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| Image | Part Number | Manufacturer | Description | Series | Operating Temperature | Features | Packaging | Type | Voltage - Supply | Output Type | Package / Case | Current - Supply |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| MMA5148NDIKGCWR2 | NXP Semiconductors / Freescale | ACCELEROMETER PSI5 16QFN | - | - | - | - | - | - | - | - | - | |
| LIS3DHHTR | STMicroelectronics | ACCELEROMETER 3-AXIS 16LGA | MEMS | -40°C ~ 85°C (TA) | Temperature Sensor | Cut Tape (CT) | Digital | 1.71 V ~ 3.6 V | SPI | 16-LGA | - | |
| KXTH9-2083-PR | LAPIS Semiconductor | ACCELEROMETER 2.5G ANALOG 10LGA | - | -40°C ~ 85°C (TA) | Adjustable Bandwidth, Selectable Scale | Tape & Reel (TR) | Analog | 1.8 V ~ 3.6 V | Analog Voltage | 10-VFLGA | - | |
| PMMA1270KEGR2 | NXP Semiconductors / Freescale | IC ACCEL COLOSSUS 2.5G | - | - | - | - | - | - | - | - | - | |
| 832M1-0050 | Agastat Relays / TE Connectivity | ACCELEROMETER 50G IEPE SMD | 832M1 | -40°C ~ 125°C (TA) | - | Bulk | Analog | 3.3 V ~ 5.5 V | IEPE | 5-SMD, No Lead | - | |
| LIS2DH12TR | STMicroelectronics | ACCEL 2-16G I2C/SPI 12LGA | - | -40°C ~ 85°C (TA) | Adjustable Bandwidth, Selectable Scale, Sleep Mode, Temperature Sensor | Cut Tape (CT) | Digital | 1.71 V ~ 3.6 V | I²C, SPI | 12-VFLGA | - | |
| 3052-005-P | Agastat Relays / TE Connectivity | ACCELEROMETER 5G ANALOG | - | -40°C ~ 125°C (TA) | - | Bulk | Analog | 5V | Analog Voltage | 5-SIP Module | - | |
| ADXL327BCPZ | ADI (Analog Devices, Inc.) | ACCELEROMETER 2G ANALOG 16LFCSP | - | -40°C ~ 85°C (TA) | Adjustable Bandwidth | Tube | Analog | 1.8 V ~ 3.6 V | Analog Voltage | 16-LQFN Exposed Pad, CSP | - | |
| MMA6855AKGCWR2 | NXP Semiconductors / Freescale | ACCELEROMETER 10BIT SPI 16QFN | Automotive, AEC-Q100 | -40°C ~ 105°C | - | Tape & Reel (TR) | Digital | 3.135 V ~ 5.25 V | SPI | 16-QFN Exposed Pad | - | |
| SX5101P4KT1 | NXP Semiconductors / Freescale | ACCELEROMETER | - | - | - | - | - | - | - | - | - |
Accelerometers are motion sensors designed to measure and detect changes in acceleration, including static forces such as gravity and dynamic forces such as vibration and shock. These sensors utilize various technologies such as piezoelectric, capacitive, or MEMS (Micro-Electro-Mechanical Systems) principles to convert mechanical motion into electrical signals. Accelerometers find applications in automotive systems, aerospace, consumer electronics, and industrial equipment for tasks such as tilt sensing, vibration monitoring, and impact detection. They offer advantages such as high sensitivity, low power consumption, and compact size, making them essential components in applications requiring motion sensing, orientation detection, and inertial navigation.