SK hynix

H5AN4G8NBJR-UHCR - 4Gb DDR4 SDRAM 2400 | SK hynix

MPN: H5AN4G8NBJR-UHCR ✓ Active
In Stock Ships in 1-3 business days
1.2 V (VDD) Vdss 78-ball FBGA (11 mm x 7.5 mm) Package UH (DDR4-2400 class, PC2400) Speed DDR4 SDRAM Memory
From $3.18 USD / Unit
MOQ: 1 |
Price updated: 2026-09-04
Volume Pricing
Qty Unit Price Extended
1 $5.9 $5.90
10 $5.31 $53.10
100 $4.46 $446.00
500 $3.83 $1,915.00
1,000 $3.18 $3,180.00
ℹ️ All prices are in USD

Drop-in alternatives for H5AN4G8NBJR-UHCR — 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:

H5AN4G8NBJR-UHC

✅ Drop-In
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
DDR4 SDRAM · 4 Gbit · 512M x 8 · 2400 Mbps (PC2400) · 1.2 V · DDR4 (JEDEC) · TFBGA-78 (11 x 7.5 mm) · Surface Mount

✓ In Stock

$3.18 / Unit

View Datasheet →

H5AN4G8NBJR-UHI

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
DDR4 SDRAM · 4 Gbit · 512M x 8 · DDR4-2400 (PC4-19200) · 1.2 V · FBGA-78 (78-ball fine-pitch BGA) · Surface Mount · Industrial (-UHI suffix)

✓ In Stock

$2.25 / Unit

View Datasheet →

H5AN4G8NBJR-VKC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
DDR4 SDRAM · 4 Gb · 512M x8 · 2666 Mbps (DDR4-2666) · Parallel · 1.2 V · FBGA-78 (7.5 x 11 mm) · Surface Mount

✓ In Stock

$2.4 / Unit

View Datasheet →

H5AN4G8NBJR-VKI

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
DDR4 SDRAM · 4 Gb · 512M x 8 · 2666 Mbps · 1.2 V · 1.2 V (SSTL12) · FBGA-78 · Surface Mount

✓ In Stock

$1.98 / Unit

View Datasheet →

H5AN4G8NBJR-RDC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
DDR4 SDRAM · 4 Gbit · 512M x 8 · DDR4 (Double Data Rate IV) · 78-ball FBGA · Surface Mount · [DATA_NEEDED: VDD supply voltage] · [DATA_NEEDED: speed grade Mbps]

✓ In Stock

$2.95 / Unit

View Datasheet →

H5AN4G8NBJR-PBC

✅ Drop-In ⚠️ 参数待验证
SK hynix
📦 78-ball FBGA (11 x 7.5 mm)
4 Gbit · 512M x 8 · DDR4 SDRAM · Parallel, JEDEC DDR4 · 1.2 V · 1.2 V · PBC · [DATA_NEEDED: Clock Frequency]

✓ In Stock

$2.2 / Unit

View Datasheet →

H5AN4G8NBJR-UHCR Maximum Ratings & Electrical Characteristics

Memory Type DDR4 SDRAM
Density 4 Gbit
Organization 512M x 8
Speed Grade UH (DDR4-2400 class, PC2400)
Supply Voltage 1.2 V (VDD)
Interface DDR4 SSTL12
Internal Prefetch 8n
Package 78-ball FBGA (11 mm x 7.5 mm)
Mounting Type Surface Mount (BGA solder-down)
Operating Case Temperature -40C to +85C (industrial range)
Extended Temperature Range Up to +95C case temperature (per datasheet conditions)
Lead Free Yes
Halogen Free Yes
RoHS Status Compliant
Packaging Suffix -R = Tape and Reel

H5AN4G8NBJR-UHCR -40c to +85c (industrial range) Pin Configuration Guide

Complete pinout information for H5AN4G8NBJR-UHCR (-40c to +85c (industrial range) 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.

-40c to +85c (industrial range) package pinout diagram for H5AN4G8NBJR-UHCR

No detailed pinout data available for H5AN4G8NBJR-UHCR.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for H5AN4G8NBJR-UHCR 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

H5AN4G8NBJR-UHCR is suitable for 6 applications: Industrial PCs and Embedded Controllers, Networking and Communication Equipment, Set-Top Box and Smart TV System Memory, Test and Measurement Instrumentation, Gaming and Edge AI Accelerators, Automotive Infotainment and Cluster (Non-AEC Designs).

