Juniper Networks
DC PS 3000W AFO FRONT-TO-BACK AIRFLOW
Out of Stock
Juniper DC PS 3000W AFO Power Supply | Front-to-Back Airflow, Enterprise
Juniper Networks
MPN: JNP-3KW-DC-AFO-BB
$0.01
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 3,000 W output power
- DC power supply architecture
- Front-to-back airflow design
- Juniper Networks compatibility
- 1-year limited warranty
- Power supply product type
- Designed for supported Juniper chassis
- Deliver stable power to supported Juniper systems with 3,000 W DC output
Keep critical Juniper platforms powered with a 3,000 W DC supply built for data center environments that depend on predictable thermal flow. The front-to-back airflow design supports rack-level cooling strategies, helping align the power subsystem with the chassis airflow path instead of fighting it. That matters in tightly packed rows where heat management can affect service stability and maintenance windows.
This power supply is intended for teams that need dependable DC power delivery in production infrastructure, not a generic replacement part. The 3,000 W output gives room for demanding configurations, while the Juniper-specific design helps ensure fit and integration within supported systems. For operators standardizing on DC power architectures, it offers a clean path to maintain uptime without compromising airflow planning.
Choose this model when the cost of a mismatch is higher than the cost of the right part. It is built for environments where power continuity, thermal alignment, and platform compatibility are non-negotiable.
Ideal For
- Powering Juniper network systems in enterprise data centers
- Replacing a failed DC PSU in a production rack
- Supporting dense chassis deployments with front-to-back cooling
- Standardizing spare parts for Juniper infrastructure teams
Why This Product
- 13,000 W output for demanding Juniper deployments
- 2Front-to-back airflow for aligned rack cooling
- 3DC architecture for infrastructure environments
- 4Juniper-specific fit for supported systems