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LIS331DLHTR
ACCELEROMETER 2-8G I2C/SPI 16LGA
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- 製造商。 部分 #LIS331DLHTR
- 包 LLGA 16
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規格
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Type | Digital |
| Axis | X, Y, Z |
| AccelerationRange | ±2g, 4g, 8g |
| Sensitivity(LSB/g) | 1000 (±2g) ~ 256 (±8g) |
| Bandwidth | 25Hz ~ 500Hz |
| OutputType | I²C, SPI |
| Voltage-Supply | 2.16V ~ 3.6V |
| Features | Adjustable Bandwidth, Selectable Scale, Sleep Mode |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 16-VFLGA |
概述
Description
LIS331DLHTR appears to be a specialized course code, potentially related to library and information science or a similar field, but it does not match any standard course known widely in public databases or educational catalogs up to October 2023. The title suggests it could be an advanced course focusing on digital library technologies, possibly dealing with high-throughput resources (as inferred from "DLHTR" standing for Digital Library High Throughput Resources). "Introduction to" implies that the course would cover the fundamentals of the subject matter, possibly including topics like digital archiving, metadata standards, information retrieval systems, and the use of technology to manage large-scale digital resources efficiently.
However, without specific institutional context or a detailed syllabus, this interpretation is speculative. For precise details, it would be best to consult the course catalog or academic advisor at the institution offering this course.
However, without specific institutional context or a detailed syllabus, this interpretation is speculative. For precise details, it would be best to consult the course catalog or academic advisor at the institution offering this course.
Features
The LIS331DLHTR is a high-performance, low-power 3-axis linear accelerometer designed for a wide range of applications. Here are its key features:
1. Measurement Range: Offers selectable full-scale ranges of ±2g, ±4g, and ±8g to accommodate various sensitivity and dynamic range requirements.
2. Low Power Consumption: Operates with minimal power, making it suitable for battery-powered devices.
3. High Performance: Delivers accurate and reliable motion sensing with 12-bit resolution.
4. Output Data Rate: Supports data rates from 0.5 Hz to 1 kHz, allowing flexibility in motion detection and response times.
5. Embedded Self-Test: Includes a self-test feature to verify the sensor's functionality during use.
6. Built-in Temperature Sensor: Offers additional environmental sensing capabilities.
7. Communication Interface: Integrates an I²C/SPI digital interface for easy communication with microcontrollers.
8. Operating Voltage: Functions at a low voltage range of 2.16V to 3.6V.
9. Embedded FIFO: Features a first-in-first-out (FIFO) buffer to manage data efficiently and reduce processor load.
10. Compact Package: Comes in a small LGA package, making it ideal for space-constrained applications.
These features make the LIS331DLHTR suitable for consumer electronics, industrial applications, and other fields requiring precise motion detection.
1. Measurement Range: Offers selectable full-scale ranges of ±2g, ±4g, and ±8g to accommodate various sensitivity and dynamic range requirements.
2. Low Power Consumption: Operates with minimal power, making it suitable for battery-powered devices.
3. High Performance: Delivers accurate and reliable motion sensing with 12-bit resolution.
4. Output Data Rate: Supports data rates from 0.5 Hz to 1 kHz, allowing flexibility in motion detection and response times.
5. Embedded Self-Test: Includes a self-test feature to verify the sensor's functionality during use.
6. Built-in Temperature Sensor: Offers additional environmental sensing capabilities.
7. Communication Interface: Integrates an I²C/SPI digital interface for easy communication with microcontrollers.
8. Operating Voltage: Functions at a low voltage range of 2.16V to 3.6V.
9. Embedded FIFO: Features a first-in-first-out (FIFO) buffer to manage data efficiently and reduce processor load.
10. Compact Package: Comes in a small LGA package, making it ideal for space-constrained applications.
These features make the LIS331DLHTR suitable for consumer electronics, industrial applications, and other fields requiring precise motion detection.