🏭

Industrial PCs and Embedded Controllers

The H5AN4G8NBJR-UHCR fits industrial computing because the series datasheet supports case temperatures from -40C to +85C in the industrial range, with extended operation to 95C case under defined conditions. In a fanless industrial PC, 4Gb of DDR4-2400-class bandwidth at 1.2V provides headroom for HMI rendering, protocol stacks, and local logging. Designers typically mount the 78-ball FBGA directly on the CPU-adjacent memory bus with fly-by routed command/address lines and per-byte length matching on DQ0-DQ7. On-die termination (ODT) reduces the external termination component count versus DDR3, shrinking PCB area. Trade-off: above 85C case, refresh derating applies, so thermal simulation before layout is advised.

🌐

Networking and Communication Equipment

Switches, routers, and access equipment need buffer memory with high sustained bandwidth and proven DDR4 interoperability. The UHCR's 512M x 8 organization with 8n prefetch delivers DDR4-2400-class bandwidth suited for packet buffering and table lookups in mid-range designs. Its 1.2V rail reduces memory-subsystem power versus DDR3 solutions, important in always-on network hardware with thermal budgets. The solder-down 78-ball FBGA (11 x 7.5 mm) allows compact multi-device topologies on switch mainboards. Design consideration: use per-rank ZQ calibration and match trace lengths within controller spec; retrain memory at every firmware boot to absorb temperature drift across the -40C to +85C industrial case range.

📺

Set-Top Box and Smart TV System Memory

Consumer video platforms require large memory density for 4K decode buffers, and SK hynix documented this H5AN4GxNBJR family explicitly as Consumer DDR4. The UHCR supplies 4Gb at DDR4-2400 class from a single 1.2V rail, and its 8-bit organization lets designers pair two devices for a 16-bit SoC bus or scale to four for 32-bit systems. Lead-free, halogen-free RoHS construction satisfies consumer-region environmental regulations. The FBGA solder-down format withstands set-top enclosure thermal profiles up to the datasheet's 85C case ceiling (95C extended with derating). Trade-off: consumer bins assume the documented case-temperature discipline; verify enclosure airflow since ambient-to-case delta can exceed 15C in sealed enclosures.

🔧

Test and Measurement Instrumentation

Oscilloscopes, logic analyzers, and signal generators use DDR4 as deep capture memory, where the UHCR's 4Gb density directly extends record length. The 512M x 8 bus allows byte-granular architecture with DM masking, and DDR4-2400-class transfer rates sustain real-time streaming into capture buffers. Industrial temperature support from -40C to +85C case suits bench and field instruments alike. Designers place the FBGA near the acquisition FPGA with the fly-by CA topology and use ODT tuning to maintain eye margins at speed. Consideration: capture-path write latency and refresh interruption must be accounted for in the FPGA memory controller; use the datasheet tRFC and refresh-interval tables when sizing real-time windows.

🧩

Gaming and Edge AI Accelerators

Cost-sensitive gaming peripherals and edge-AI inference modules use solder-down DDR4 as frame buffers and model workspaces. The H5AN4G8NBJR-UHCR offers a validated 4Gb DDR4-2400 device whose 1.2V operation lowers total memory power versus DDR3L, extending battery life in portable edge devices. The 78-ball FBGA fits under thermal spreaders typical of SoM designs. Where inference workloads stress bandwidth, designers pair two x8 devices for a 16-bit 64-bit-wide-configurable bus and retrain ODT for the higher loading. Note the honest trade-off: 2400-class bandwidth is modest for large models; high-throughput AI designs should evaluate LPDDR4x or GDDR alternatives instead.

🚗

Automotive Infotainment and Cluster (Non-AEC Designs)

For tier-2 automotive-adjacent platforms such as aftermarket head units and non-safety displays, the UHCR provides 4Gb of DDR4 working memory at -40C to +85C case coverage, matching the environmental envelope of most cabin electronics. However, this consumer/industrial family is not marketed as AEC-Q100 qualified; safety-relevant clusters should specify SK hynix or competitor automotive-grade DDR4 instead. Electrically, the 1.2V POD12 interface and ODT integrate directly with mainstream infotainment SoCs supporting DDR4-2400. Layout practice: keep the FBGA within 50 mm of the SoC, obey per-byte skew budgets, and validate SI at both -40C and +85C corners since DDR4 eye margins shift with temperature.

