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Vendor:Cisco
Cisco UCSX-CPU-A9224 | Server CPU | 2.5 GHz | 64MB L3 cache
Efficient server processor for general-purpose virtualization, application hosting, and infrastructure services. Delivers dependable performance with balanced clock speed and cache capacity for mainstream workloads. -
Vendor:Cisco
Cisco UCSX-CPU-A9184X | Server CPU | 3.55 GHz | 768MB L3 cache
Enterprise-grade processor built to accelerate memory-intensive analytics and database workloads with ultra-large L3 cache capacity. Ideal for scale-up and virtualized environments needing consistent low-latency performance. -
Vendor:Cisco
Cisco UCSX-CPU-A9175F | Server CPU | 16-core | 320W TDP | 512MB L3 | DDR5-6000
UCSX-CPU-A9175F
Vendor:CiscoCisco UCSX-CPU-A9175F | Server CPU | 16-core | 320W TDP | 512MB L3 | DDR5-6000
High-performance server processor designed for demanding virtualization, database, and analytics workloads. Delivers strong per-core performance with a large L3 cache footprint and high-speed DDR5 memory support. -
Vendor:Cisco
Cisco UCSX-CPU-A9174F | 9174F | 4.1 GHz | 256MB L3 | High-frequency ‘F’ | DDR5 | SP5
UCSX-CPU-A9174F
Vendor:CiscoCisco UCSX-CPU-A9174F | 9174F | 4.1 GHz | 256MB L3 | High-frequency ‘F’ | DDR5 | SP5
Frequency-optimized ‘F’ server CPU for UCS platforms, designed for high per-core performance and large L3 cache capacity to accelerate latency-sensitive workloads like trading apps and database front-ends. -
Vendor:Cisco
Cisco UCSX-CPU-A9135 | 9135 | 16C/32T | 3.65 GHz | 64MB L3 | 200W TDP | DDR5-6000 | SP5
UCSX-CPU-A9135
Vendor:CiscoCisco UCSX-CPU-A9135 | 9135 | 16C/32T | 3.65 GHz | 64MB L3 | 200W TDP | DDR5-6000 | SP5
High-frequency 16-core server CPU for UCS environments requiring elevated clocks with consistent throughput. Combines strong single-thread performance with DDR5 bandwidth for demanding enterprise or NFV workloads. -
Vendor:Cisco
Cisco UCSX-CPU-A9124 | 9124 | 3.0 GHz | 64MB L3 | DDR5 | SP5
Server CPU module delivering strong per-core performance with ample L3 cache and DDR5 support for SP5-based UCS platforms. Suitable for mixed enterprise workloads and virtualized environments. -
Vendor:Cisco
Cisco UCSX-CPU-A9115 | 9115 | 16C/32T | 2.6 GHz | 64MB L3 | 125W TDP | DDR5-6000 | SP5
UCSX-CPU-A9115
Vendor:CiscoCisco UCSX-CPU-A9115 | 9115 | 16C/32T | 2.6 GHz | 64MB L3 | 125W TDP | DDR5-6000 | SP5
16-core server CPU module for UCS deployments, tuned for balanced performance and efficiency with robust cache and DDR5 bandwidth on the SP5 platform. Ideal for virtualization hosts, general-purpose compute, and scale-out workloads. -
Vendor:Cisco
Cisco UCSX-CPU-A9015 | 9015 8-core CPU | 125W TDP | 64MB cache | DDR5-6000 MT/s
UCSX-CPU-A9015
Vendor:CiscoCisco UCSX-CPU-A9015 | 9015 8-core CPU | 125W TDP | 64MB cache | DDR5-6000 MT/s
Server-grade processor option delivering balanced performance and efficiency for compatible platforms. Provides 8 cores with ample cache capacity and DDR5 memory support to accelerate virtualized and cloud-native workloads. Ideal for scale-out nodes or mixed-use deployments. -
Vendor:Cisco
Cisco UCSX-C-M7-HS-R | X210c M7 Compute Node Rear CPU Heatsink | rear position | passive cooling | for dual-CPU configs
Rear-position CPU heatsink built for the X210c M7 compute node. Essential for the second processor in dual-CPU configurations, this passive unit relies on chassis airflow to maintain proper CPU temperatures. -
Vendor:Cisco
Cisco UCSX-C-M7-HS-F | X210c M7 Compute Node Front CPU Heatsink | front position | passive cooling | primary CPU slot
Front-position CPU heatsink designed for the X210c M7 compute node. This passive assembly cools the primary processor using directed chassis airflow, ensuring consistent performance and system reliability. -
Vendor:Cisco
Cisco UCSX-C-M6-HS-R | X210c M6 Compute Node Rear CPU Heatsink | rear position | passive cooling | for dual-CPU configs
Rear-position CPU heatsink engineered for the X210c M6 compute node. Required when populating the second processor, this passive heatsink leverages chassis airflow to maintain thermal compliance and stability under sustained load. -
Vendor:Cisco
Cisco UCSX-C-M6-HS-F | front CPU heat sink | for 210C M6 compute node | passive fin-stack cooling | socket 1/front position
Thermal solution for the front CPU position in a 210C M6 compute node, restoring optimal cooling performance when installing or replacing a processor. Follow platform installation guidelines for torque and thermal interface application. -
Vendor:Cisco
Cisco UCSX-9508-RBLK-D | UCS X9508 | FEM-bay cooling module | hot-swap fan assembly | chassis-telemetry ready
UCSX-9508-RBLK-D
Vendor:CiscoCisco UCSX-9508-RBLK-D | UCS X9508 | FEM-bay cooling module | hot-swap fan assembly | chassis-telemetry ready
Cooling module designed for the UCS X9508 chassis FEM bay. Ensures consistent airflow across rear IO/FEM components with hot-swap, tool-less service and integration to chassis health telemetry. -
Vendor:Cisco
Cisco UCSX-9508-RBLK | UCS X9508 | FEM-slot active cooling module | directed airflow | hot-swappable fan unit
UCSX-9508-RBLK
Vendor:CiscoCisco UCSX-9508-RBLK | UCS X9508 | FEM-slot active cooling module | directed airflow | hot-swappable fan unit
Active cooling module for the UCS X9508 chassis FEM (Fabric/Expansion Module) bay. Provides directed airflow to FEM/IO areas to maintain optimal thermals. Hot-swappable, tool-less service design integrates with chassis monitoring. -
Vendor:Cisco
Cisco UCSX-9508-OCP-LINF | UCS X9508 chassis for OCP NIC 3.0 Large inferencing | 8-slot compute | high-power cooling headroom | fabric-ready
Preconfigured UCS X9508 modular chassis optimized for OCP NIC 3.0 Large inferencing adapters and accelerator-heavy workloads, providing ample airflow and power headroom along with fabric-ready I/O. Compute nodes, accelerators, OCP NICs, fabric modules, and power supplies are sold separately. -
Vendor:Cisco
Cisco UCSX-9508-M6-FREE | UCS X9508 modular blade chassis | 8-slot compute | front-to-back airflow | hot-swap PSU/fan bays | fabric-ready
Enterprise modular chassis supporting up to eight compute nodes with front-to-back airflow, hot-serviceable power and cooling, and fabric-ready I/O for converged Ethernet/SAN connectivity. Compute nodes, fabric modules, and power supplies are sold separately to let you build precisely to workload requirements.
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