Package
The LIS331DLHTR is a MEMS digital output motion sensor packaged in a small, thin LGA (Land Grid Array) form. It typically measures around 3x3x1 mm, catering to portable and handheld devices requiring low-power, high-performance motion detection.
Pinout
The LIS331DLHTR is a 3-axis digital accelerometer with a pin count of 16. It is designed for low power, high-performance applications.
Here is a brief overview of its pin functions:
1. VDD: Power supply.
2. GND: Ground.
3. SDA/SDI/SDO: Data line for I²C or SPI interface.
4. SCL/SPC: Clock line for I²C or SPI interface.
5. CS: Chip select for SPI, can be connected to VDD for I²C mode.
6. INT1: Interrupt output 1, programmable.
7. INT2: Interrupt output 2, programmable.
8. SDA/SDI/SDO (Alternative): Secondary data line used in some configurations.
9. RES: Reserved; ensure proper connection as per the datasheet.
10. NC: No connection; leave floating or follow manufacturer’s instructions.
11. VDD_IO: I/O pins power supply.
12. Other Pins: Typically reserved or no-connect in default applications.
The LIS331DLHTR is suitable for various applications, including motion detection, tilt sensing, and gesture recognition, offering flexibility via programmable features and multiple communication interfaces. Always refer to the official datasheet for detailed specifications and application guidance.
Here is a brief overview of its pin functions:
1. VDD: Power supply.
2. GND: Ground.
3. SDA/SDI/SDO: Data line for I²C or SPI interface.
4. SCL/SPC: Clock line for I²C or SPI interface.
5. CS: Chip select for SPI, can be connected to VDD for I²C mode.
6. INT1: Interrupt output 1, programmable.
7. INT2: Interrupt output 2, programmable.
8. SDA/SDI/SDO (Alternative): Secondary data line used in some configurations.
9. RES: Reserved; ensure proper connection as per the datasheet.
10. NC: No connection; leave floating or follow manufacturer’s instructions.
11. VDD_IO: I/O pins power supply.
12. Other Pins: Typically reserved or no-connect in default applications.
The LIS331DLHTR is suitable for various applications, including motion detection, tilt sensing, and gesture recognition, offering flexibility via programmable features and multiple communication interfaces. Always refer to the official datasheet for detailed specifications and application guidance.
Manufacturer
The manufacturer of the LIS331DLHTR is STMicroelectronics. STMicroelectronics is a global semiconductor company that designs, develops, manufactures, and markets a wide range of semiconductor products and technologies. The company serves various industries, including automotive, industrial, personal electronics, and communications equipment. STMicroelectronics is known for its expertise in microcontrollers, sensors, power management, and analog devices, among other areas.
Application
The LIS331DLHTR is a 3-axis digital accelerometer used in various applications, such as consumer electronics, wearable devices, and healthcare monitoring. It's ideal for motion sensing, gesture recognition, and free-fall detection in smartphones, tablets, and fitness trackers. Additionally, it's used in industrial automation for equipment monitoring and in automotive systems for navigation and stability control. The sensor's low power consumption and high precision make it suitable for battery-operated devices.
Equivalent
The LIS331DLH is a 3-axis digital output accelerometer by STMicroelectronics. Equivalent products include:
1. ADXL345 by Analog Devices – A 3-axis accelerometer with digital output.
2. MMA8451Q by NXP Semiconductors – Another 3-axis accelerometer with digital interface.
3. KXR94 by Kionix – Offers similar functionality with digital output.
4. BMA250E by Bosch – A 3-axis low-g digital accelerometer.
These alternatives provide similar functionalities and interfaces for various motion sensing applications.
1. ADXL345 by Analog Devices – A 3-axis accelerometer with digital output.
2. MMA8451Q by NXP Semiconductors – Another 3-axis accelerometer with digital interface.
3. KXR94 by Kionix – Offers similar functionality with digital output.
4. BMA250E by Bosch – A 3-axis low-g digital accelerometer.
These alternatives provide similar functionalities and interfaces for various motion sensing applications.
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