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High Precision Mems Imu Unit 5.6*5.6*3.85cm For Attitude Control Systems

High Precision Mems Imu Unit 5.6*5.6*3.85cm For Attitude Control Systems

High Precision Mems Imu Unit

High Precision mems inertial measurement unit

5.6*5.6*3.85cm Mems Imu Unit

Place of Origin:

China

Brand Name:

Liocrebif

Certification:

GJB 9001C-2017

Model Number:

LKF-MSU300

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Product Details
Dimensions:
5.6*5.6*3.85 Cm
Color&Classification:
LKF-MSU300
Brand:
Liocrebif
Output Format:
RS422
Application:
Guidance Weapons Operating In Harsh Mechanical/thermal Conditions, UAV/vehicle/ship/boat Attitude Reference, Attitude Control Systems, Radar/infrared Antenna Stabilization Platforms
Original Place:
China
Highlight:

High Precision Mems Imu Unit

,

High Precision mems inertial measurement unit

,

5.6*5.6*3.85cm Mems Imu Unit

Payment & Shipping Terms
Minimum Order Quantity
1
Price
5000-25000CHY
Packaging Details
Wooden box/Cardboard box/Container
Delivery Time
2-4 weeks
Payment Terms
T/T
Supply Ability
10000
Product Description
Essential details
MOQ:1
Size:L(5.6)*W(5.6)*H(3.85) cm
Specification Number:LKF-MSU300
Product Introduction

Technical Characteristics

Customizable precision and wide range of applications

LKF-MSU300 High-Precision MEMS Inertial Measurement Unit (IMU) is a highly reliable and cost-effective six-axis MEMS inertial sensor module, designed for a broad range of navigation, control, and measurement applications—particularly in inertial navigation and attitude stabilization.

LKF-MSU300 supports custom hardware/software configurations to meet diverse user requirements. For specialized inertial navigation applications, the gyroscope can be upgraded to high-precision or high-dynamic MEMS gyros, ensuring optimal performance for different operational needs.

 

Advanced processes and technologies

LKF-MSU300 IMU integrates high-performance MEMS gyroscopes and accelerometers within a standalone structure. The selected gyroscopes and accelerometers represent the leading edge of MEMS inertial technology, with 100% domestically sourced electronic components.

  • Triaxial MEMS Gyroscopes: Detect angular motion of the carrier.
  • Triaxial MEMS Accelerometers: Measure linear acceleration of the carrier.
  • Comprehensive Compensation: Includes full-temperature calibration for bias, scale factor, non-orthogonal errors, and acceleration-dependent terms, ensuring long-term measurement accuracy.
  • Robust Design: Features reinforced structural design and adhesive sealing to maintain precise measurement of angular and linear motion parameters even in harsh environments, providing users with a highly reliable solution.

High-Precision Manufacturing /System Calibration Technology

The company has developed a series of key technologies during the R&D process to ensure the product's high performance. The system employs high-speed sampling, static error compensation (fine compensation for zero bias, scale factor, and misalignment across the full temperature range), and dynamic error compensation (e.g., coning and sculling errors) to deliver optimal performance in user applications.

 

Table 1 Performance Parameters Of LKF-MSU300

Gyroscope

Range (°/s)

±400

Bias(°/h)

≤2

Bias Stability (°/h, 10s smoothing)

≤0.3

Bias Instability (°/h, ALLAN)

≤0.02

Angular Random Walk (°/√h)

≤0.015

Bias Repeatability (°/h)

≤0.1

Scale Factor Nonlinearity (ppm)

≤100

Bandwidth (Hz)

≥200

Cross-Coupling (rad)

≤0.001

Resolution (°/s)

≤0.001

Threshold (°/s)

≤0.001

Accelerometer

Range (g)

±40

Bias (mg)

≤2

Bias Stability (μg)

≤100

Bias Instability (μg, ALLAN)

≤30

Velocity Random Walk (μg/√Hz)

≤30(0.018mm/s/sqrt(h))

Bias Repeatability (μg)

≤100

Scale Factor Nonlinearity (ppm)

≤300

Bandwidth (Hz)

≥200

Cross-Coupling (rad)

≤0.001

Resolution (μg)

≤100

Threshold (μg)

≤100

Electrical/Mechanical Interface

Power Supply (V)

5±0.2V

Power Consumption (W)

≤2

Startup Time (s)

≤2

Communication Interface

2×RS-422

Update Rate (Hz)

200(Customizable up to 1000)

Dimensions (mm×mm×mm)

56×56×38.5

Weight (g)

236±5g

Operating Environment

Operating Temperature (°C)

-4580

Storage Temperature (°C)

-5585

Vibration (g, RMS)

13

Shock (g)

1000g/1ms (powered),
20000g/10ms (unpowered, requires customization)

 

Table 2 Definition of electrical interface

Pin

Definition

DB9 Definition

Connect to testing device

2

RS422 Rx+

DB9-M1

RS422 Tx+

7

RS422 Rx-

DB9-M2

RS422 Tx-

3

RS422 Tx+

DB9-M3

RS422 Rx+

8

RS422 Tx-

DB9-M4

RS422 Rx-

6

GND

DB9-M5

DC 5V
Power Supply

1

POWER_IN

DB9-M6

 

Main features

High-precision MEMS IMU

100% domestically sourced components

High performance, compact size, lightweight, low power consumption

Full-temperature calibration compensation (-45°C to +80°C)

 1KHz high-speed sampling

Harsh mechanical environment resistance

Supports firmware online updates

 

Applications

Guidance weapons operating in harsh mechanical/thermal conditions

UAV/vehicle/ship/boat attitude reference

Attitude control systems

Radar/infrared antenna stabilization platforms

 

Fig. 1 Outline Structure Dimension Diagram

 

High Precision Mems Imu Unit 5.6*5.6*3.85cm For Attitude Control Systems 0

 
 
 
 
 
 
 
 
 
 
 
 
High Precision Mems Imu Unit 5.6*5.6*3.85cm For Attitude Control Systems 1
 

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