SK hynix

H5AN8G8NAFR-UHI - 8Gb DDR4-2400 x8 SDRAM | SK Hynix

MPN: H5AN8G8NAFR-UHI ✓ Active
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1.2 V Vdss 78-ball FBGA Package DDR4 SDRAM Memory
From $4.1 USD / Unit
MOQ: 1 |
Price updated: 2026-09-04
Volume Pricing
Qty Unit Price Extended
1 $6.5 $6.50
10 $5.95 $59.50
100 $5.4 $540.00
500 $4.95 $2,475.00
1,000 $4.5 $4,500.00
3,000 $4.1 $12,300.00
ℹ️ All prices are in USD

Drop-in alternatives for H5AN8G8NAFR-UHI — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

H5AN8G8NAFR-UHC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA
DDR4 SDRAM · 8 Gbit · 1G x 8 · 2400 Mbps/pin (PC2400) · 1.2 V (DDR4 standard) · CMOS, synchronous · FBGA-78 (PBGA78) · Surface Mount

✓ In Stock

Contact for price

View Datasheet →

H5AN8G8NAFR-RDC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA
DDR4 SDRAM · 8 Gbit · 1G x 8 (x8) · DDR4 (Double Data Rate 4) · -RDC (DDR4-2666 class) · 2666 MT/s (per -R speed grade suffix) · 1.2 V · 1.2 V

✓ In Stock

$2.95 / Unit

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H5AN8G8NAFR-PBC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA
DDR4 SDRAM · 8 Gb · 1G x 8 · 1.2 V · FBGA-78 · Surface Mount · [DATA_NEEDED: speed grade / data rate] · DDR4 (double data rate, synchronized to clock)

✓ In Stock

$2.2 / Unit

View Datasheet →

H5AN8G8NAFR-TFC

✅ Drop-In ⚠️ 参数待验证
📦 78-ball FBGA
Same 8Gb x8 DDR4 family, TFC speed bin rated DDR4-2666 (faster than UHI 2400, +11% data rate)

📋 Reference alternative (not in catalog)

H5AN8G8NMFR-TFC

✅ Drop-In
📦 78-ball FBGA
M-die variant of 8Gb x8 DDR4 in same package family, DDR4-2666 speed grade; JEDEC DDR4 interface compatible

📋 Reference alternative (not in catalog)

H5AN8G8NAFR-UHI Maximum Ratings & Electrical Characteristics

Memory Type DDR4 SDRAM
Memory Density 8 Gb
Organization 1G x 8
Data Rate DDR4-2400 (PC2400), 1200 MHz clock
Supply Voltage 1.2 V
Interface DDR4 (JEDEC-class)
Package 78-ball FBGA
Mounting Type Surface Mount
Lead Free Yes
Halogen Free Yes
RoHS Status Compliant
Technology CMOS
Application Main memory (high density, high bandwidth)

H5AN8G8NAFR-UHI 78-ball fbga Pin Configuration Guide

Complete pinout information for H5AN8G8NAFR-UHI (78-ball fbga package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.

78-ball fbga package pinout diagram for H5AN8G8NAFR-UHI

No detailed pinout data available for H5AN8G8NAFR-UHI.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for H5AN8G8NAFR-UHI Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

H5AN8G8NAFR-UHI is suitable for 6 applications: Desktop and Workstation Main Memory, Server and Data Center Memory Modules, Embedded Computing and Industrial Boards, Networking and Telecom Equipment, Test and Measurement Instruments, Automotive and Rugged Embedded Systems.

🖥️

Desktop and Workstation Main Memory

The H5AN8G8NAFR-UHI serves as a main-memory building block for desktop PCs and workstations, where its 8Gb x8 density allows an 8GB module from just eight devices. Its DDR4-2400 rate (1200 MHz, PC2400) matches mainstream desktop controller clocks, delivering high bandwidth without the cost of premium speed bins. The 1.2V supply reduces module power compared to DDR3, and the 78-ball FBGA package fits standard UDIMM/SODIMM land patterns. Designers should length-match data groups and set controller timing to the UHI speed-grade table from the SK Hynix datasheet for reliable operation across temperature.

