APC
INROW ATS FOR 48VDC
Out of Stock
APC ACAC10058 InRow ATS for 48 VDC | In-Row Cooling, Power
APC
MPN: ACAC10058
$1,801.13$2,620.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- In-row automatic transfer switch
- 48 VDC compatibility
- APC infrastructure accessory
- Designed for cooling continuity
- Supports power source transfer
- Intended for in-row deployment
- Preserve cooling continuity with an in-row ATS designed for 48 VDC systems
- Support power path transitions in critical cooling environments
Keep in-row cooling infrastructure available when power conditions change with APC’s InRow ATS for 48 VDC. This accessory is intended for environments that depend on stable DC-backed operation and need a transfer path that supports continuity rather than interruption. In dense IT spaces, even brief power instability can affect thermal performance; an ATS helps reduce that risk.
The ACAC10058 is a practical fit for infrastructure teams designing around 48 VDC power architecture. It belongs in systems where cooling equipment must remain ready through source changes, maintenance events, or power path transitions. That makes it especially relevant in facilities that prioritize controlled uptime and predictable thermal behavior.
For buyers comparing options, the value is in specificity. This is not a general-purpose power accessory; it is built for in-row use with 48 VDC systems, which makes it easier to align with the electrical design of the cooling platform. When cooling continuity is part of the uptime strategy, the right transfer component matters.
Ideal For
- Maintaining power continuity for in-row cooling systems
- Supporting DC-backed data center thermal infrastructure
- Reducing interruption risk during power source transitions
- Integrating into 48 VDC cooling architectures
Why This Product
- 1Built for 48 VDC systems rather than general AC accessories
- 2Supports cooling continuity during power source changes
- 3Designed specifically for in-row infrastructure
- 4Helps reduce interruption risk in critical thermal environments


