Cisco UCSC-MPSTOM6L-KIT=: Modular Power Syste
Defining the UCSC-MPSTOM6L-KIT= in Cisco’s Power Infr...
The Cisco DS-C48V-48ETK9PRM is engineered for mission-critical industrial IoT environments, featuring 48×10/100/1000BASE-T ports and 48V DC input compatibility – a critical advancement for smart factories and energy grid automation. Designed to operate in -40°C to 75°C extremes, its dual redundant 48V DC inputs achieve <2ms power failover, addressing voltage instability risks common in heavy machinery zones. Key innovations include:
Q: Why does DS-C48V-48ETK9PRM outperform traditional 24V switches in energy-intensive deployments?
A: Three breakthroughs resolve industrial challenges:
A performance comparison reveals its technical superiority:
Metric | DS-C48V-48ETK9PRM | Standard Industrial Switch |
---|---|---|
Input Voltage Tolerance | 36-60V DC | 18-36V DC |
PoE Budget | 4,320W | 1,800W |
Redundancy Tier | N+N (dual PSUs) | N+1 |
MTBF (40°C ambient) | 2.5M hours | 800K hours |
The switch synchronizes with Cisco DNA Center for centralized management of distributed sites, while Time-Sensitive Networking (TSN) guarantees <1ms latency for robotic control signals. Its Cisco IOx platform supports containerized predictive maintenance algorithms, enabling real-time analysis of transformer health data in power grids.
Available at itmall.sale, the DS-C48V-48ETK9PRM pairs with Cisco’s IR1101-K9 routers and C9117AXI Wi-Fi 6E APs for end-to-end industrial networks. Cisco’s 20-year product lifecycle commitment ensures long-term support for infrastructure upgrades.
The DS-C48V-48ETK9PRM redefines industrial connectivity through adaptive voltage scaling – dynamically adjusting power delivery from 36V to 60V based on grid load fluctuations. Its modular PoE++ architecture allows operators to upgrade 48V power shelves without chassis replacement, a critical feature for utilities deploying distributed energy resources. By converging IT/OT protocols on a single hardened platform, this switch eliminates the traditional compromise between high-voltage efficiency and industrial automation flexibility, proving that rugged networking can coexist with intelligent edge computing demands.