Description
The Cisco PWR-C45-4200ACV is a high-capacity dual-input 4200W AC power supply module designed for Cisco Catalyst 4500-E Series switches and classic chassis. With robust power delivery, high energy efficiency, and redundant input support, it ensures reliable operation in mission-critical enterprise network environments.
Technical Specifications
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Condition
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New/Never Used Surplus
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| Brand |
Cisco
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Category
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Computers/Tablets & Networking
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Part Number
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PWR-C45-4200ACV
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| Subcatecory |
|
| Power Capacity |
4200 Watts (Dual Input) |
| Compatible With |
Cisco Catalyst 4500-E & Classic Chassis |
| Input Voltage |
120 / 230 VAC |
| Input Current |
12 A max (per input) |
| Frequency |
50/60 Hz (±3%) |
| MTBF |
331,945 hours |
| Output Hold-Up Time |
20 ms minimum |
| Max Heat Dissipation |
3583 BTU/hr |
| Max kVA Rating |
5.25 kVA |
Information About PWR-C45-4200ACV
The PWR-C45-4200ACV is engineered to support large-scale Cisco Catalyst 4500 and 4500-E chassis, delivering up to 4200 Watts of AC power through dual independent power inputs. This configuration allows for redundant AC input, ensuring continuous operation even during a single power source failure. It operates with a maximum input current of 12 A per input at either 120 or 230 VAC and supports a 50/60 Hz nominal frequency.
Key Features:
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4200W Dual-Input Power Supply: Provides redundant AC power inputs for enhanced reliability.
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Compatible with Cisco Catalyst 4500-E Series and Classic Chassis: Designed for full integration with enterprise-grade modular switches.
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High MTBF (331,945 hours): Ensures long-term operation and reduces the risk of failure.
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Max Heat Dissipation of 3583 BTU/hr: Efficient cooling for sustained high-performance operation.
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5.25 kVA Maximum Rating: Supports high-load switching systems in dense environments.
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20 ms Output Hold-Up Time: Maintains power briefly during input disturbances to prevent service interruptions.
The PWR-C45-4200ACV is built to meet the power demands of expansive enterprise switching environments with enhanced fault tolerance and maximum efficiency.