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Schneider Electric Modicon ABE7S08S2B1

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ABE7S08S2B1

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Schneider Electric's ABE7S08S2B1 is a solid state output relay sub-base designed for compact, reliable connections. It features eight channels with 2 terminals per channel and operates at a rated supply voltage of 24 V DC.

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Technical specifications for ABE7S08S2B1

ManufacturerSchneider Electric
Product TypeSolid state output relay sub-base
Product LineModicon
Part NumberABE7S08S2B1
Weight1.25 lbs (0.57 kg)
Number of Terminals per Channel2
Rated Supply Voltage24 V DC
Number of Channels8
Relay TypeSoldered solid state relay
Drop-Out Voltage0.5 V
Maximum Switching Current1 mA
Maximum Current per Output Common10 A
Maximum Circuit Breaker Threshold2.6 A
Switching Frequency< 0.5/LI² Hz
Tightening Torque0.6 N.m
Shock Resistance15 gn
Terminal Block TypeRemovable
Ambient Air Temperature for Operation-5…60 °C
Resistance to Radiated Fields10 V/m

The ABE7S08S2B1 from Schneider Electric belongs to the Modicon series and is a solid state output relay sub-base. This component is equipped with eight channels, each comprising two terminals, allowing for versatile configurations in electrical setups. It operates effectively at a rated supply voltage of 24 V DC.

The device utilizes soldered solid state relays for dependable performance. The maximum current for each output common reaches 10 A, ensuring robust functionality within specified limits. Additionally, the relay supports a maximum switching current of 1 mA. Its drop-out voltage is recorded at 0.5 V, facilitating stable operations during normal cycling.

For circuit protection, the maximum threshold at the circuit breaker level is set at 2.6 A. With a tight switching frequency of less than 0.5/LI² Hz, this relay provides efficient performance for various applications. The ABE7S08S2B1 is designed to endure shocks with resistance rated at 15 gn.

Installation is simplified due to its removable terminal block design. A tightening torque of 0.6 N.m ensures proper connections are maintained. The ambient temperature for operation ranges between -5 and 60 °C, making it suitable for a variety of environments. In terms of electromagnetic compatibility, it exhibits resistance to radiated fields of 10 V/m, enhancing its robustness in industrial applications.