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AIS2DW12
+BOMBoard Mount Motion & Position Sensors
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メーカーRFE/フューゼテック
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メーカー品番 #AIS2DW12
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データシート AIS2DW12 DataSheet
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在庫状況20718
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
概要
Description
1. Purpose: Describe what AIS2DW12 is designed to achieve. For example, is it an advanced information system, a specific data processing tool, or a version of a software platform?
2. Features: Outline key features or functionalities. This might include any innovative aspects that differentiate it from other systems or versions.
3. Applications: Explain where and how AIS2DW12 can be applied. For instance, is it used in data analysis, enterprise resource planning, or another specific industry?
4. Audience: Identify the intended users or beneficiaries. Is it aimed at data scientists, business managers, or another professional group?
5. Benefits: Highlight the advantages of using AIS2DW12, such as improved efficiency, enhanced data accuracy, or cost savings.
For more detailed information, additional context about AIS2DW12 is necessary.
Equivalent
1. Bosch Sensortec BMA456: A low-power 3-axis accelerometer with similar features.
2. Analog Devices ADXL343: Offers comparable performance and functionality.
3. Murata SCA3300: Another 3-axis accelerometer with similar specifications.
4. TDK InvenSense MPU6050: Combines a 3-axis accelerometer with a gyroscope, offering similar capabilities.
These alternatives provide similar functionalities in terms of performance, power consumption, and applications.
Features
1. 3-Axis Detection: Measures acceleration along three axes, providing comprehensive motion sensing.
2. High Resolution: Offers high precision with a 16-bit digital output.
3. Wide Measurement Range: Configurable full-scale ranges of ±2g, ±4g, ±8g, or ±16g to accommodate different sensitivity requirements.
4. Low Power Consumption: Efficient power usage makes it suitable for battery-powered applications.
5. Embedded Self-Test: Built-in self-test capability ensures device functionality and reliability.
6. Operating Temperature Range: Suitable for automotive environments, functioning effectively across a broad temperature range.
7. SPI & I²C Interfaces: Supports both SPI and I²C communication protocols for versatile integration options.
8. Embedded FIFO: Features a FIFO buffer for handling data efficiently and reducing the load on the host processor.
9. Interrupt Signals: Programmable interrupts for various events like free-fall, motion detection, and more.
10. AEC-Q100 Qualified: Meets automotive quality standards for reliability and performance.
These features make the AIS2DW12 an ideal choice for automotive and industrial applications requiring reliable motion sensing.
Pinout
1. VDD: Power supply voltage.
2. VDD_IO: Power supply for I/O pins.
3. GND: Ground.
4. CS: Chip select for SPI communication.
5. SCL/SPC: Serial clock for I2C (SCL) or SPI (SPC) communication.
6. SDA/SDI/SDO: Data line for I2C (SDA) and data input/output for SPI (SDI/SDO).
7. SDO/SA0: Output for SPI or address selection for I2C.
8. INT1: Programmable interrupt 1.
9. INT2: Programmable interrupt 2.
10. RESERVED: Reserved for future use or internal functions.
11. RESERVED: Reserved for future use or internal functions.
12. NC: No connect (not internally connected).
The AIS2DW12 is designed for applications that need low-power consumption and high performance, such as motion detection and tilt sensing in portable devices.
Manufacturer
Application
1. Consumer Electronics: Used in smartphones, tablets, and wearable devices for motion detection and user interface control.
2. Industrial Monitoring: Employed in machinery for vibration monitoring and predictive maintenance.
3. Automotive Systems: Utilized in airbag systems, electronic stability control, and navigation systems for enhanced safety and performance.
4. Healthcare: Applied in medical devices for patient monitoring and fall detection.
5. Gaming and Virtual Reality: Enhances user experience by tracking motion and orientation in gaming consoles and VR headsets.
These applications leverage the sensor's high performance, low power consumption, and precision.