30A Rail Solid State Relay (GAG6-1/250F-38)
Model |
GAG6-1/250F-38 |
Description |
Rail Soil State Relay |
Controlling Voltage |
250:90~250VAC |
Controlling Current |
<20mA |
Make-on Voltage |
90VAC |
Break-off Voltage |
10VAC |
Reverse Voltage |
- |
Load Voltage |
38:40-440VAC |
Load Current |
20,25,30,40,60,80A |
Instant Voltage |
38:900VAC |
Voltage Dropin On |
<1.6VAC |
On-off Time |
≤10ms |
Leakage Current in off |
≤10mA |
Dielectric Strength |
≥2500VAC |
Insulation Resistance |
500m uohm/500VDC |
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Remarks:
1. Output power must be AC Voltage.
2. Adjustments are facilitated with a 2W470-560K potentiometer.
3. For loads exceeding 10 Amps, a heat sink is required for mounting. For enhanced cooling efficiency on loads above 80 Amps, opt for fan-cooling or
water-cooling solutions.
Feature Highlights:
Utilizing semiconductor technology, these no-contact relays support high-speed, high-frequency operations.
Fully RoHS compliant for eco-friendly assurance.
Availability of models without zero cross functionality.
Features interchangeable power elements for flexible application.
Meets rigorous cULus and CE standards for global reliability.
Understanding SSR: The Future of Switching
Solid State Relays (SSRs) offer an innovative solution by electronically managing the power supply to other devices, unlike traditional mechanical switches that require manual interaction. SSRs efficiently control high-current devices like lights or appliances using low-current signals, such as a standard DC signal from a Digital Output. Most SSRs activate with a minimal voltage of 3V, making them ideal for integration with Phidget Interface Kits or any device equipped with a digital output.
While SSRs perform the same foundational functions as Mechanical Relays, they deliver significant benefits:
- SSRs generate significantly less electromagnetic interference than their mechanical counterparts due to the absence of contact arcing - a phenomenon where mechanical relay contacts spark internally during switching. This reduced interference is further enhanced as SSRs do not depend on electromagnets for operation.
- Mechanical relay contacts degrade over time due to arcing, while SSRs enjoy a prolonged lifecycle with purely digital internals, enabling millions of operational cycles.
- SSRs provide faster switching times, activating at 1ms compared to the 10ms of mechanical relays.
- Enhanced resilience to physical vibrations compared to mechanical relays.
- Absence of a mechanical switch in SSRs eliminates issues like contact bounce and ensures silent operation.
Operational Dynamics: How It Works
Internally, control inputs connect to an LED that illuminates sensors across an air gap. These sensors link to transistors that open or close, managing power flow to the relay's load. When a transistor is closed, uninterrupted current flows, connecting load and power supply. Conversely, when a transistor is open, it blocks nearly all current, disconnecting the load from the power source. This LED and sensor pairing forms an optocoupler, a common circuit connection technique without direct electrical contact.
Why Choose NCR & Clion?
1. We are a distinguished manufacturer, researcher, developer, and exporter of electronic components.
2. Boasting over fourteen years of expertise in manufacturing relays and diverse electronic components.
3. Adhering to the distinguished ISO 9001 & ISO 14000 quality control systems, we uphold these esteemed standards as the cornerstone of our production excellence.;
4. Our comprehensive sales service system is meticulously designed to ensure every intricate detail of your experience flows seamlessly and flawlessly.
5. Every year, our innovative R&D Department unveils cutting-edge products, continuously pushing the boundaries of design and functionality.
6. A robust and impeccable testing system guarantees that each product meets and exceeds quality benchmarks, ensuring reliability and satisfaction.
7. Eager to discover more about us? We warmly invite your inquiry and look forward to engaging with you.