The
Juniper PWR-MX960-4100-AC-S is a high-capacity, AC power supply unit designed for the Juniper MX960 Universal Edge Router. With a maximum power output of 4100W, this power supply ensures efficient and reliable energy delivery to support the demanding workloads of carrier-grade, enterprise, and data center networks. Featuring a front-to-rear airflow design (S), the
PWR-MX960-4100-AC-S is optimized for modern cooling systems, ensuring operational efficiency and reliability. This unit is hot-swappable, supporting redundancy configurations to ensure uninterrupted power during maintenance or hardware replacement.
The Juniper
PWR-MX960-4100-AC-S power supply is a critical component for ensuring optimal performance and reliability of the
MX960 Universal Edge Router. Its high power capacity, energy-efficient design, and support for redundancy make it ideal for enterprise and carrier-grade environments that demand robust, scalable solutions. With front-to-rear airflow, it integrates seamlessly into modern cooling infrastructures, guaranteeing both efficiency and performance.
Features:
- Reliability: Engineered for continuous operation with redundancy features.
- Scalability: Supports high-demand networks with 4100W output.
- Efficiency: Energy-saving design for reduced operating costs.
- Cooling Optimization: Front-to-rear airflow for dense environments.
- Compatibility: Specifically tailored for the MX960 Universal Edge Router.
Q: What is the significance of the “S” in the model name?
A: The “S” indicates a front-to-rear airflow design, suitable for environments with specific cooling requirements.
Q: Is this power supply compatible with other Juniper routers?
A: No, the PWR-MX960-4100-AC-S is designed exclusively for the Juniper MX960 Universal Edge Router.
Q: Can this power supply be used in redundant setups?
A: It supports hot-swappable redundancy, ensuring continuous power during maintenance or equipment failure.
Q: How does the PWR-MX960-4100-AC-S contribute to network reliability?
A: Its high output capacity, redundancy support, and hot-swappable design ensure reliable power delivery and minimal downtime.
Q: Is the unit energy-efficient?
A: Yes, it is engineered for energy efficiency, reducing operational costs while supporting high workloads.