a duty cycle period of 2.5 milli-Seconds (400 Hz).Typical noise floor is .002 % Duty Cycle/Hz, allowing signals below 1.0 milli-g to be resolved. Frequency response extends to 40 Hz. The frequency response can be extended to 160 Hz with the implementation of a simple external circuit. The MXD210 is a dc accelerometer with the capability to measure both ac acceleration, (typical of vibration) or dc accelerations, (such as inertial force or constant, gravity-induced accelerations). The MXD210 offers digital output signals which duty cycles (ratio of pulse width to period) are proportional to the acceleration in each of the axes of sensitivity. The outputs can be measured directly with a microprocessor counter, eliminating the need for A/D converter or glue logic. The output duty cycle is programmable over a wide range of sensitivity. MXD210 offers a calibrated temperature sensor output with a positive temperature coefficient of 5.0 mV/C. This device can be temperature compensated easily. The change in sensitivity over the temperature range 40C to 125C is predictable and follows the physical gas laws. The following equation can be used to predict the sensitivity at any given temperature: SIN X (TIN)2.67 = SFIN X (TFIN)2.67 (Temperature in K) See Application Note (AN-00MX-001).

Click here to download MXD210AC Datasheet
Click here to download MXD210AC Datasheet
*)
*)Datasheets downloading from ChipDocs is only for our members (paid service). REGISTER NOW for your membership.
Free Electronics Engineering Subscription
Win Win Circuit - PCB,PCBA,Touch Screen,LED Lighting
Win Win Circuit LTD. PCB, PCBA, LCD Module
www.wwteq.com
COPYRIGHT 1997-2024 ChipDocs  ALL RIGHT RESERVED