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QMC5883P
+БОМ-
ПроизводительQST
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Мфр. Часть #QMC5883P
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Лист данных QMC5883P DataSheet
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В наличии9775
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Manufacturer | QST |
| Package | LGA-16(3x3) |
Обзор
Description
Key features:
- Low power consumption (suitable for battery-powered devices).
- Built-in temperature compensation for improved accuracy.
- Programmable output data rate (10Hz–200Hz).
- Tilt-compensation support when paired with an accelerometer.
Often used as a cost-effective alternative to the HMC5883L, it integrates easily with microcontrollers (e.g., Arduino, ESP8266). Libraries and example code are widely available for quick prototyping.
Applications:
- Electronic compasses
- Robotics (heading detection)
- Drones and UAVs
- Smartphones/wearables
Note: Some variants (e.g., QMC5883L) may have minor firmware differences. Check datasheets for specifics.
Equivalent
1. HMC5883L (older, discontinued)
2. QMC5883L (earlier version)
3. AK8963 (used in MPU-9250)
4. MLX90393 (higher precision)
5. BMM150 (Bosch, used in BNO055)
These alternatives offer comparable functionality for magnetic sensing in applications like compasses and navigation. Check pin compatibility and I2C/SPI interfaces when substituting.
Features
- Triaxial Magnetic Sensing: Measures X, Y, and Z-axis magnetic fields.
- High Resolution: 1° to 2° compass heading accuracy.
- Wide Measurement Range: ±8 Gauss (programmable).
- I²C Interface: Simple digital communication.
- Low Power Consumption: Suitable for battery-powered devices.
- Built-in Temperature Compensation: Improves accuracy.
- Programmable Data Rate: Up to 200Hz output rate.
- Self-Test Function: Ensures sensor reliability.
- Small Form Factor: Compact for embedded applications.
Commonly used in compasses, drones, and navigation systems.
Manufacturer
Application
1. Navigation Systems – Compasses in drones, robots, and smartphones.
2. Consumer Electronics – Smartwatches, fitness trackers for orientation tracking.
3. Automotive – Electronic compasses in vehicles for navigation.
4. IoT & Wearables – Motion sensing and position detection.
5. Industrial Automation – Robotics and machinery alignment.
6. Augmented/Virtual Reality (AR/VR) – Headset orientation tracking.
It offers high accuracy, low power consumption, and I²C/SPI interfaces, making it versatile for compact, battery-powered devices.