🖥️

Server and Data Center Memory Modules

In server platforms, the H5AN8G8NAFR-UHI populates RDIMM and LRDIMM main-memory subsystems where capacity per module drives total system memory. The 8Gb density per die and x8 organization enable high-capacity modules with byte-wide chip-select granularity, and its JEDEC-class DDR4 interface ensures interoperability with server memory controllers. The 1.2V operation keeps per-module power manageable at scale, important for data center energy budgets. Verify the UHI speed grade against the platform's supported DDR4-2400 timing set, and confirm ECC-capable controller configuration since server designs typically run x8 devices with in-chip ECC or controller-side correction.

🏭

Embedded Computing and Industrial Boards

Embedded x86 and ARM platforms with DDR4 controllers use the H5AN8G8NAFR-UHI for 4-8GB soldered-down memory. The x8 organization simplifies routing on four-layer to eight-layer embedded boards, and the FBGA-78 footprint is standard across DDR4 x8 layouts, enabling BOM flexibility. Its DDR4-2400 operation covers most industrial SoC maximums, and the 1.2V rail integrates easily with embedded PMICs. Industrial designs should confirm the operating-temperature suffix requirements and derate timing margins for extended temperature ranges, consulting the SK Hynix datasheet IDD and AC timing tables for the UHI grade.

🌐

Networking and Telecom Equipment

Routers, switches, and 5G telecom line cards require large DRAM buffers for packet processing and deep packet inspection. The H5AN8G8NAFR-UHI provides 8Gb per device with DDR4-2400 bandwidth suited to high-throughput buffering, and its x8 organization supports the byte-wide memory buses common in network processor designs. The 1.2V supply limits board-level power in densely populated line cards. Designers should account for sustained high utilization by using the datasheet worst-case IDD currents for power supply sizing, and ensure signal-integrity compliance with DDR4 length matching on high-layer-count backplane-adjacent boards.

🔧

Test and Measurement Instruments

Oscilloscopes, logic analyzers, and signal generators use large DDR4 arrays for deep acquisition memory. The H5AN8G8NAFR-UHI's 8Gb density and 2400 Mbps transfer rate support long record lengths and fast streaming, while the 1.2V rail keeps instrument internal power budgets under control. Multiple x8 devices can be banked in parallel for wider buses and higher aggregate bandwidth. Instrument designers should implement controller calibration of read/write leveling (per DDR4 requirements) and verify UHI timing compliance across the instrument's full operating temperature range per the SK Hynix datasheet AC parameters.

🚗

Automotive and Rugged Embedded Systems

Infotainment, ADAS domain controllers, and rugged gateways increasingly use DDR4 for large working memory. The H5AN8G8NAFR-UHI provides 8Gb in a compact 78-ball FBGA, allowing multi-gigabyte soldered memory within tight board space. Its DDR4-2400 rate supports camera, radar-fusion, and navigation workloads, while the 1.2V supply suits the automotive low-power rail architecture. For automotive deployments, confirm the required operating-temperature grade suffix and any AEC-Q100 qualification requirements, since suffix variants carry different temperature ranges per the SK Hynix ordering-information table in the datasheet.

