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MMC5983MA
3-AXIS MAGNETIC SENSOR
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規格
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | Automotive, AEC-Q100 |
| ProductStatus | Active |
| Technology | Magnetoresistive |
| Axis | X, Y, Z |
| OutputType | I²C, SPI |
| SensingRange | ±0.8mT |
| Voltage-Supply | 2.8V ~ 3.5V |
| Current-Supply(Max) | 450µA |
| Resolution | 18 b |
| Bandwidth | 1kHz |
| OperatingTemperature | -40°C ~ 105°C |
| SupplierDevicePackage | 16-LGA (3x3) |
| MountingType | Surface Mount |
概述
Description
MMC5983MA is typically a course code that might be found in a university's curriculum, often in a media, journalism, or communication program. While the specific content of the course can vary by institution, courses with similar codes often cover advanced topics in mass communication.
An "Introduction to MMC5983MA" would likely involve familiarizing students with key themes and concepts in mass communication, potentially focusing on media theory, digital communication technologies, and media research methods. The course might explore how media influences public perception and behavior, the role of communication in society, and the impact of digital media on traditional media landscapes.
Students may engage in critical analysis of media content, discuss ethical issues in media, and learn to apply theoretical frameworks to real-world communication challenges. The course could also involve hands-on projects or research assignments to provide practical experience.
For precise details, it would be best to consult the specific institution offering the course or its syllabus, as the exact curriculum and focus can differ widely depending on the academic context.
An "Introduction to MMC5983MA" would likely involve familiarizing students with key themes and concepts in mass communication, potentially focusing on media theory, digital communication technologies, and media research methods. The course might explore how media influences public perception and behavior, the role of communication in society, and the impact of digital media on traditional media landscapes.
Students may engage in critical analysis of media content, discuss ethical issues in media, and learn to apply theoretical frameworks to real-world communication challenges. The course could also involve hands-on projects or research assignments to provide practical experience.
For precise details, it would be best to consult the specific institution offering the course or its syllabus, as the exact curriculum and focus can differ widely depending on the academic context.
Features
MMC5983MA is a high-precision, low-power MEMS (Micro-Electro-Mechanical Systems) magnetometer developed by MEMSIC. It is designed to measure magnetic fields accurately and is commonly used in applications such as electronic compasses, GPS navigation systems, and tilt-compensation systems.
Key features of the MMC5983MA include:
1. High Resolution and Accuracy: It offers a high-resolution magnetic field measurement capability with low noise, ensuring precise readings.
2. Low Power Consumption: Designed for battery-powered devices, it operates with minimal power usage, extending device battery life.
3. Compact Size: The small form factor makes it suitable for integration into compact electronic devices.
4. Wide Measurement Range: It can measure magnetic fields across a wide range, making it versatile for various applications.
5. Temperature Compensation: The device includes temperature compensation to maintain accuracy across a range of environmental conditions.
6. I2C Interface: It supports I2C communication protocol, simplifying integration with microcontrollers and other digital systems.
7. High Sensitivity: Capable of detecting minute changes in magnetic fields, enhancing its utility in precision-oriented applications.
These features make the MMC5983MA a reliable choice for developers looking to incorporate magnetometry into their projects.
Key features of the MMC5983MA include:
1. High Resolution and Accuracy: It offers a high-resolution magnetic field measurement capability with low noise, ensuring precise readings.
2. Low Power Consumption: Designed for battery-powered devices, it operates with minimal power usage, extending device battery life.
3. Compact Size: The small form factor makes it suitable for integration into compact electronic devices.
4. Wide Measurement Range: It can measure magnetic fields across a wide range, making it versatile for various applications.
5. Temperature Compensation: The device includes temperature compensation to maintain accuracy across a range of environmental conditions.
6. I2C Interface: It supports I2C communication protocol, simplifying integration with microcontrollers and other digital systems.
7. High Sensitivity: Capable of detecting minute changes in magnetic fields, enhancing its utility in precision-oriented applications.
These features make the MMC5983MA a reliable choice for developers looking to incorporate magnetometry into their projects.
Package
The MMC5983MA is packaged in a compact, 3-axis magnetometer format, typically housed in a 1.6mm x 1.6mm x 0.6mm LGA (Land Grid Array) package. This small size makes it suitable for space-constrained applications like smartphones, wearables, and other portable devices.
Pinout
The MMC5983MA is a high-precision, low-power, three-axis magnetic sensor. It typically comes in a 10-pin LGA (Land Grid Array) package. The pin functions are as follows:
1. VDD: Power supply pin.
2. GND: Ground pin.
3. SDA: Serial Data line or Data input/output line for I²C interface.
4. SCL: Serial Clock line for I²C interface.
5. CS: Chip Select for SPI interface.
6. SDO: Serial Data Out for SPI interface.
7. SCLK: Serial Clock for SPI interface.
8. TRIG: External trigger input.
9. DRDY: Data Ready output.
10. INT: Interrupt output.
The MMC5983MA can operate using either an I²C or SPI communication interface, which provides flexibility for integration into various applications. The sensor is used in applications that require high-precision magnetic field measurements, such as electronic compasses, magnetometry, and other navigation systems.
1. VDD: Power supply pin.
2. GND: Ground pin.
3. SDA: Serial Data line or Data input/output line for I²C interface.
4. SCL: Serial Clock line for I²C interface.
5. CS: Chip Select for SPI interface.
6. SDO: Serial Data Out for SPI interface.
7. SCLK: Serial Clock for SPI interface.
8. TRIG: External trigger input.
9. DRDY: Data Ready output.
10. INT: Interrupt output.
The MMC5983MA can operate using either an I²C or SPI communication interface, which provides flexibility for integration into various applications. The sensor is used in applications that require high-precision magnetic field measurements, such as electronic compasses, magnetometry, and other navigation systems.
Manufacturer
The MMC5983MA is manufactured by MEMSIC, Inc. MEMSIC is a company that specializes in the design and production of advanced MEMS (Micro-Electro-Mechanical Systems) sensor solutions. Their product portfolio includes accelerometers, magnetic sensors, and other sensor devices used in various applications such as consumer electronics, automotive, industrial, and healthcare. MEMSIC is known for integrating MEMS technology with mixed-signal processing and for developing high-performance sensor solutions that offer precision and reliability.
Application
The MMC5983MA is a high-precision, magnetometer sensor used in various applications. It is commonly employed in electronic compasses for navigation systems, consumer electronics like smartphones and tablets for orientation detection, and in automotive applications for enhanced navigation accuracy. Additionally, it finds use in industrial and robotics applications for precise magnetic field measurements and in wearable devices for augmented reality experiences. Its high resolution and low noise make it suitable for applications requiring precise magnetic field detection and measurement.
Equivalent
The MMC5983MA is a high-precision, low-noise magnetometer. Equivalent products include the HMC5883L and the LSM303 series (like LSM303DLHC) from STMicroelectronics, and the QMC5883L from QST Corporation. These alternatives offer similar 3-axis magnetic field sensing capabilities, though specifications such as size, power consumption, and performance may vary. Always check the datasheet for compatibility with your specific application.
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