877713-002 HPE 750GB PCI-Express DS HHHL with tray SSD
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High-Endurance Workloads SSD
Manufacturer Information
- Brand Name: HPE
- Part Number: 877713-002
- Storage Type: Internal Solid-State Drive with NVMe protocol
Technical Information
- Total Storage: 750GB of Write-Intensive Flash Memory
- Card Format: HHHL
- Interface Standard: PCI-Express Gen3 x4 (NVMe)
- Utilizes NVMe architecture for ultra-fast data access
- Digitally Signed Firmware
Performance
- Endurance Rating: Up to 30 drive writes per day (DWPD)
- Random Read Speed (4KB): 575,000 IOPS
- Random Write Speed (4KB): 580,000 IOPS
Connectivity
- Connection Port: Single PCIe Gen3 x4 NVMe slot
- Supported Bay Type: HHHL PCIe expansion slot
Compatibility
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ProLiant DL360 Gen10 Series
- DL360 Gen10 Base
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ProLiant DL385 Gen10 Series
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HPE 877713-002 750GB SSD Overview
The HPE 877713-002 750GB Write-Intensive PCI-Express X4 (nvme) PCI-E Card (HHHL) with digitally signed firmware and tray is a purpose-built solid state drive engineered to meet the demanding write-heavy workloads of modern data centers. Designed as a half-height, half-length (HHHL) PCIe add-in card, this 750GB NVMe SSD delivers a dense combination of capacity, endurance and low latency while integrating HPE-validated firmware to ensure compatibility with ProLiant and other HPE server platforms. This category focuses on the product lineage, technical fitment, operational benefits and deployment patterns that make the HPE 877713-002 and its family relevant for enterprise storage architects, system integrators, and procurement teams seeking write-optimized flash media that integrates seamlessly into HPE ecosystems.
Form Factor and Interface
At the physical layer the HPE 877713-002 is packaged as a half-height, half-length PCI-E card, making it compatible with standard server expansion slots without occupying full-length space. The NVMe interface over PCIe x4 provides a direct, low-latency path to the host CPU and memory subsystem; NVMe eliminates many of the overheads of legacy SAS/SATA controllers, enabling higher IOPS per watt and significantly reduced queue latency. For systems where drive bays are scarce or where direct host-attached flash is preferred for cache, log, or database acceleration, the HHHL PCIe form factor is an ideal deployment choice. When evaluating the HPE 877713-002 for infrastructure upgrades, planners should weigh the space efficiency and bandwidth profile of PCIe x4 NVMe against other form factors to maximize rack density and application performance.
Write-Intensive
The designation “write-intensive” is central to this category: the drive architecture, controller firmware and NAND selection emphasize sustained write performance and endurance. Write-intensive SSDs are optimized to maintain throughput under heavy sequential and random write workloads, making them suitable for logging, real-time analytics, metadata services, and high-transaction databases. The HPE 877713-002 targets organizations that need predictable performance for continuous write operations and minimizes write amplification through firmware-level wear-leveling, background garbage collection, and optimized over-provisioning strategies. For storage architects, choosing write-intensive media reduces the risk of performance degradation in production windows where write pressure is highest.
Digitally Signed Firmware
Digitally signed firmware is an important differentiator for enterprise storage components. A digitally signed firmware image ensures the authenticity of the drive’s operational code, reducing the risk of tampering or unauthorized firmware modifications that could compromise data integrity or server stability. For HPE customers, drives like the 877713-002 with HPE-signed firmware adhere to platform compatibility matrices and facilitate firmware management through HPE management suites. This integrated firmware approach simplifies updates, provides traceability, and reduces the administrative burden when validating firmware revisions across large fleets of servers during maintenance windows. System administrators benefit from predictable firmware behavior and vendor-backed support when diagnosing storage-related incidents.
Firmware
Maintaining current firmware levels is essential for security patches, performance improvements and interoperability fixes. The digital signing model enables controlled distribution of firmware through HPE update channels and management tools, allowing administrators to schedule updates with confidence. When planning firmware updates, teams should follow rolling update strategies to avoid synchronous reboots or service disruption and should test updates in a staging environment to validate telemetry, SMART metrics and application-level I/O patterns. The presence of digitally signed firmware in the HPE 877713-002 simplifies auditability and supports enterprise change management requirements.
Capacity
The 750GB capacity point strikes a balance between usable capacity, performance, and cost for many enterprise use cases. In environments where capacity per slot must be balanced against endurance demands, a 750GB write-intensive drive provides substantial usable space without diluting endurance characteristics through overly large single-device capacities. The capacity supports sizable log stores, local caching layers and high-performance scratch volumes. For deployments that require larger aggregate capacity, multiple NVMe cards can be deployed in parallel or paired with high-capacity HDD tiers in hybrid arrays, creating a layering effect that keeps hot write streams on resilient flash while offloading cold data to economical mechanical storage.
Performance
NVMe media such as the HPE 877713-002 deliver significantly higher IOPS and lower latency compared with legacy interfaces. The PCIe x4 link provides a wide data path for small random I/O, enabling consistent low-latency responses under high queue depths. For transactional workloads, latency predictability is as important as peak IOPS; write-intensive NVMe drives are tuned to provide stable tail latency even under sustained heavy write pressure. Throughput on sequential operations remains strong, contributing to accelerated data ingest and efficient checkpointing. When architecting storage stacks, pairing the HPE 877713-002 with appropriately configured I/O schedulers, NVMe queues, and host bus adapters will unlock its full throughput potential.
Compatibility
Part numbers like HPE 877713-002 are validated against HPE server platforms and integrated into HPE’s management stack for seamless lifecycle management. Compatibility with server firmware, BIOS settings, and HPE management tools simplifies installation and reduces time-to-service. Administrators should consult HPE compatibility matrices and release notes when integrating the 877713-002 into mixed-generation server fleets. Proper slot selection, BIOS NVMe configuration, and host OS NVMe driver support are key considerations for achieving full functionality, including health telemetry, secure firmware updates and vendor-specific features.
Deployment
The HPE 877713-002 fits naturally into hybrid storage tiers where flash is used to absorb write-heavy operations and mechanical disks provide long-term capacity at lower cost. In caching roles, NVMe cards accelerate writes and reads for active datasets, reducing response times and improving application throughput. Flash-first architectures that privilege NVMe for primary persistence can simplify application stacks by keeping hot datasets on high-performance media while background tasks move cold data to lower-cost tiers. This drive’s write-optimized design supports flash-first architectures by providing endurance characteristics tailored to heavy write streams.
Choosing the Right Fit
Select the HPE 877713-002 when your workloads demand predictable, sustained write performance in a compact PCIe form factor and when integration with HPE server management and firmware update ecosystems is a priority. This part number is particularly compelling for teams that require the assurance of Digital Signed Firmware, high endurance for write-heavy workloads, and the direct-attached performance advantages of NVMe over PCIe x4. If your environment relies on HPE-certified components and you need to reduce latency for transactional layers, this card is engineered to meet those exact needs.