What is the H5AN8G8NAFR-UHI?
The H5AN8G8NAFR-UHI is an 8Gb DDR4 SDRAM from SK Hynix organized as 1G x 8, operating at DDR4-2400 (PC2400) on a 1.2V supply in a 78-ball FBGA package. According to the SK Hynix datasheet, the H5AN8G8NAFR family is designed for main-memory applications that require large memory density and high bandwidth, using CMOS DRAM technology with lead-free and halogen-free construction.
What is the data rate and speed grade of H5AN8G8NAFR-UHI?
The H5AN8G8NAFR-UHI operates at DDR4-2400, corresponding to a PC2400 classification and a 1200 MHz memory clock. Distributor Censtry lists the part as DDR4 1Gx8 PC2400. The -UHI suffix encodes the speed grade and temperature range; faster suffixes in the same family (such as TFC at DDR4-2666) exist but the UHI grade is rated for 2400 Mbps per pin operation.
What package does the H5AN8G8NAFR-UHI use?
The H5AN8G8NAFR-UHI is packaged in a 78-ball Fine-Pitch Ball Grid Array (FBGA), the standard surface-mount package for 8Gb DDR4 x8 components. AB Sunshine Electronics lists it as FBGA-78 at 1.2V. This package provides low-inductance ball connections needed for signal integrity at 1200 MHz operation and is compatible with standard DDR4 x8 land patterns used on DIMM and embedded PCB designs.
Where to buy H5AN8G8NAFR-UHI online?
The H5AN8G8NAFR-UHI is available through broker distributors including Win Source, Censtry, IBS Electronics, Newyang, and Gateway America, which reports 2,000 units in stock with same-day shipping. Pricing is typically quote-based (RFQ) rather than fixed-price for memory ICs; on XAIPART, request a quote with volume breaks at 10/100/500/1000/3000 pcs. All pricing references are as of 2026-09-04 and should be reconfirmed at order time.
What is the price of H5AN8G8NAFR-UHI?
The H5AN8G8NAFR-UHI is primarily sold on an RFQ basis by broker distributors such as Win Source, Censtry, and Octopart-listed suppliers; no fixed catalog price is published. As of 2026-09-04, indicative volume pricing on XAIPART starts at approximately $6.50 unit quantity, decreasing to about $4.10 at 3000-piece quantities. Contact sales for a firm quote, since DRAM spot pricing fluctuates with the commodity memory market.
Is H5AN8G8NAFR-UHI in stock and what is the lead time?
Yes, multiple distributors report stock for the H5AN8G8NAFR-UHI as of 2026-09-04. Gateway America maintains 2,000 units in stock with same-day shipping and 180-day warranty traceability; LimChip lists 3,000 pcs; Censtry lists new and original stock with 180-day warranty. Typical lead time from in-stock distributors is 1-3 days; RFQ-based orders range from days to weeks depending on volume and traceability requirements.
What is the difference between H5AN8G8NAFR-UHI and H5AN8G8NAFR-UHC?
Both parts are identical 8Gb DDR4 x8 SDRAMs in the same 78-ball FBGA package; they differ only in speed-grade suffix. The -UHI grade is specified for DDR4-2400 operation, while the -UHC grade supports a different (higher-performance) speed bin with corresponding CAS latency and timing parameters. Always verify the exact timing table in the SK Hynix datasheet for the suffix you select, since memory controllers must support the programmed CL and tRCD/tRP values.
H5AN8G8NAFR-UHI vs H5AN8G8NMFR-TFC - which is better?
For a DDR4-2400 design, the H5AN8G8NAFR-UHI is sufficient and typically lower cost. The H5AN8G8NMFR-TFC is an 8Gb DDR4 x8 device in the same FBGA family but in the TFC speed grade rated for DDR4-2666, suiting 2666-class platforms. Both are JEDEC-compatible, so the choice depends on your memory controller clock: run 2400 for the UHI, 2666 for the TFC. Downclocking a faster grade also works, at some cost premium.
What is the best drop-in replacement for H5AN8G8NAFR-UHI?
The best drop-in replacement is another H5AN8G8NAFR family suffix from SK Hynix - such as H5AN8G8NAFR-UHC, H5AN8G8NAFR-RDC, or H5AN8G8NAFR-PBC - all in the identical 78-ball FBGA package with the same 8Gb x8 organization and 1.2V supply. These differ only in speed grade and temperature range, so they are pin-to-pin compatible on the same PCB footprint. Verify the target speed grade meets your controller timing before substituting.
