What's New for Apollo 4200 Gen10
- 2U (28 LFF or 60 SFF) Chassis Options
- 3 Front Facing Drive Cages
- Optional rear drive up to 6 SFF/NVMe or 4 LFF
- (2) Intel Xeon 3rd Gen Scalable processors
- (24) 3200MT/s DDR4 DIMMs | 12 DIMMs per processor
- HPE Persistent Memory Support
- Supports up to 4.0TB of DDR4 memory
- Tri-Mode Controller Support
- OCP 3.0 Support
- (6) PCIe 4.0 slots
- HPE iLO 5
- NVMe U.3 Drives Support (Dirve Cage 3, 4, or 5)
- GPU Supported
The HPE Apollo 4200 Gen10 Plus Server combines cutting-edge technology with exceptional storage density and performance in a 2U form factor, purpose-built for data-intensive workloads. It supports up to three front-facing drive cages, accommodating 28 LFF or 60 SFF hot-plug drives, including NVMe, SAS, and SATA options. This configuration provides up to 560 TB of storage with 20 TB drives, scaling to over 11 PB in a 42U rack.
Powered by 3rd Generation Intel® Xeon® Scalable processors with up to 32 cores per CPU, the server delivers enhanced compute capabilities. It supports up to 24 DDR4 DIMM slots for a maximum of 4 TB of memory at 3200 MT/s. With six PCIe Gen4 slots, the system offers increased I/O bandwidth, enabling high-speed connectivity and expansion for accelerators, storage controllers, and networking.
The HPE Apollo 4200 Gen10 Plus introduces a balanced architecture, improved thermal efficiency, and support for select GPU and FPGA accelerators, ensuring it excels in modern workloads like AI, machine learning, big data analytics, and hyperconverged infrastructure.
CTO Configuration Support
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Chassis Options
24LFF Chassis System (P28700-B21)
Drive Cage Options
- 4LFF Drive Cage 3 (P28702-B21)
- 8SFF Drive Cage 3 (P28703-B21)
- 2SFF Drive Cage 4 (P28712-B21)
- 2LFF Drive Cage 4 (P44987-B21)
- 2SFF Drive Cage 5 (P28718-B21)
- 2LFF Drive Cage 5 (P44984-B21)
Dimensions: (H) x (W) x (D)
- 3.44 x 17.63 x 33.00 in
- 87.50mm x 448mm x 837.90 mm
Weight:
- Min: 41.45 lb (18.80 kg)
- Max: 106.61 lb (48.35 kg)
48SFF Chassis (P28701-B21)
Drive Cage Options
- 8SFF Drive Cage 3 (P28703-B21)
- 2SFF Drive Cage 4 (P28712-B21)
- 2SFF Drive Cage 5 (P28718-B21)
Dimensions: (H) x (W) x (D)
- 3.44 x 17.63 x 33.00 in
- 87.50mm x 448mm x 837.90 mm
Weight:
- Min: 37.95 lb (17.21 kg)
- Max: 92.16lb (42.00kg)
HPE Apollo 4200 Gen10 Plus Maximum Internal Storage
Storage |
Capacity |
Configuration |
Standard Cage 1/2 Hot Plug 24LFF SAS HDD |
480 TB |
24 x 20 TB |
Standard Cage 1/2 Hot Plug 24LFF SATA HDD |
480 TB |
24 x 20 TB |
Standard Cage 1/2 Hot Plug 24LFF SAS SSD |
38.4 TB |
24 x 1.6 TB |
Standard Cage 1/2 Hot Plug 24LFF SATA SSD |
