Single Axis Turntable With Temperature Chamber

Load Capacity:5~200 kg

Table dimension:Φ30mm~Φ1500mm

Rate range: 0.001° ~3000°/s

Rate accuracy and stability: 1×104(1°average); 1×105(10°average); 1×106(360°average)

Temperature range: -60 ℃ ~ +150 ℃

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Description

The Single-Axis Temperature-Controlled Turntable is a high-performance test equipment designed to provide multi-functional simulation testing for inertial devices under extreme high and low temperature environments.

It integrates multiple test functions including positioning, rate, sway, servo, simulation, and high/low temperature testing. This versatile system is capable of meeting the rigorous testing and validation requirements of inertial systems and inertial components.

Technical Specifications

Parameter Specification
Load Capacity 40 kg
Payload Dimension Φ400 mm × 400 mm
Table Diameter Φ430 mm
Table Flatness 0.01 mm
Table Runout 0.02 mm
Magnetic Leakage ≤1 Gs (10 mm above the table surface)
Tilt Angle Rotation Error ±2″
Rotation Range Continuous unlimited
Operating Modes Position, Rate, Sway
Slip Ring User-defined (number of channels and power customizable)
Angular Position Accuracy ±1″
Angular Position Resolution 0.36″
Angular Position Repeatability ±1″
Rate Range ±0.001°/s ~ 4500°/s
Rate Accuracy & Stability 1×10⁻³ (1° average) 1×10⁻⁴ (10° average) 1×10⁻⁵ (360° average)
Maximum Acceleration 500°/s²
Sway Parameters Period: 0.1 s ~ 50 s Amplitude: 0° ~ ±50°
Temperature Chamber Inner Size 500 mm (W) × 500 mm (D) × 500 mm (H)
Temperature Range -55°C ~ +125°C
Temperature Control Accuracy & Uniformity ±1°C (empty chamber)
Temperature Ramp Rate 3°C/min
Typical Loads 30 kg, 40 kg, 45 kg, 60 kg

Key Features

  • Single-axis and multi-axis configurations available
  • Automatic frame-type structure
  • Position control, speed control, swing, and servo functions
  • High positioning accuracy
  • Stable rotational speed
  • Low track distortion
  • Industrial computer-based operation and control

Typical Applications

  • Testing and calibration of Inertial Navigation Systems (INS) and IMUs
  • Performance verification of gyroscopes and accelerometers under extreme temperatures
  • Stabilized platforms and electro-optical pods reliability testing
  • Aerospace, defense, and high-precision instrumentation R&D and quality control
  • Simulation of real flight or operational environments with combined motion and thermal stress