STMicroelectronics 3-Axis Surface Accelerometer 1.71 V 3.6 V, I2C/SPI, LGA, 12-Pin

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Subtotal (1 pack of 10 units)*

PHP635.04

(exc. VAT)

PHP711.24

(inc. VAT)

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  • 170 unit(s) ready to ship from another location
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Per Pack*
10 - 40PHP63.504PHP635.04
50 - 490PHP61.60PHP616.00
500 - 990PHP59.751PHP597.51
1000 - 2490PHP57.958PHP579.58
2500 +PHP56.218PHP562.18

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Packaging Options:
RS Stock No.:
196-1958
Mfr. Part No.:
LIS2HH12TR
Manufacturer:
STMicroelectronics
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Brand

STMicroelectronics

Product Type

Accelerometer

Sensor Type

Accelerometer

Number of Axis

3

Technology

Digital

Mount Type

Surface

Interface Type

I2C/SPI

Maximum Frequency Response

400kHz

Minimum Frequency Response

0kHz

Minimum Supply Voltage

1.71V

Package Type

LGA

Maximum Supply Voltage

3.6V

Sensitivity

0.24mg/digit

Minimum Operating Temperature

-40°C

Pin Count

12

Maximum Operating Temperature

85°C

Width

2 mm

Series

LIS2HH12

Height

1mm

Standards/Approvals

No

Length

2mm

Supply Current

180μA

Automotive Standard

No

Distrelec Product Id

304-38-748

COO (Country of Origin):
PH
The LIS2HH12 is an ultra-low-power high-performance three-axis linear accelerometer belonging to the “pico” family. The LIS2HH12 has full scales of ±2g/±4g/±8g and is capable of measuring accelerations with output data rates from 10 Hz to 800 Hz. The self-test capability allows the user to check the functioning of the sensor in the final application. The LIS2HH12 has an integrated first-in, first-out (FIFO) buffer allowing the user to store data in order to limit intervention by the host processor. The LIS2HH12 is available in a small thin plastic land grid array package (LGA) and it is guaranteed to operate over an extended temperature range from -40 °C to +85 °C

Wide supply voltage, 1.71 V to 3.6 V

Independent IOs supply (1.8 V) and supply voltage compatible

Ultra-low power consumption

±2g/±4g/±8g full-scale

I2C/SPI digital output interface

16-bit data output

Embedded temperature sensor

Embedded self-test

Embedded FIFO

10000 g high shock survivability

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