184.32 TB |
24 x 7.68 TB |
Standard Cage 1/2 Hot Plug 48SFF SAS HDD |
115.2 TB |
48 x 2.4 TB |
Standard Cage 1/2 Hot Plug 48SFF SATA HDD |
96 TB |
48 x 2 TB |
Standard Cage 1/2 Hot Plug 48SFF SAS SSD |
734.4 TB |
48 x 15.3 TB |
Standard Cage 1/2 Hot Plug 48SFF SATA SSD |
368.64 TB |
48 x 7.68 TB |
Optional Cage 3 Hot Plug 4LFF SAS HDD |
80 TB |
4 x 20 TB |
Optional Cage 3 Hot Plug 4LFF SATA HDD |
80 TB |
4 x 20 TB |
Optional Cage 3 Hot Plug 4LFF SAS SSD |
6.4 TB |
4 x 1.6 TB |
Optional Cage 3 Hot Plug 4LFF SATA SSD |
30.72 TB |
4 x 7.68 TB |
Optional Cage 3 Hot Plug 8SFF SAS HDD |
19.2 TB |
8 x 2.4 TB |
Optional Cage 3 Hot Plug 8SFF SATA HDD |
16 TB |
8 x 2 TB |
Optional Cage 3 Hot Plug 8SFF SAS SSD |
122.4 TB |
8 x 15.3 TB |
Optional Cage 3 Hot Plug 8SFF SATA SSD |
61.44 TB |
8 x 7.68 TB |
Optional Cage 3 Hot Plug 8SFF NVMe SSD |
122.88 TB |
8 x 15.36 TB |
Optional Cage 4 Hot Plug 2SFF SAS HDD |
4.8 TB |
2 x 2.4 TB |
Optional Cage 4 Hot Plug 2SFF SATA HDD |
4 TB |
2 x 2 TB |
Optional Cage 4 Hot Plug 2SFF SAS SSD |
30.6 TB |
2 x 15.3 TB |
Optional Cage 4 Hot Plug 2SFF SATA SSD |
15.36 TB |
2 x 7.68 TB |
Optional Cage 4 Hot Plug 2SFF NVMe SSD |
30.72 TB |
2 x 15.36 TB |
Optional Cage 4 Hot Plug 2LFF SAS HDD |
40 TB |
2 x 20 TB |
Optional Cage 4 Hot Plug 2LFF SATA HDD |
40 TB |
2 x 20 TB |
Optional Cage 5 Hot Plug 2SFF SAS HDD |
4.8 TB |
2 x 2.4 TB |
Optional Cage 5 Hot Plug 2SFF SATA HDD |
4 TB |
2 x 2 TB |
Optional Cage 5 Hot Plug 2SFF SAS SSD |
30.6 TB |
2 x 15.3 TB |
Optional Cage 5 Hot Plug 2SFF SATA SSD |
15.36 TB |
2 x 7.68 TB |
Optional Cage 5 Hot Plug 2SFF NVMe SSD |
30.72 TB |
2 x 15.36 TB |
Optional Cage 5 Hot Plug 2LFF SAS HDD |
40 TB |
2 x 20 TB |
Optional Cage 5 Hot Plug 2LFF SATA HDD |
40 TB |
2 x 20 TB |
Cooling | up to 14 Fans
The HPE Apollo 4200 Gen10 Plus Server requires high-performance heatsinks (P41668-B21) whenever Intel Optane Persistent Memory, TDP higher than 165w, 256GB LRDIMMs, or GPUs are installed. Additionally, the optional Drive Cage 3 is supported only with Standard Heat Sink Kit.
The High-Performance Air Baffle Kit (P41660-B21) is required when using high-performance heatsinks to ensure proper airflow and cooling across the system. When Standard Heat Sink(s) is (are) installed, Standard Air Baffle Kit is required. When neither Drive Cage 3 nor High Performance Heat Sink is installed, Standard Moddle Air Baffle Kit is
required.
HPE OCP Thermal Enhancement Kit P28727-B21 This SKU is required for OCP options requiring better thermal condition. 5 dual-rotor fan modules come standard and up to 14 Fans with a 3rd drive cage and rear drive cages installed.
