H5CG24AGBDX022 - DDR5 SDRAM Component | SK hynix
MPN: H5CG24AGBDX022 ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $0 | $0.00 |
| 10 | $0 | $0.00 |
| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
Drop-in alternatives for H5CG24AGBDX022 — 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:
H5CG28AGBDX022
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View Datasheet →H5CG26AGBDX021
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View Datasheet →H5CG44AGBDX018
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View Datasheet →H5CG44AGBDX018N
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View Datasheet →H5CG34MEBDX030
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View Datasheet →H5CG24AGBDX022 Maximum Ratings & Electrical Characteristics
| Memory Type | DDR5 SDRAM |
| Manufacturer Series | H5CG Series (SK hynix DDR5) |
| Supply Voltage VDD | 1.1 V (DDR5 nominal, per SK hynix DDR5 family) |
| Bank Count | 32 banks / 8 bank groups (DDR5 architecture) |
| Burst Length | 16 (BL16, DDR5 standard) |
| ECC | On-die ECC (DDR5 standard feature) |
| Interface Type | DDR5 (DFE-based receiver) |
| Mounting Type | Surface Mount (BGA) |
| JEDEC Standard | DDR5 SDRAM JEDEC standard compatible |
H5CG24AGBDX022 [data_needed: fbga ball count / package code] Pin Configuration Guide
Complete pinout information for H5CG24AGBDX022 ([data_needed: fbga ball count / package code] 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.
No detailed pinout data available for H5CG24AGBDX022.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
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
H5CG24AGBDX022 is suitable for 6 applications: Server Main Memory, Desktop and Workstation UDIMM, Embedded and Industrial Computing, AI and Machine Learning Host Memory, Networking and Telecom Equipment, Consumer Electronics and Set-Top Platforms.
Server Main Memory
The H5CG24AGBDX022 fits server main-memory subsystems where SK hynix DDR5 components populate RDIMMs for cloud, virtualization, and enterprise computing. DDR5's 32-bank architecture and burst length 16 raise effective memory-level parallelism compared to DDR4, while the 1.1V nominal supply reduces per-DRAM power - a decisive factor in data centers where thousands of DIMMs operate continuously. On-die ECC corrects internal cell errors before data reaches the bus, improving RAS without host-side ECC overhead. In an RDIMM context, the component operates through a registered clock driver with fly-by command/address routing, and its DFE-based receivers sustain multi-gigabit data rates across the sub-channel topology defined in JEDEC DDR5 module specifications.
Recommended
Desktop and Workstation UDIMM
For desktop and workstation platforms, the H5CG24AGBDX022 serves as a DRAM component on unbuffered dual in-line memory modules (UDIMMs), where consumer DDR5 memory controllers from Intel and AMD platforms drive it at JEDEC-standard speeds. The dual 32-bit sub-channel architecture of DDR5 improves efficiency for mainstream workloads such as content creation, CAD, and compilation. SK hynix H5CG-series components are widely used in branded consumer modules due to their mature process generation (the D code in this ordering block). Designers of custom SODIMM or CAMM2 form factors also reference this component class, relying on on-die ECC for silent error containment and BL16 burst operation for bandwidth efficiency at mainstream module capacities.
Recommended
Embedded and Industrial Computing
In embedded controllers, edge servers, and industrial PCs, soldered-down DDR5 components such as the H5CG24AGBDX022 replace SODIMM sockets to save board space and improve mechanical reliability under vibration. The 1.1V supply simplifies power tree design with a single main DDR5 rail plus VDDQ, and on-die ECC reduces uncorrected-error rates in long-lifecycle deployments where field service is costly. Industrial designs typically run memory at conservative JEDEC speed bins for thermal margin, which the X022 speed suffix options support. Layout follows the same fly-by CA routing and length-matched DQ rules as module designs, with the component fitted directly alongside the SoC using the reference design guidelines in the SK hynix datasheet.
Recommended
AI and Machine Learning Host Memory
AI training and inference hosts demand maximum memory bandwidth to feed GPU and accelerator workloads, making SK hynix DDR5 components like the H5CG24AGBDX022 a common choice for host-side main memory. DDR5's doubled bank groups and BL16 bursts sustain higher sustained bandwidth per channel than DDR4 at similar clock rates, directly improving data-loader throughput for large-model training. The 1.1V operation keeps platform power budgets available for accelerators rather than memory. