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LIS35DETR
+BOMACCEL 2.3-9.2G I2C/SPI 14LGA
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ManufacturerSTMicroelectronics
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Mfr. Part #LIS35DETR
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In Stock2148
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Specifications
| Attribute | Value |
| PartStatus | Obsolete |
| Type | Digital |
| Axis | X, Y, Z |
| AccelerationRange | ±2.3g, 9.2g |
| Sensitivity(LSB/g) | 55 (±2.3g) ~ 13 (±9.2g) |
| Bandwidth | 50Hz ~ 200Hz |
| OutputType | I2C, SPI |
| Voltage-Supply | 2.16V ~ 3.6V |
| Features | Selectable Scale |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 14-VFLGA |
| SupplierDevicePackage | 14-LGA (3x5) |
| BaseProductNumber | LIS35 |
Overview
Description
Key features include low power consumption, high sensitivity, and the ability to operate in various modes, including normal and low-power modes. The LIS35DETR also incorporates advanced functionalities such as embedded FIFO (First In, First Out) memory for data storage, enabling efficient data handling in applications like mobile devices, wearables, and IoT systems.
With its robust design and versatility, the LIS35DETR is ideal for applications requiring motion detection, orientation sensing, and gesture recognition, contributing to enhanced user experiences in consumer electronics and industrial devices.
Equivalent
1. ADXL345 - Analog Devices
2. MPU-6050 - InvenSense
3. BMA280 - Bosch Sensortec
4. LIS2DW12 - STMicroelectronics
5. KX224 - Kionix
These alternatives offer similar features, including 3-axis acceleration sensing, but may have variations in sensitivity, power consumption, and communication protocols. Always check specific datasheets for detailed comparisons.
Features
1. 3-Axis Measurement: It measures acceleration along the X, Y, and Z axes, enabling comprehensive motion detection.
2. High Sensitivity: Offers options for different sensitivity ranges, providing flexibility for diverse applications.
3. Low Power Consumption: Designed for battery-operated devices, it features low-power modes to extend operational life.
4. Digital Output: Communicates via I2C or SPI interfaces, ensuring easy integration with microcontrollers and other digital systems.
5. Wide Operating Range: Supports a broad temperature range, making it suitable for various environments.
6. Built-in FIFO Buffer: Allows for efficient data storage and retrieval, improving performance in high-frequency applications.
7. Configurable Settings: Users can adjust settings such as data output rate and full-scale range to tailor performance to specific needs.
These features make the LIS35DETR versatile for many sensing and motion-related applications.
Pinout
1. VDD: Supply voltage.
2. GND: Ground.
3. SDA: I2C data line (used for communication).
4. SCL: I2C clock line (used for communication).
5. CS: Chip select for SPI mode.
6. SDO: SPI data output.
7. SDI: SPI data input.
8. CLK: SPI clock.
9. INT1: Interrupt 1 output.
10. INT2: Interrupt 2 output.
11. ADC: Analog output for acceleration.
12. BOOT: Boot configuration pin (for factory settings).
The LIS35DETR offers digital output through I2C or SPI interfaces and is designed for various applications requiring motion detection and tilt sensing.
Manufacturer
The LIS35DETR is a 3-axis accelerometer that is part of ST's MEMS (Micro-Electro-Mechanical Systems) sensor portfolio. This type of sensor is commonly used in smartphones, wearable devices, and various IoT applications, providing motion sensing capabilities.
STMicroelectronics is recognized for its commitment to innovation and sustainability, focusing on developing technologies that support the digital transformation and the Internet of Things (IoT). The company emphasizes quality, reliability, and performance in its products, making it a key player in the semiconductor industry.
Application
1. Consumer Electronics: Enhancing user interfaces in smartphones, tablets, and wearables by enabling motion detection and orientation sensing.
2. Automotive: Assisting in vehicle stability control, crash detection, and navigation systems.
3. Industrial Automation: Monitoring vibrations and movements in machinery for predictive maintenance.
4. Healthcare: Enabling motion tracking in rehabilitation devices and fitness monitoring.
5. Robotics: Providing orientation and acceleration data for autonomous navigation and control.
Its compact design and low power consumption make it suitable for diverse applications.