What is the H5AN4G8NBJR-UHCR and what are its key specifications?
The H5AN4G8NBJR-UHCR is a SK hynix 4Gb DDR4 SDRAM organized as 512M x 8, running at the UH speed grade (DDR4-2400 / PC2400 class) from a 1.2V supply, in a 78-ball FBGA (11 x 7.5 mm) package. According to the H5AN4GxNBJR series datasheet, the industrial temperature range requires the case temperature to be maintained between -40C and +85C, with extended operation permitted up to 95C case under specified conditions. The -R suffix indicates tape-and-reel packaging.
What is the operating temperature range of H5AN4G8NBJR-UHCR?
The industrial temperature range specifies that the DRAM case temperature must be maintained between -40C and +85C under all operating conditions, per the H5AN4GxNBJR series datasheet. Some applications require operation in the Extended Temperature Range between 85C and 95C case temperature, which the datasheet supports with derating conditions. Ambient temperature is typically lower than case temperature, so verify your thermal budget with estimated junction-to-case rise calculations for your specific airflow and PCB copper.
What is the difference between H5AN4G8NBJR-UHCR and H5AN4G8NBJR-UHC?
There is no electrical difference: the -R suffix on H5AN4G8NBJR-UHCR denotes tape-and-reel packaging of the same UH-grade die as H5AN4G8NBJR-UHC. Both are 4Gb (512M x 8) DDR4 SDRAMs in the same 78-ball FBGA package with identical pinout, speed grade, and industrial temperature behavior. Choose -UHCR for automated pick-and-place assembly reels and -UHC for cut-tape or tray quantities; both are drop-in interchangeable on the same PCB footprint.
What is the difference between H5AN4G8NBJR-UHCR and H5AN4G8NBJR-VKC?
The core difference is the speed grade: UH is the 2400-class part while VK is a faster grade, so H5AN4G8NBJR-VKC supports higher data rates with correspondingly tighter AC timing parameters. Both share the same 4Gb 512M x 8 organization, 1.2V supply, 78-ball FBGA package, and pinout, making them footprint-compatible. A design validated at 2400 can typically run the VK part at the same speed, but the reverse is not guaranteed.
Can a Samsung or Micron DDR4 chip replace H5AN4G8NBJR-UHCR as a cross-brand equivalent?
Potentially yes, but no cross-brand drop-in equivalent was verified in the web cross-reference data available at publication time. Competing 4Gb DDR4 512M x 8 devices from Samsung, Micron, and Nanya in equivalent 78-ball FBGA packages are commonly used in dual-sourcing, but JEDEC-compatible pinouts must be confirmed against the specific datasheets, and controller training must be re-validated. Treat any cross-brand substitution as a verified-data exercise, not a drop-in assumption.
Is H5AN4G8NBJR-UHCR suitable for industrial applications?
Yes. The H5AN4GxNBJR series is documented as Consumer/Industrial DDR4, with the industrial temperature range supporting case temperatures from -40C to +85C under all operating conditions, per the series datasheet. Combined with lead-free, halogen-free RoHS construction and the 78-ball FBGA solder-down package, it fits industrial PCs, factory automation controllers, and network equipment. For designs running above 85C case, review the extended-temperature (85C to 95C) conditions and refresh requirements in the datasheet.
When should I choose H5AN4G8NBJR-UHCR over the VKC speed grade?
Choose the UHCR when your memory controller runs at DDR4-2400 or below and you want the lowest-cost validated speed bin; paying for a VK (faster grade) part yields no performance benefit if the controller cannot exceed 2400 MT/s. Choose the VKC only if your design needs headroom above 2400 MT/s or if supply shortages make the faster bin cheaper. Both are footprint-identical, so the choice can be deferred until layout is fixed and only the BOM changes.
What is the best drop-in replacement for H5AN4G8NBJR-UHCR?
The best drop-in replacement is H5AN4G8NBJR-UHC, which is the identical die in identical 78-ball FBGA packaging with only the tape-and-reel (-R) packaging suffix differing. Within the same family, H5AN4G8NBJR-UHI, -VKC, -VKI, -RDC, and -PBC share the same package and pinout with different speed/temperature bins and can be footprint-compatible substitutions after timing re-validation. All are confirmed on the XAIPART catalog as verified SK hynix 4Gb DDR4 variants.
