H3LIS100DLTR Overview
The H3LIS100DLTR is a high-performance, low-power three-axis linear accelerometer designed for precise motion detection and orientation sensing in industrial and consumer electronics. Featuring a wide dynamic range of ??100 g, this sensor enables accurate measurement in harsh environments where shock and vibration are present. Its digital output simplifies integration into embedded systems, while the compact package supports space-constrained designs. Ideal for applications requiring robust acceleration data, such as impact detection and tilt measurement, the device offers reliable performance with low noise and stable offset characteristics. Available from Fabricant de circuits intégrés, it supports engineers and sourcing specialists in deploying advanced motion sensing solutions.
H3LIS100DLTR Technical Specifications
Paramètres | Spécifications |
---|---|
Plage de mesure | ??100 g |
Number of Axes | 3 (X, Y, Z) |
Type de sortie | Digital (SPI Interface) |
Tension d'alimentation | 2.4 V to 3.6 V |
Plage de température de fonctionnement | De -40 ??C à +85 ??C |
Densité du bruit | 0.06 mg/??Hz (typical) |
Shock Survivability | Up to 10,000 g |
Type d'emballage | 16-lead LGA |
H3LIS100DLTR Key Features
- High dynamic range: ??100 g measurement capability enables accurate shock and vibration sensing in demanding industrial environments.
- Three-axis sensing: Provides complete spatial acceleration data for comprehensive motion analysis and orientation detection.
- Low noise performance: Ensures precise measurement with minimal signal distortion, improving reliability in sensitive applications.
- Robust shock resistance: Survives up to 10,000 g shock pulses, making it ideal for impact detection and harsh usage scenarios.
- Digital SPI output: Simplifies system integration with microcontrollers and reduces design complexity.
- Wide temperature range: Operates reliably across -40 ??C to +85 ??C, suitable for industrial and automotive environments.
- Compact LGA package: Facilitates space-saving PCB layouts while maintaining mechanical durability.
Applications typiques
- Industrial machinery monitoring: Measures shocks and vibrations to protect equipment and optimize maintenance schedules by detecting abnormal conditions early.
- Impact detection systems: Provides reliable acceleration data to trigger safety mechanisms in automotive or consumer devices.
- Robotics and automation: Enables precise motion tracking and orientation feedback for improved control and navigation.
- Consumer electronics: Used in devices such as gaming controllers and wearable sensors requiring accurate three-axis acceleration measurement.
H3LIS100DLTR Advantages vs Typical Alternatives
This accelerometer offers superior shock tolerance and a wide ??100 g measurement range compared to many competitors, delivering enhanced accuracy in high-impact environments. Its low noise density and stable offset improve signal quality, while the digital SPI interface streamlines integration into complex systems. The broad temperature range and compact LGA package provide durability and flexibility, making it a reliable choice over traditional analog or lower range sensors.
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H3LIS100DLTR Brand Info
The H3LIS100DLTR is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in MEMS sensors and offers a broad portfolio of accelerometers known for precision, robustness, and energy efficiency. This product exemplifies the company’s commitment to delivering industrial-grade sensors designed to meet stringent performance and reliability standards for demanding applications.
FAQ
What is the measurement range of this accelerometer?
The sensor supports a measurement range of ??100 g, allowing it to accurately detect both subtle motions and extreme shocks common in industrial and automotive environments.
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Comment l'appareil s'interface-t-il avec les microcontrôleurs ?
It uses a digital SPI interface, which simplifies the communication protocol and enables fast, reliable data transfer to most microcontrollers and embedded processors.