Q1P03-6P05 single-channel gas-electric combined rotary joint, dedicated single-channel gas-electric slip ring, G3/8" large aperture interface, transmission of 6-way 2A signal. Optimized design for the rotary system of chemical equipment.
Q1P03-6P05 gas-electric combined rotary joint Features
1. Anti-clogging design: eddy current gas path structure to prevent crystal deposition.
2. Large aperture adaptation: G3/8" interface inner diameter 8mm, supports high viscosity fluid.
3. Long life contacts: gold-plated contacts + graphite lubrication, wear rate <0.1μm/million revolutions.
4. Dedicated single channel: 1 gas channel simplifies maintenance process and reduces failure rate.
5. Wide temperature range operation: -30℃~80℃ temperature, suitable for most use environments.
Q1P03-6P05 gas-electric combined rotary joint parameters
Electrical parameters | Parameter Value | Gas parameters | Parameter Value |
Dielectric strength | 500VCA@50Hz,60s | Number of trachea | 1 in 1 out |
Insulation resistance | ≥500MΩ/300VDC | Pressure | -80KPa-0.8MPaor vacuum |
Dynamic resistance change value | <10mΩ | Rotational torque | <0.3N.m |
Rated voltage | 0~440VDC/VAC | Rotation speed | 250rpm |
Wire Specifications | AWG22 Teflon wire (depending on the specific current) | Shell material | Aluminum Alloy |
Wire length | Default 250mm(Customizable) | Temperature | -30℃~+80℃ |
Contact material | Precious metal contacts | Operating humidity | 0~85%RH |
Protection level | IP51 |
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Q1P03-6P05 gas-electric combined rotary joint drawings
Q1P03-6P05 gas-electric combined rotary joint pictures
Q1P03-6P05 gas-electric combined rotary joint Application scenarios
Suitable for high-precision fields such as industrial automation, medical equipment, and new energy equipment, it solves the key bottleneck of the collaborative work of pneumatic/hydraulic actuators and electrical control systems on the rotating platform, and realizes the smooth execution of complex movements and the entanglement-free transmission of high-density information (fluid + electricity + signal).