CANNON PRO 2500W (FSP2500-57APB) 2500W PS2/ATX Industrial AC/DC Switching Power Supply
- Technology
- IPC industrial computer power supplies
- Partner
- FSP Protek
The FSP2500-57APB Cannon Pro 2500W is built for power-intensive computing environments that require stable, continuous high-output performance. It complies with the ATX12V v3.1 design guide and includes four native PCIe Gen5 (12V-2×6) connectors for modern high-power GPUs and accelerators. With 80 Plus Platinum efficiency at 230 V, it helps reduce wasted energy and heat generation even under heavy load. The unit is designed for 200–240 V AC input, making it particularly suitable for industrial installations, data centres, and other high-voltage environments. Despite its output capacity, it remains within a standard PS/2 ATX form factor measuring 200 × 150 × 86 mm. A large 135 mm fan provides effective thermal management while helping keep operating noise controlled. Multiple international safety and EMC certifications support dependable deployment across global markets. Typical use cases include AI servers, multi-GPU workstations, rendering systems, mining rigs, and other advanced platforms that demand robust 24/7 power delivery.

Range features
A high level overview of what this range offers
- ATX12V v3.1 compliance: Supports the latest ATX power standard for compatibility with modern motherboards and high-power components.
- Four PCIe Gen5 (12V-2×6) connectors: Natively powers up to four next-generation GPUs or accelerators without relying on adapters.
- 80 Plus Platinum efficiency: Delivers high conversion efficiency at 230 V to reduce waste heat and lower operating costs.
- 200–240 V AC input range: Optimised for high-voltage infrastructure commonly used in industrial and data centre environments.
- Single 12 V rail design: Makes the full power budget available on one rail for simplified high-load system integration.
- Active PFC around 0.99: Improves power factor and input current quality for demanding electrical environments.
- 135 mm cooling fan: Provides efficient thermal control with lower noise compared with smaller high-speed fans.
- Global safety certifications: Supports international deployment with approvals including CB, TUV, UL/cUL, CE, FCC, BSMI, BIS, CCC, KC, and UKCA.
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for CANNON PRO 2500W (FSP2500-57APB) 2500W PS2/ATX Industrial AC/DC Switching Power Supply
FAQs
for CANNON PRO 2500W (FSP2500-57APB) 2500W PS2/ATX Industrial AC/DC Switching Power Supply
This power supply is intended for extremely power-hungry systems such as multi-GPU workstations, AI training servers, rendering nodes, mining rigs, and specialised industrial PCs. It provides substantial power headroom for configurations with very high combined component demand.
No. This model is designed for 200–240 V AC input only. It is not intended to operate properly from standard 110–115 V mains power.
The unit measures 200 × 150 × 86 mm, which corresponds to the PS/2 ATX form factor. It fits cases that support standard ATX PSUs, but its 200 mm depth means you should confirm chassis clearance before installation.
It includes four PCIe Gen5 (12V-2×6) connectors. These are used to power the latest high-end graphics cards and accelerators with native high-power connections, helping avoid external adapter solutions.
The FSP2500-57APB carries an 80 Plus Platinum efficiency rating at 230 V input. Higher efficiency means less energy is lost as heat, which helps improve thermal performance and reduce electricity waste during sustained operation.
Yes. It includes multiple international safety and compliance certifications such as UL/cUL, CE, TUV, CCC, BSMI, BIS, UKCA, KC, CB, and FCC, supporting deployment across major global markets.
Yes. This industrial-grade power supply is designed for continuous high-load operation and is suitable for demanding 24/7 applications, provided the system has appropriate airflow and thermal management.
While the product information does not explicitly detail excursion figures, its ATX12V v3.1 compliance indicates it is designed for modern high-power hardware and associated transient load behaviour expected in current ATX platforms.







