Combination inertial navigation development experimental box
GTAT-ID0034
Delivery:
EXW
minimum order:
10 sets
Supply Ability:
30sets / Month
Country of Origin:
Guangzhou, China
Stock Time:
45Day
Quantity:
I. Product Requirements:
Applicable to practical training projects covering"New Energy Vehicle Driving Assistance System Maintenance,""Assembly and Calibration of Environmental Perception Components,"and"Intelligent Sensor Technology,"including combined inertial navigation system structure understanding, assembly and calibration, and basic application development. The combined inertial navigation system experiment box integrates comprehensive application training and experimental equipment for TTL protocols, combined inertial navigation system structure principles, assembly and calibration, and positioning systems. It requires a combined inertial navigation system, a 13.3-inch industrial computer, a test vehicle, a wireless keyboard and mouse, and specialized tools to meet diverse development and learning needs. Instructional videos and related practical training accessories are also included.
II. Technical Requirements:
1. Communication Protocol: Utilizes TTL communication technology. TTL (Transistor-Transistor Logic) serial port refers to a serial communication method in electronic communications that uses TTL level signals for data transmission.
2. Input and Output Interfaces: The experiment box supports dual USB ports and a Gigabit Ethernet port, and is expandable for COM ports, LPT ports, GPIO ports, and more. 3. Function 1: Combine Flash technology to disassemble and assemble combined inertial navigation system components, completing practical training on combined inertial navigation system structure and principles.
4. Function 2: Combine combined inertial navigation system assembly and testing software to complete combined inertial navigation system testing training.
5. Function 3: Combine combined inertial navigation system calibration software to complete combined inertial navigation system assembly calibration and performance testing.
6. Function 4: Combine combined inertial navigation system development and application system to complete comprehensive application training experiments on data acquisition and positioning systems.
III. Practical Training (Experimental) Projects:
1. Combined Inertial Navigation System Structural Cognition Training;
2. Combined Inertial Navigation System Performance Testing;
3. Combined Inertial Navigation System Assembly and Calibration;
4. Combined Inertial Navigation System Data Acquisition Training;
5. Combined Inertial Navigation System Positioning System Development Experiment;
IV. Teaching Resources:
1. Learning Worksheet: Includes combined inertial navigation system understanding, combined inertial navigation system quality inspection, combined inertial navigation system debugging, combined inertial navigation system calibration, data acquisition and analysis testing, positioning system testing, and positioning experiments based on the ROS car.
2. Simulation Testing: Complete vehicle positioning simulation experiments using intelligent driving simulation software.
V. Performance Parameters:
1. Appearance Parameters:
Case Dimensions: Approximately 505*420*180mm
Operating Voltage: DC12V
Operating Temperature: -20°C - 60°C
2. Industrial Computer Parameters:
Processor: Intel Core i7
Memory: 4GB
Hard Drive: 128GB SSD
Operating System: Windows 10
3. Combined Inertial Navigation System Parameters:
Type: 8-channel combined inertial navigation system
Operating voltage: 9-36V
Peak current: 400mA
Voltage: 5-36V
Measurement range: Three-axis acceleration; three-axis gyroscope; three-axis angle
Measurement range: Acceleration: ±2g, Gyroscope: ±500°/s, Angle: ±180°
Angle accuracy: XY axis: 0.2°, Z axis: 0.5°
Outputs: Time, acceleration, gyroscope, Euler angles, latitude and longitude, ground speed
Data interface: Serial port (TTL/232 level, baud rate: 6800-921600)
Transmission rate: 0.2-200Hz
Weight: 83.76g
Dimensions: 40mm x 32mm x 16mm
4. Test vehicle parameters:
Product dimensions: 269*194*65mm
CPU: ARM Cortex-A72 64-bit @ 1.5GHz (quad-core)
Computing power: 0.2TOPS (FP16)
Ports: 2 USB 2.0, 2 USB 3.0, Type-C Ethernet
Minimum turning radius: 0.8m
Servo: S20F 20kg torque digital servo
Motor: MD36 35W brushed DC motor
Motor reduction ratio: 1:27
Maximum speed: 1.3m/s
Maximum gradeability: 17°
Obstacle Crossing Capability: 30mm
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