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NF1200 MEMS North Finder 6-Axis Inertial Sensor, 0.5secL North Seeking, 0.05° Attitude, 200Hz RS422

NF1200 MEMS North Finder 6-Axis Inertial Sensor, 0.5secL North Seeking, 0.05° Attitude, 200Hz RS422

The NF1200 MEMS North Finder is a highly reliable and cost-effective six-axis MEMS inertial sensor, widely applicable in navigation, control, and measurement fields represented by inertial navigation and attitude stabilization. The NF1200 series north finders integrate high-performance MEMS gyroscopes and MEMS accelerometers within an independent structure. The gyroscopes and accelerometers selected for the system represent the leading level of MEMS technology inertial devices. All electronic components within the system are 100% domestically produced. The three-axis MEMS gyroscopes sense the angular motion of the carrier, while the three-axis MEMS accelerometers sense the linear acceleration of the carrier. The system internally compensates for zero position, scale factor, non-orthogonal error, and acceleration-related terms across all temperature parameters, maintaining high measurement accuracy over extended periods.

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    NF1200
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  • DESCRIÇÃO

Product Series and Parameters

Parameter Technical indicators
Gyroscope
Measuring range (°/s) ±200
Full temperature zero bias (°/h, 3σ) ≤0.3
Zero bias stability (°/h, 10s smoothing) ≤0.1
Zero bias instability (°/h, allan, typ) ≤0.02
Zero-bias repeatability (°/h) ≤0.1
Random walk in angle (°/√h) ≤0.01
Scale factor nonlinearity (ppm) ≤100
Cross coupling (rad) ≤0.001
Bandwidth (Hz) ≥50
accelerometer
Measuring range (g) ±10
Full temperature zero bias (mg, 3σ) ≤0.5
Zero bias stability (ug, 10s smoothing) ≤20
Zero bias instability (ug, allan, typ) ≤10
Zero bias repeatability (ug) ≤20
Random speed walk (m/s/√h) ≤0.02
Scale factor nonlinearity (ppm, ±1g) ≤100
Cross-coupling (rad) ≤0.001
Bandwidth (Hz) ≥50
Navigation accuracy
Self-seeking north accuracy (°, 1σ) ≤0.5secL (L represents the local latitude)
Pose accuracy (°, 1σ) ≤0.05
physical properties
Power supply (V) 5~12
Steady-state power (W) ≤2
Startup time (s) ≤2
Update rate (Hz, max) 200
Dimensions (mm×mm×mm) 47×47×35.5
Weight (g) 100±10g
Usage environment
Operating temperature (℃) -40~+80
Storage temperature (℃) -55~+85
Vibration (g, RMS) 20~2000HZ,6.06
Impact (g) 500g/1ms

Application Scenarios

MEMS North Finder application

The NF1200 is a high-performance MEMS-based north finder that integrates three-axis MEMS gyroscopes and three-axis MEMS accelerometers, delivering full-temperature compensated inertial/attitude (including north-finding) outputs via RS422 (up to 200 Hz)—well-suited for applications such as inertial navigation and attitude stabilization. 

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FAQ

Q1. What is the NF1200?
A: The NF1200 is a 6-axis MEMS north-following/inertial sensor designed for navigation, control, and measurement applications (such as inertial navigation and attitude stabilization). It provides full-temperature compensation for zero-position, scaling factor, non-orthogonality, and acceleration-related terms within the system.
 
Q2. What sensors are integrated inside?
A: System integration: Three-axis MEMS gyroscope + three-axis MEMS accelerometer: The gyroscope senses angular motion, and the accelerometer senses linear acceleration.
 
Q3. What is the output interface? How is data transmitted?
A: By default, it uses RS422 for timed broadcast output, with an output frequency of 200 Hz, 96 bytes/frame, and a serial port baud rate of 460800 bps (8N1).
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NF1200 MEMS North Finder 6-Axis Inertial Sensor, 0.5secL North Seeking, 0.05° Attitude, 200Hz RS422
The NF1200 MEMS North Finder is a highly reliable and cost-effective six-axis MEMS inertial sensor, widely applicable in navigation, control, and measurement fields represented by inertial navigation and attitude stabilization. The NF1200 series north finders integrate high-performance MEMS gyroscopes and MEMS accelerometers within an independent structure. The gyroscopes and accelerometers selected for the system represent the leading level of MEMS technology inertial devices. All electronic components within the system are 100% domestically produced. The three-axis MEMS gyroscopes sense the angular motion of the carrier, while the three-axis MEMS accelerometers sense the linear acceleration of the carrier. The system internally compensates for zero position, scale factor, non-orthogonal error, and acceleration-related terms across all temperature parameters, maintaining high measurement accuracy over extended periods.
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