Product Description
Description: Solid State Contactor • Mounting Type: Chassis Mount, DIN Rail • Circuit: 1A SPST-NO • Load Current: 30 A • Voltage - Input: 3 ~ 32VDC • Voltage - Load: 24 ~ 240V • Termination Style: Screw Terminal • Package / Case: SSR with Integrated Heat Sink • Option: Integrated monitoring
Product Information | Resources |
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Specifications |
Product Attribute | Attribute Value |
Mounting Type | Chassis Mount, DIN Rail |
Circuit | 1A SPST-NO |
Output Type | AC, Zero Cross |
Load Current | 30 A |
Voltage - Input | 3 ~ 32VDC |
Voltage - Load | 24 ~ 240V |
Termination Style | Screw Terminal |
Package / Case | SSR with Integrated Heat Sink |
Option | Integrated monitoring |
Series Features |
RG..M RG 1-phase solid state relays with integrated monitoring |
Series Description: The RG..M solid state relays incorporate monitoring functions for fast failure detection on top of the switching capability in a slim 17.8 mm platform (up to 30 AAC). Timely detection for mains loss, load loss, SSR open and short circuit, SSR internal fault and supply out range are all possible with the RG..M series. This range of solid state relays is equipped with an Alarm LED for visual indication of fault presence as well as an alarm transistor output for remote signalling. The RG..M solid state relays are available either with integrated heatsink, RGC..M and without heatsink, RGS..M. Ratings go up to 660 VAC, 65 AAC for RGC..M and 90 AAC for RGS M. The RG..M has to be supplied with a 24 VDC voltage and is controlled with a DC voltage between 4 and 32 VDC. Specifications are noted at 25°C unless otherwise stated. |
Series Applications: Typical applications for the RG..M include plastic processing machinery, packaging machines, semiconductor machines, wood manufacturing machinery and drying equipment. The RG..M is the ideal solution where it is crucial to avoid re-work of processed material that may occur in case a malfunction is not detected in a timely manner. This is especially applicable in processes where a deviation in temperature control needs to be detected immediately and in temperature control processes that do not have an accurate temperature feedback as is very typical with applications using Infrared heaters. |
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