What is the best SK Hynix equivalent within the H5AN8G8NAFR family?
The closest equivalents are same-family suffix variants: H5AN8G8NAFR-UHC (faster speed bin, same package), H5AN8G8NAFR-RDC and H5AN8G8NAFR-PBC (different speed/temperature bins). All are 8Gb DDR4 x8, 1.2V, 78-ball FBGA, and pin-to-pin compatible with the UHI. A cross-brand equivalent frequently listed is the H5AN8G8NMFR-TFC (also 8Gb x8 DDR4 in the same package family) for higher-speed designs, sourced from distributor comparison listings.
When should I choose H5AN8G8NAFR-UHI over faster grades?
Choose the H5AN8G8NAFR-UHI when your memory controller runs at DDR4-2400 or below, which covers most embedded, industrial, and cost-sensitive server designs. There is no benefit to paying for a faster speed grade (such as UHC or TFC at 2666) if the controller clock is 1200 MHz; conversely, if your platform supports DDR4-2666 or above, select the faster suffix to avoid a bandwidth bottleneck. Balance cost against the controller's supported timing table before finalizing the BOM.
Is H5AN8G8NAFR-UHI suitable for embedded x8 memory designs?
Yes. The x8 organization of the H5AN8G8NAFR-UHI suits controllers and embedded processors that use byte-wide DDR4 interfaces, and its 8Gb density allows 8GB of memory from just eight devices. The 1.2V supply keeps power low, and the 78-ball FBGA package fits standard DDR4 layouts. Distributor LimChip notes the part serves both main-memory and embedded use, provided your SoC supports DDR4-2400 timing parameters.
Where to download the H5AN8G8NAFR datasheet PDF?
The SK Hynix H5AN8G8NAFR datasheet PDF is available from mirror sites such as Alldatasheet (document reference 1424923, approximately 821 KB / 45 pages covering the H5AN8G4NAFR, H5AN8G8NAFR, and H5AN8G6NAFR families) and DigChip. The authoritative source is always the SK Hynix official website; download from the manufacturer when possible to ensure you have the latest revision covering the -UHI speed-grade suffix.
What is the ball map / pinout location for the H5AN8G8NAFR-UHI?
The complete 78-ball FBGA ball map for the H5AN8G8NAFR-UHI is defined in the SK Hynix DDR4 SDRAM datasheet, in the package ballout section, following the JEDEC DDR4 x8 78-ball standard ball assignment. The map includes DQ0-DQ7, DQS//DQS pairs, DM, bank address, row/column address, and power/ground balls. Obtain the datasheet PDF from Alldatasheet or the SK Hynix website to get the exact ball coordinates A1 through the last row.
What are the key specifications of H5AN8G8NAFR-UHI engineers should know?
The H5AN8G8NAFR-UHI is an 8Gb DDR4 SDRAM, x8 organization (1G x 8), DDR4-2400 data rate at 1200 MHz, 1.2V supply, in a 78-ball FBGA package, built on CMOS technology with lead-free and halogen-free (RoHS) construction. It targets main-memory applications requiring high density and bandwidth. Engineers must verify the UHI speed grade's CAS latency and timing set against their memory controller, and apply DDR4 power integrity and length-matched routing practices.
Is the H5AN8G8NAFR-UHI RoHS compliant and lead-free?
Yes. According to the Alldatasheet record of the SK Hynix H5AN8G8NAFR datasheet, the device is lead-free and halogen-free and RoHS compliant. Distributor listings for the -UHI suffix confirm new and original manufacturer stock. For REACH, AEC-Q100 qualification, and conflict-minerals declarations, consult SK Hynix product environmental documentation, as these declarations are published separately from the datasheet.
How much power does an 8Gb DDR4 x8 chip like the H5AN8G8NAFR-UHI consume?
Power depends on operating frequency, activity, and termination settings; the exact IDD currents for the UHI grade are specified in the SK Hynix datasheet tables. As a reference class, 8Gb DDR4-2400 x8 devices operate from a 1.2V rail with standby and operating IDD currents defined per JEDEC DDR4 conditions. For thermal design, use the datasheet IDD values with your actual utilization profile; the FBGA package typically dissipates modest power at these speeds, but verify VDD rail budgeting across all devices in the memory subsystem.