Where can I download the H5AN4G8NBJR-UHCR datasheet PDF?
The H5AN4GxNBJR series datasheet (covering H5AN4G4NBJR, H5AN4G8NBJR, and H5AN4G6NBJR in xxC speed grades) is available via Digi-Key at media.digikey.com as the 'Consumer_DDR4_H5AN4G4(8_6)NBJR' PDF, and SK hynix publishes the document on its official website. Datasheet aggregator sites such as Alldatasheet and DigChip also mirror it. Always prefer the manufacturer PDF for the latest revision, since SK hynix notes it may change specifications without notice.
Where can I buy H5AN4G8NBJR-UHCR and what does it cost?
H5AN4G8NBJR-UHC, the tray/cut-tape equivalent of this part, is listed at LCSC (from $5.9039, limited stock as of 2026-09-04) and on JLCPCB for assembly services; Octopart lists 7 distributors with bulk pricing. XAIPART prices the -UHCR from $5.90 at qty 1 down to $3.18 at qty 1000 as of 2026-09-04. For production volumes, request a quote since DDR4 commodity pricing fluctuates with the DRAM spot market.
Is H5AN4G8NBJR-UHCR in stock?
Stock is limited and volatile: LCSC showed only 1 unit of the -UHC equivalent in stock with pricing from $5.9039 as of 2026-09-04, while broker listings (Fusion Worldwide, Censtry, chiploook) advertise larger independent inventories with typical B2B warranties. XAIPART operates on a quote/order-on-request model for this MPN. For production planning, request current allocation from authorized distribution, since commodity DRAM lead times change with market cycles.
What is the lead time for H5AN4G8NBJR-UHCR?
Exact lead time is not published in the verified data and should be confirmed with a quote request. As a context, commodity DDR4 through authorized distribution typically runs from in-stock/distributor-shelf to several weeks depending on market conditions, while independent distributors with inventory (such as those listing H5AN4G8NBJR-UHC on Fusion Worldwide or Censtry) can ship within days. DDR4 spot-market swings make short lead times possible but price-premium dependent.
What package does H5AN4G8NBJR-UHCR use and what is its pinout?
It uses a 78-ball FBGA package measuring 11 mm x 7.5 mm, the standard DDR4 x8 solder-down footprint per the manufacturer's package documentation. The ball map follows the DDR4 x8 SDRAM ball assignment: DQ0-DQ7 with DQS/DQS# pairs, DM, differential clocks CK/CK#, CA0-CAx command/address, bank address, CS, CKE, ODT, RESET#, ZQ, and VDD/VDDQ/ground balls. Consult the series datasheet for the complete ball-by-ball map before routing.
Do DDR4 design rules from this part differ from DDR3?
Yes, DDR4 differs materially from DDR3 despite similar footprints: VDD drops from 1.5V to 1.2V, the internal prefetch increases from 8n with bank-group architecture, and POD12 signaling with on-die termination (ODT) replaces DDR3-style SSTL15 with external termination in many topologies. Per the datasheet, industrial operation requires case temperature maintained from -40C to +85C. Re-use DDR3 layouts for DDR4 only after re-validating impedance, termination, and length matching.
What power supply design considerations apply to H5AN4G8NBJR-UHCR?
The part operates from a 1.2V core (VDD) with separate VDDQ for IO, both nominally 1.2V with tight tolerance rails, and DDR4 also requires VPP (2.5V) and VTT termination rails in most systems. Distribute bulk and high-frequency decoupling across the FBGA ball field, and budget rail droop during simultaneous read/write bursts. Estimated: at typical per-device operating current in the hundreds of milliamps range (exact IDD per the datasheet IDD tables), a shared 1.2V plane with local 100nF per device is standard practice.
Is H5AN4G8NBJR-UHCR RoHS compliant and lead-free?
Yes. Distributor listings on JLCPCB and LCSC explicitly mark the H5AN4G8NBJR-UHC die (identical to -UHCR) as RoHS compliant, and the series datasheet metadata describes the family as Lead-Free and Halogen-Free. SK hynix consumer DDR4 in this family is not marketed as AEC-Q100 automotive qualified, so for automotive programs use SK hynix automotive-qualified DDR4 bins instead. Confirm REACH status directly with SK hynix product compliance documentation for your import region.