Memory | 24 DIMMs
The HPE Apollo 4200 Gen10 Plus Server features a robust memory architecture with support for up to 24 DDR4 DIMM slots, delivering a maximum capacity of 4 TB at speeds of up to 3200 MT/s when paired with 3rd Generation Intel® Xeon® Scalable processors. This system also supports Intel® Optane™ Persistent Memory 200 Series (PMem), which provides up to 4 TB of additional capacity per processor socket for memory-intensive applications. The combination of DDR4 and Optane PMem enables greater flexibility, scalability, and performance, making it ideal for workloads such as in-memory databases, big data analytics, and AI/ML applications. However, to utilize Optane PMem, balanced configurations with standard DDR4 memory are required, and limitations may apply when using higher TDP CPUs or populating Drive Cage 3
Rules and Limitations - Mixing of LRDIMM and RDIMM is not supported
- Mixing of x4 and x8 memory is not supported
- Mixing of 3DS memory and non-3DS memory is not supported
- 24LFF supports up to four 256GB LRDIMMs
- 48SFF supports up to six 256GB LRDIMMs
- 1P 3rd Gen Intel, max 4 Intel Optane Pmem
- 2P 3rd Gen Intel, max 8 Intel Optane Pmem
- Mixing of capacities of Persistent memory is not allowed.
- Pmem requires a High Performance Heat Sink (P41668-B21)
- Pmem not supported with Drive Cage 3
- Pmem requires an RDIMM or LRDIMM to be configured.
Drive Cage 3
Only 1 optional drive cage can be installed in Cage 3 location
Drive Cage 3 is an optional, front-facing drive bay that expands the storage capacity and flexibility of the HPE Apollo 4200 Gen10 Plus Server. Below are the key details, options, and limitations:
- 4 LFF SAS/SATA Drive Cage (P28702-B21) 24 LFF ONLY
- 8 SFF NVMe/SAS/SATA Drive Cage (P28703-B21)
Drive Cage 3 cannot be installed with: - CPUs over 165W TDP
- High-performance heatsinks
- Intel Optane Persistent Memory (PMem)
- 256GB LRDIMMs
- GPU accelerators
The 8SFF Drive Cage 3 has 6 smaller fans attched for cooling. The 4 LFF Drive Cage 3 does not have any fans.
Drive Cage 4
2SFF x4 Tri-Mode U.3 BC Primary Drive Cage 4 Kit |
Slot# | Technology | Bus Width | Connector Width | Slot Form Factor | Notes |
2 SFF x4 Tri-Mode U.3 BC x4 Tri-Mode U.3 BC Primary Drive Slots (Drive Cage 4) |
3 | PCIe 4.0 X16 | X16 | Full-height, half-length slot | Proc1 | |
HPE Tri-Mode Controllers are only supported for SFF Drive Cage 3, Cage 4, or Cage 5.
Drive Cage 5
2SFF x4 Tri-Mode U.3 BC Secondary Drive Cage5 and PCIe Tertiary Riser Kit |
Slot# |
Technology |
Bus Width |
Connector Width |
Slot Form Factor |
Notes |
2 SFF x4 Tri-Mode U.3 BC Secondary Drive Slots (Drive Cage 5) |
6 (Tertiary) |
PCIe 4.0 X16 |
X16 |
X16 |
Full-height, half-length slot |
Proc2 |
7 (Tertiary) |
PCIe 4.0 X8 |
X8 |
X8 |
Full-height, half-length slot |
Proc2 |
HPE Tri-Mode Controllers are only supported for SFF Drive Cage 3, Cage 4, or Cage 5.
HPE Apollo 4200 Gen10 Plus PCI Risers
This Server supports two riser options for the Primary Slot and two riser bundle options for the Secondary and Tertiary Slots, with one required for each. These risers enable up to six PCIe Gen4 slots, providing high-speed connectivity for storage controllers, accelerators, and networking cards. In dual-CPU configurations, the Secondary and Tertiary risers connect to the second processor, ensuring balanced performance and optimized PCIe lane utilization. This flexible design allows for full-height, half-length cards while delivering the bandwidth needed for NVMe storage, GPU accelerators, and other modern workloads.
