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LIS331DLH
ACCELEROMETER 2-8G I2C/SPI 16LGA
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規格
| Package | Tray |
| ProductStatus | Obsolete |
| 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
LIS331DLH likely refers to a course or module code in a specific academic institution's curriculum, possibly related to library and information science (LIS). While the exact content of the course can vary depending on the institution, an introduction to a course like LIS331DLH would typically cover foundational aspects of information science within libraries. This can include the study of information organization, information retrieval systems, cataloging and classification, digital libraries, and the role of technology in managing and disseminating information.
The course might also explore the historical evolution of libraries and information centers, the impact of digital technologies on information management, and current trends in the field. Students could be introduced to various tools and software used in library science, building skills in data management and librarian services. Additionally, there might be a focus on ethics and privacy issues related to the management of information.
For precise details, one would need to consult the syllabus or academic advisor for the specific course, as offerings can differ significantly between institutions.
The course might also explore the historical evolution of libraries and information centers, the impact of digital technologies on information management, and current trends in the field. Students could be introduced to various tools and software used in library science, building skills in data management and librarian services. Additionally, there might be a focus on ethics and privacy issues related to the management of information.
For precise details, one would need to consult the syllabus or academic advisor for the specific course, as offerings can differ significantly between institutions.
Features
The LIS331DLH is a MEMS digital output motion sensor designed for low-power applications. Here are its key features:
1. 3-Axis Digital Accelerometer: Measures acceleration across X, Y, and Z axes, providing motion detection and tilt sensing.
2. High Resolution: Offers 12-bit resolution, ensuring precise motion detection.
3. Selectable Full Scales: Offers multiple full-scale ranges (±2g/±4g/±8g), enabling flexibility for different applications.
4. Low Power Consumption: Optimized for battery-operated devices, ensuring efficient energy use.
5. Data Rate: Configurable output data rates, making it adaptable to various application demands.
6. Embedded Self-Test: Includes a self-test feature for verifying sensor functionality.
7. I2C/SPI Interface: Supports both I2C and SPI interfaces for easy integration with microcontrollers.
8. Embedded Temperature Sensor: Provides additional environmental data with an integrated temperature sensor.
9. Sleep to Wake Functionality: Supports power-saving modes, including sleep-to-wake and return-to-sleep.
10. Small Footprint: Compact package suitable for space-constrained applications.
11. Wide Temperature Range: Operates effectively in a broad temperature range suitable for consumer and industrial applications.
These features make the LIS331DLH a versatile choice for applications like mobile devices, gaming, and fitness equipment.
1. 3-Axis Digital Accelerometer: Measures acceleration across X, Y, and Z axes, providing motion detection and tilt sensing.
2. High Resolution: Offers 12-bit resolution, ensuring precise motion detection.
3. Selectable Full Scales: Offers multiple full-scale ranges (±2g/±4g/±8g), enabling flexibility for different applications.
4. Low Power Consumption: Optimized for battery-operated devices, ensuring efficient energy use.
5. Data Rate: Configurable output data rates, making it adaptable to various application demands.
6. Embedded Self-Test: Includes a self-test feature for verifying sensor functionality.
7. I2C/SPI Interface: Supports both I2C and SPI interfaces for easy integration with microcontrollers.
8. Embedded Temperature Sensor: Provides additional environmental data with an integrated temperature sensor.
9. Sleep to Wake Functionality: Supports power-saving modes, including sleep-to-wake and return-to-sleep.
10. Small Footprint: Compact package suitable for space-constrained applications.
11. Wide Temperature Range: Operates effectively in a broad temperature range suitable for consumer and industrial applications.
These features make the LIS331DLH a versatile choice for applications like mobile devices, gaming, and fitness equipment.
Package
The LIS331DLH is packaged in a compact LGA (Land Grid Array) form factor. Specifically, it uses a 3x5x1 mm, 16-pin LGA package, which is designed for use in compact electronic devices, offering high performance in a small, lightweight form.
Pinout
The LIS331DLH is a low-power, high-performance three-axis linear accelerometer. It comes in a compact LGA (Land Grid Array) package. The device has 16 pins, and its functions include:
1. VDD: Power supply.
2. VDD_IO: Power supply for I/O pins.
3. GND: Ground.
4. SDA/SDI/SDO: Serial data input/output (I²C) or data input (SPI).
5. SCL/SPC: Serial clock line for both I²C and SPI.
6. CS: Chip select for SPI communication.
7. INT1: Programmable interrupt 1.
8. INT2: Programmable interrupt 2.
9-16. NC: Not connected.
The LIS331DLH is used for sensing acceleration along three axes (X, Y, Z) and is commonly applied in mobile devices, gaming, and industrial applications for motion sensing and control. It supports both I²C and SPI communication interfaces, enabling flexible integration with different systems.
1. VDD: Power supply.
2. VDD_IO: Power supply for I/O pins.
3. GND: Ground.
4. SDA/SDI/SDO: Serial data input/output (I²C) or data input (SPI).
5. SCL/SPC: Serial clock line for both I²C and SPI.
6. CS: Chip select for SPI communication.
7. INT1: Programmable interrupt 1.
8. INT2: Programmable interrupt 2.
9-16. NC: Not connected.
The LIS331DLH is used for sensing acceleration along three axes (X, Y, Z) and is commonly applied in mobile devices, gaming, and industrial applications for motion sensing and control. It supports both I²C and SPI communication interfaces, enabling flexible integration with different systems.
Manufacturer
The LIS331DLH is manufactured by STMicroelectronics. STMicroelectronics is a global semiconductor company that designs, develops, manufactures, and markets a wide range of semiconductor products. These products serve various applications in multiple industries including automotive, industrial, personal electronics, and communication equipment. The company is known for its innovations in areas such as microcontrollers, sensors, power management, and digital and analog ICs.
Application
The LIS331DLH is a low-power, three-axis linear accelerometer primarily used in applications requiring motion sensing and orientation detection. Its application areas include consumer electronics like smartphones and tablets for screen rotation and gaming, wearable devices for fitness tracking, and automotive systems for car alarms and navigation. Additionally, it finds uses in industrial monitoring systems, smart appliances, robotics, and medical devices for motion detection and data logging. Its compact size and low power consumption make it ideal for battery-operated devices.
Equivalent
The LIS331DLH is a 3-axis MEMS accelerometer from STMicroelectronics. Equivalent products include the ADXL345 from Analog Devices, the MMA8451Q from NXP Semiconductors, and the KXTJ3-1057 from Kionix. These alternatives offer similar functionalities, such as digital output, low power consumption, and various programmable features, making them suitable substitutes in applications requiring 3-axis acceleration sensing. Always verify specific application requirements and specifications for compatibility.
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