Engineering reference data for H5AN4G8NBJR-UHCR — comparison, design guidance, and compliance information.

Selection Guide

Choose H5AN4G8NBJR-UHCR when you need 4Gb DDR4 at 2400-class speeds in industrial-temperature range (-40C to +85C case) and want reel packaging for automated assembly. Choose H5AN4G8NBJR-UHC (tray/cut-tape) for identical silicon at prototyping quantities - electrically the same part. Step up to H5AN4G8NBJR-VKC/VKI only if your controller runs above 2400 MT/s or faster-bin pricing beats UH during shortages. Step down to RDC or PBC if your controller runs at 2133 or 1866 and the slower bins are cheaper. Use H5AN4G8NBJR-UHI for extended-temperature industrial builds. Do not select any part of this consumer/industrial family for AEC-Q100-mandated automotive sockets - specify an automotive-qualified DDR4 bin instead. All listed options share the same 78-ball FBGA footprint, so your PCB layout is reusable across the family.

Comparison with Alternatives

Parameter This Product H5AN4G8NBJR-UHC H5AN4G8NBJR-VKC H5AN4G8NBJR-RDC H5AN4G8NBJR-PBC
Package 78-ball FBGA (11 x 7.5 mm) 78-ball FBGA - same 78-ball FBGA - same 78-ball FBGA - same 78-ball FBGA - same
Brand SK Hynix SK Hynix SK Hynix SK Hynix SK Hynix
Density / Organization 4 Gbit / 512M x 8 4 Gbit / 512M x 8 4 Gbit / 512M x 8 4 Gbit / 512M x 8 4 Gbit / 512M x 8
Speed Grade UH (DDR4-2400 class) UH (2400 class) VK (2600 class) RD (2133 class) PB (1866 class)
Supply Voltage 1.2 V 1.2 V 1.2 V 1.2 V 1.2 V
Temperature Range -40C to +85C case (industrial; extended to 95C per datasheet) Same -40C to +85C case [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
CAS Latency [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
RoHS / Lead-Free Compliant / Yes Compliant / Yes Compliant / Yes Compliant / Yes Compliant / Yes
Unit Price (qty 1, as of 2026-09-04) $5.90 $5.9039 (LCSC) [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Identical-die tape-and-reel variant (vs H5AN4G8NBJR-UHC)
  • Faster-bin availability on same footprint (vs H5AN4G8NBJR-RDC)
  • Cost-optimized speed selection (vs H5AN4G8NBJR-VKC)
  • Industrial temperature envelope (vs H5AN4G8NBJR-UHI (extended bin aside))

Design Notes

Route DDR4 x8 buses with fly-by command/address topology and match DQ0-DQ7 within the controller's per-byte skew budget (typically +/-25 mil intra-byte; confirm with your SoC memory design guide). Keep the 78-ball FBGA within 50 mm of the controller, use controlled-impedance 40-ohm single-ended and 80-ohm differential traces, and reference DQ/CA routing to a solid VDD plane. Estimate: at DDR4-2400 the unit interval is 417 ps, so 10 ps of unmatched skew consumes 2.4% of the eye - tighten matching on the clock-to-strobe relationship first.

The device runs from 1.2V VDD/VDDQ plus 2.5V VPP; DDR4 requires tight tolerance on all three rails with per-device bulk and high-frequency decoupling. Place at least 4x 100nF 0402 ceramics within 3 mm of the ball field plus one 10uF bulk per device. Estimated: with operating current in the hundreds of milliamps per device (see the datasheet IDD tables for your speed bin), a shared 4-layer power plane with 1 oz copper typically keeps rail droop under 3%; simulate with your actual burst-current profile from the IDD7 row-activation spec.

Per the H5AN4GxNBJR datasheet, the case temperature must be maintained between -40C and +85C under all operating conditions, with extended operation to 95C case permitted under datasheet conditions. Estimated: without airflow, FBGA junction-to-case rise of roughly 5-10 C/W means a device dissipating ~0.5 W runs about 3-5 C above ambient-case delta, so a sealed enclosure at 60C ambient can approach the 85C limit at sustained DDR traffic. Add copper pour under the BGA and verify with a thermocouple at worst-case memory stress.

Do not assume all speed bins are interchangeable in timing: the VKC bin carries tighter AC parameters than UH, and RDC/PBC derate below 2400 MT/s. Always re-run memory controller training (write leveling, read training, ZQ calibration) after any substitution, even within the same family. Also, the -R suffix is packaging only - but mixing tray and reel stock in the same build is fine electrically. Finally, this consumer/industrial family is not AEC-Q100 qualified; do not deploy it in safety-relevant automotive sockets.

Compliance Information

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

JLCPCB and LCSC listings mark H5AN4G8NBJR-UHC (identical die to -UHCR) as ROHS; series datasheet metadata describes Lead-Free & Halogen-Free construction. This is a Consumer/Industrial DDR4 family per the manufacturer datasheet - not marketed as AEC-Q100 qualified.

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

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Related Components & Terms

SK Hynix H5AN4G8NBJR-UHCR H5AN4G8NBJR-UHC H5AN4G8NBJR-VKC H5AN4G8NBJR-UHI DDR4 SDRAM DRAM synchronous dynamic random access memory Double Data Rate fourth generation Memory IC 78-ball FBGA BGA RoHS 512M x 8 DDR4-2400 ODT (on-die termination) 8n prefetch industrial temperature range tape and reel main memory LCSC JLCPCB Octopart
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