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Product Overview |
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The Cisco C9400-PWR-3200AC power supply delivers 3200 watts of robust, reliable AC power for Catalyst 9400 Series switches, supporting scalable modular deployments in enterprise and campus networks with hot-swappable convenience and redundancy options. |
General Information |
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| Brand | Cisco |
| Part Number | C9400-PWR-3200AC |
| Product Type | Desktop Power Supply |
| Condition | Refurbished |
Technical Information |
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| Input Voltage | 100-240V AC |
| Input Frequency | 50-60 Hz |
| Max. Output Power | 3200W |
| Efficiency Rating | 80 Plus Platinum |
| Hot Swappable | Yes |
| Redundant Support | Yes |
| Cooling Type | Active Fan |
| Modularity | Non-Modular |
| rail_design | Single 12V Rail |
| Number of Fans | 1 |
Compatibility |
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| Compatible For | Cisco Catalyst 9400 Series |
Physical Characteristics |
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| Weight | 5.00 |
Certifications and Environmental |
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| Eco Friendly | Yes |
| Compliance Standards | cURus, CE |
Product Description |
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The Cisco C9400-PWR-3200AC is a high-capacity 3200-watt AC power supply designed for the Cisco Catalyst 9400 Series switches, ensuring consistent and reliable power delivery in demanding enterprise environments. Key Features
This power supply is ideal for enterprise network cores, campus LAN environments, and data centers requiring high power availability and system uptime. It supports critical networking infrastructure where performance and reliability are paramount. |
Use Cases |
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The Cisco 3200-Watt AC Power Supply is designed for robust power delivery in high-density enterprise network environments. It is particularly suited for data center racks and campus core switches where continuous uptime and power redundancy are critical for maintaining network performance and reliability. How It's Used:
This power supply enhances operational efficiency by ensuring uninterrupted power to mission-critical switches, supporting scalable architectures, and facilitating maintenance with hot-swappable design. Its integration into modular systems helps maintain performance levels in complex network topologies. |