Motor current quick-break Bach circuit b composed of electromagnetic current relay
Source: InternetPublisher:aerobotics Keywords: Electromechanical electric motor current relay electromagnetic Updated: 2020/05/26
Medium and small-capacity high-voltage motors generally use current quick-break protection as the main protection for phase-to-phase short circuit. For
high-voltage motors that are not prone to overcurrent, current quick-break protection composed of electromagnetic type (such as DL-11 type) current relays is usually used; for high-voltage motors
that may generate overcurrent , induction type (GL type) overcurrent relays can be used The inverse time limit part of the current quick-break
protection and over-current protection is used as over-current protection and acts on the signal. The over-current protection time limit is generally
15 to 20 seconds, and the quick-break part is used as phase-to-phase short circuit protection and acts on tripping.
The circuit is shown in Figure 4-51.
- Current output characteristics of brushed motor driver chips. How to increase the peak drive current?
- The meaning and importance of circuit protection, common types of circuit protection
- Controlling LEDs with Multithreading via Dual-Core Programming on Raspberry Pi using MicroPython
- IGBT modules block overcurrent by controlling the gate
- Hydraulic control circuit design and analysis
- Light-controlled circuit design and analysis
- Night dog barking anti-theft reminder circuit
- Water supply reminder after water outage
- Car audio system anti-theft circuit
- Vibration anti-theft alarm circuit
- Remote control receiving circuit of Panasonic inverter air conditioner indoor unit control circuit
- Photocell amplification control circuit
- Electronic rhythm control circuit
- Boiler control circuit
- Stapler control circuit
- Car window control circuit
- Bedside touch light detection control circuit
- Detection and control circuit of electromagnetic stove
- Micro DC motor steady speed control circuit b
- DC motor forward and reverse control circuit