PCIe Primary Riser Kit |
Slot# |
Technology |
Bus Width |
Connector Width |
Slot Form Factor |
Notes |
1 |
PCIe 4.0 |
X16 |
X16 |
Full-height, half-length slot |
Proc1 |
2 |
PCIe 4.0 |
X8 |
X8 |
Full-height, half-length slot |
Proc1 |
3 |
Power only |
Power only |
X8 |
Full-height, half-length slot |
|
PCIe Secondary and Tertiary Riser Kit |
Slot# |
Technology |
Bus Width |
Connector Width |
Slot Form Factor |
Notes |
4 (Secondary) |
PCIe 4.0 X16 |
X16 |
X16 |
Full-height, half-length slot |
Proc2 |
5 (Secondary) |
PCIe 4.0 X8 |
X8 |
X8 |
Full-height, half-length slot |
Proc2 |
6 (Tertiary) |
PCIe 4.0 X16 |
X16 |
X16 |
Full-height, half-length slot |
Proc2 |
7 (Tertiary) |
PCIe 4.0 X8 |
X8 |
X8 |
Full-height, half-length slot |
Proc2 |
Open Compute Project 3.0 (OCP)
The HPE Apollo 4200 Gen10 Plus Server includes a dedicated slot for an OCP 3.0 NIC adapter, offering enhanced networking capabilities in a compact form factor. For OCP cards requiring improved thermal conditions, the HPE OCP Thermal Enhancement Kit (P28727-B21) is mandatory. This kit ensures adequate cooling and optimal performance by integrating into the server's thermal architecture. When installed, the kit is positioned in the primary riser slot, directly above the OCP card, providing targeted airflow and maintaining thermal stability even under high workloads. This design allows seamless integration of high-performance OCP networking solutions while safeguarding system reliability.
M.2 Drive | 2 SATA or NVMe
HPE NS204i-p NVMe OS Boot Device
(P12965-B21)
The HPE NS204i-p NVMe OS Boot Device utilizes x2 PCIe Gen3 lanes with an x8 PCIe slot interface, offering a high-speed boot and storage solution. Designed for NVMe M.2 drives, it delivers exceptional performance, ensuring rapid OS loading and reduced boot times, making it ideal for applications requiring fast, reliable boot capabilities.
HPE Universal SATA AIC HHHL M.2 SSD Kit
(878783-K21)
In contrast, the HPE Universal SATA AIC HHHL M.2 SSD Kit supports SATA-based M.2 drives, providing a more cost-effective solution for applications with moderate performance requirements. This half-height, half-length adapter card is compatible with standard SATA M.2 SSDs and integrates seamlessly into the system for expanded storage or secondary boot needs.
HPE Computation and Graphics Accelerators
Since this server is so dense and has so many options. When a GPU is installed, a lot of other features are not supported. Below is a list of rules and requirements that must be followed for this Apollo 4200 Gen10 Plus server to support GPUs.
Limitations & Requirments - The Drive Cage 3 is not supported when this SKU is selected.
- This SKU can only be installed in PCIe Slot 6, 2nd processor is required.
- Processors over 165W are not supported when this SKU is selected.
- Memory DIMMs over 128GB are not supported.
- Intel DC Persistent Memory DIMMs are not supported.
- When GPU is installed, High-Performance Heat Sink Kits (P41668-B21) are required for processors
HPE Apollo 4200 Gen10 Plus Flex Slot your power!
All power supplies in a server should match. Mixing Power Supplies is not supported. HPE Flexible Slot (Flex Slot) Power Supplies share a common electrical and physical design that allows for hot plug, tool-less installation into HPE ProLiant Gen10 Performance Servers. Flex Slot power supplies are certified for high-efficiency operation and offer multiple power output options, allowing users to "right-size" a power supply for specific server configurations. This flexibility helps to reduce power waste, lower overall energy costs, and avoid "trapped" power capacity in the data center.