• High dynamic dual axis motion simulator with thermal chamber white background for UAV sensor R&D
  • Motion rate table with 600mm diameter platform and integrated temperature control interface
  • Close up of high speed drive motor for inner frame rate up to 1000 degrees per second
  • Motion simulator performing 85 degree high temperature cycle for drone flight controller gyro validation
  • Automated control interface executing thermal profile for autonomous vehicle IMU characterization
  • High dynamic dual axis motion simulator with thermal chamber white background for UAV sensor R&D
  • Motion rate table with 600mm diameter platform and integrated temperature control interface
  • Close up of high speed drive motor for inner frame rate up to 1000 degrees per second
  • Motion simulator performing 85 degree high temperature cycle for drone flight controller gyro validation
  • Automated control interface executing thermal profile for autonomous vehicle IMU characterization

High Dynamic Dual Axis Motion Simulator with Thermal Chamber for UAV Sensor R&D

No.BE-INS2-DT23V
This high dynamic dual axis motion simulator functions as gyro test stand and rate table for UAV sensor R&D with precise thermal control. Wide rate range up to 1000°/s supports high speed MEMS testing, integrated thermal chamber from -55℃ to +85℃ enables full temperature sensor characterization, and better than 0.5″ dual axis repeatability ensures consistent calibration results. Perfect for drone flight controller gyro validation, autonomous vehicle IMU development, and industrial INS.
Specifications
Load weight:
80kg
Working desk:
600mm
Table runout:
0.01mm
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  • High dynamic dual axis motion simulator with thermal chamber white background for UAV sensor R&D
  • Motion rate table with 600mm diameter platform and integrated temperature control interface
  • Close up of high speed drive motor for inner frame rate up to 1000 degrees per second
  • Motion simulator performing 85 degree high temperature cycle for drone flight controller gyro validation
  • Automated control interface executing thermal profile for autonomous vehicle IMU characterization

Description

No. Indicator Item Technical Parameters
1 Load weight 80kg
2 Working desk 600mm
3 Table surface flatness 0.008mm
4 Table runout 0.01mm
5 Verticality (table and spindle) No more than ±1.8"
6 Perpendicularity between two axes No more than ±1.8"
7 Box size Not less than 650mm × 650mm × 650mm
8 Temperature range ≥ -55°C ~ 85°C
9 Temperature control accuracy ≤ 0.1°C
10 Temperature uniformity in the chamber ≤ 1°C
11 Temperature control box heating and cooling rate range The temperature control box temperature change rate covers 0.3°C/min ~ 5°C/min and can be set arbitrarily. It is linearly adjustable from 0.3°C/min to 2°C/min within the temperature range of -55°C ~ 85°C.
12 Corner range Both frames are continuous and infinite
13 Angular position measurement resolution Both frames are better than 0.036"
14 Angular position positioning accuracy Inner frame: better than ±1"
Outer frame: better than ±2"
15 Angular position zero return accuracy Inner frame: better than ±1"
Outer frame: better than ±2"
16 Angular position repeatability Both frames are better than 0.5"
17 Rate range Inner frame: ±0.0005°/s ~ ±1000°/s (20kg load)
Inner frame: ±0.0005°/s ~ ±400°/s (40kg load)
Inner frame: ±0.0005°/s ~ ±200°/s (80kg load)
Outer frame: ±0.0005°/s ~ ±200°/s
18 Angular acceleration range Inner frame: ≥ 300°/s²
Outer frame: ≥ 110°/s²
19 Speed resolution Better than 1×10⁻⁶
20 Rate accuracy and stability ±0.0001°/S ~ ±1°/S, Better than 2×10³ (1° average)
±1°/S ~ ±10°/S, Better than 1×10⁴ (10° average)
greater or equal to 10°/S, Better than 1×10⁵ (360° average)