Model No: LIS3DHTR
STMicroelectronics LIS3DHTR
Manufacturer: STMicroelectronics
SEMICON NO: LIS3DHTR
Package: 16-LGA
Stock: In stock
Description: 3-Axis Surface Mount Sensor
SEMICON NO: LIS3DHTR
Package: 16-LGA
Stock: In stock
Description: 3-Axis Surface Mount Sensor
Quantity :
| Manufacturer | STMicroelectronics |
| Part Number | LIS3DHTR |
| Number of Axis | 3 |
| Technology | Analogue |
| Interface Type | I2C, SPI |
| Operating Supply | 1.71 V ~ 3.6V |
| Output Power | 4 dBm |
| Supply Voltage | 1.7 V ~ 3.6 V |
| Operating Temperature | -40 °C ~ +85 °C |
| Mounting Type | Surface Mount |
| Package | 16-LGA |
TheLIS3DHTR is an ultra-low-power, high-performance three-axis linear accelerometer designed by STMicroelectronics. It belongs to the"nano"series and features a digital I2C/SPI serial interface for standard output. This accelerometer is designed to convert dynamic acceleration into voltage signals for measurement, making it suitable for applications requiring precise motion sensing. The LIS3DHTR operates in various modes, including high-resolution, normal, and low-power modes, allowing for advanced power-saving capabilities. It is packaged in a compact 16-pin LGA (Land Grid Array) form factor, ensuring robust performance across an extended temperature range of -40°C to +85°C.
Features of Ultra-low-power motion sensor LIS3DHTR
The LIS3DHTR offers a wide range of features that make it a versatile solution for motion sensing applications. It supports a dynamic user-selectable full-scale range of ±2g, ±4g, ±8g, and ±16g, with output data rates ranging from 1 Hz to 5.3 kHz. The device includes an embedded 32-level FIFO (First-In-First-Out) buffer, which reduces the need for continuous host processor intervention. Other notable features include a built-in temperature sensor, programmable interrupts for free-fall and motion detection, 6D/4D orientation detection, and high shock survivability up to 10,000g. Additionally, the LIS3DHTR operates on a wide supply voltage range of 1.71V to 3.6V and features ultra-low power consumption, with current draw as low as 2 μA in low-power mode.
Applications of Three-axis accelerometer LIS3DHTR
TheLIS3DHTR is widely used in various industries due to its high performance and low power consumption. It is commonly found in consumer electronics, such as smartphones, tablets, and gaming controllers, where it enables motion-activated functions, screen orientation, and enhanced interactive experiences. In the industrial sector, the LIS3DHTR is used for vibration monitoring and compensation in machinery. It is also popular in wearable devices like pedometers and activity monitors, as well as in healthcare applications for motion tracking in medical devices. Other applications include impact recognition, free-fall detection, and telematics in automotive systems.
Features of Ultra-low-power motion sensor LIS3DHTR
The LIS3DHTR offers a wide range of features that make it a versatile solution for motion sensing applications. It supports a dynamic user-selectable full-scale range of ±2g, ±4g, ±8g, and ±16g, with output data rates ranging from 1 Hz to 5.3 kHz. The device includes an embedded 32-level FIFO (First-In-First-Out) buffer, which reduces the need for continuous host processor intervention. Other notable features include a built-in temperature sensor, programmable interrupts for free-fall and motion detection, 6D/4D orientation detection, and high shock survivability up to 10,000g. Additionally, the LIS3DHTR operates on a wide supply voltage range of 1.71V to 3.6V and features ultra-low power consumption, with current draw as low as 2 μA in low-power mode.
Applications of Three-axis accelerometer LIS3DHTR
TheLIS3DHTR is widely used in various industries due to its high performance and low power consumption. It is commonly found in consumer electronics, such as smartphones, tablets, and gaming controllers, where it enables motion-activated functions, screen orientation, and enhanced interactive experiences. In the industrial sector, the LIS3DHTR is used for vibration monitoring and compensation in machinery. It is also popular in wearable devices like pedometers and activity monitors, as well as in healthcare applications for motion tracking in medical devices. Other applications include impact recognition, free-fall detection, and telematics in automotive systems.