Brief: In questo video, esaminiamo attentamente il modulo relè digitale a 16 punti ControlLogix 1756-OW16I di Allen-Bradley. Vedrai una spiegazione dettagliata delle sue specifiche e di cosa significano in pratica per gli ambienti di automazione industriale. Guarda per capire come le sue 16 uscite relè isolate individualmente e l'ampio intervallo di tensione offrano prestazioni costanti nelle applicazioni di produzione e controllo di processo.
Related Product Features:
Features 16 individually isolated normally open (N.O.) relay outputs for flexible system configurations.
Supports a wide operating voltage range of 5-125 V DC and 10-240 V AC.
Provides versatile output current ratings for different voltage levels, including 1 A @ 5-30 V DC and 1.5 A @ 120 V AC.
Offers electronic, software-configurable module keying for easy integration with ControlLogix systems.
Designed with robust construction to withstand operating temperatures from 0-60 °C and vibration resistance of 2 g.
Ensures reliable performance with an expected contact life of 300 kHz for resistive loads.
Features minimal off-state leakage current of 1.5 mA maximum per point.
Provides fast output response with maximum delay times of 10 ms for both on and off states.
Domande frequenti:
What is the operating voltage range of the Allen-Bradley 1756-OW16I module?
The module supports a wide operating voltage range of 5-125 V DC and 10-240 V AC, making it adaptable to diverse industrial system configurations.
How many outputs does this module have and what type are they?
It features 16 individually isolated normally open (N.O.) relay outputs, providing flexible control for various automation applications.
What are the output current ratings for different voltage levels?
The output current ratings include 1 A at 5-30 V DC, 0.5 A at 48 V DC, 0.22 A at 125 V DC, 1.5 A at 120 V AC, and 0.75 A at 240 V AC.
What is the expected contact life of the relay outputs?
The expected contact life is 300 kHz for resistive loads and 100 kHz for inductive loads, ensuring long-term reliability in industrial environments.