Engineering reference data for H5AN8G8NAFR-UHI — comparison, design guidance, and compliance information.

Selection Guide

Choose the H5AN8G8NAFR-UHI when your platform operates at DDR4-2400 (1200 MHz) and you need 8Gb per device in a standard x8 organization - the typical case for desktop modules, embedded boards, and cost-sensitive server designs. Select H5AN8G8NAFR-UHC or H5AN8G8NAFR-TFC if your controller supports DDR4-2666 and you need the extra bandwidth, accepting higher cost. Choose H5AN8G8NAFR-RDC or PBC when wide-temperature or lower-speed cost-optimized bins match your environment, after confirming timing compatibility. The H5AN8G8NMFR-TFC is a valid same-footprint option for 2666-class designs preferring the M-die. All listed parts share the 78-ball FBGA x8 DDR4 footprint, so switching suffixes requires only firmware/timing changes, not a PCB respin. Verify temperature range and AEC-Q100 needs against the SK Hynix ordering table before finalizing automotive designs.

Comparison with Alternatives

Parameter This Product H5AN8G8NAFR-UHC H5AN8G8NAFR-RDC H5AN8G8NAFR-TFC H5AN8G8NMFR-TFC
Package 78-ball FBGA 78-ball FBGA - same 78-ball FBGA - same 78-ball FBGA - same 78-ball FBGA family - same
Brand SK Hynix SK Hynix SK Hynix SK Hynix SK Hynix
Density 8 Gb 8 Gb 8 Gb 8 Gb 8 Gb
Organization 1G x 8 1G x 8 1G x 8 1G x 8 1G x 8
Data Rate DDR4-2400 (PC2400) [DATA_NEEDED] [DATA_NEEDED] DDR4-2666 DDR4-2666
Supply Voltage 1.2 V 1.2 V 1.2 V 1.2 V 1.2 V
Speed-Grade Suffix UHI UHC RDC TFC TFC (M-die)
RoHS / Lead-Free Compliant / Yes Compliant / Yes Compliant / Yes Compliant / Yes Compliant / Yes

Key Differentiators

  • Cost-optimized 2400 speed grade (vs H5AN8G8NAFR-TFC)
  • Proven A-die family with multiple sourcing suffixes (vs H5AN8G8NMFR-TFC)
  • Wide suffix temperature/speed selection on identical footprint (vs H5AN8G8NAFR-PBC)

Design Notes

At DDR4-2400 (1200 MHz clock), route address/command and data groups with strict length matching per DDR4 routing guidelines: keep data-group skews within controller specification and use fly-by termination for address/command lines. The 78-ball FBGA package minimizes ball inductance, but the PCB stackup still requires controlled impedance (typically 40 ohm single-ended for data) and reference-plane continuity. Simulate eye diagrams for the DQS/DQ pairs before fabrication on first-pass designs.

The H5AN8G8NAFR-UHI runs from a 1.2V VDD rail; provide VDDQ termination (VTT) at VDDQ/2 with a capable LDO or switching VTT regulator sized for peak termination currents across all devices. For an eight-device module, sum the datasheet IDD currents for your utilization profile to size the 1.2V rail; use worst-case (datasheet maximum) currents rather than typical values for supply design. Decouple each device with local bulk and high-frequency ceramics per the reference design in the SK Hynix datasheet.

The suffix encodes speed grade and temperature range: -UHI is DDR4-2400, and substituting a different suffix (UHC, RDC, PBC, TFC) changes supported CAS latency and timing. Always reprogram controller timing registers and re-run memory training/calibration after any suffix change. Also note that x8 DDR4 devices support CRC and CA parity features differently from x16 - consult the datasheet feature table, and do not assume DDR3 design rules transfer directly to DDR4 bank-group timing constraints.

DDR4 read/write leveling (ZQ calibration and MR programming) requires the ZQ ball connected to a precision external resistor (typically 240 ohm, 1%) to ground per the datasheet ballout. Place the resistor with a short, low-inductance trace to the ZQ ball and keep it away from switching regulators. Incorrect ZQ resistor values degrade on-die termination accuracy and signal integrity at 2400 Mbps.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Unknown

Per the SK Hynix H5AN8G8NAFR datasheet record on Alldatasheet, the device is Lead-Free & Halogen-Free (RoHS). REACH and conflict-minerals declarations are published separately by SK Hynix and were not present in the provided data.

Data verified on: 2026-09-04 — data verified and curated by XAIPART's component engineering team

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SK Hynix H5AN8G8NAFR-UHI H5AN8G8NAFR H5AN8G8NAFR-UHC H5AN8G8NAFR-TFC H5AN8G8NMFR-TFC DDR4 SDRAM Double Data Rate 4 DRAM SDRAM FBGA 78-ball FBGA JEDEC RoHS DDR4-2400 PC2400 1.2V supply x8 organization main memory CMOS technology lead-free halogen-free memory controller UDIMM RDIMM
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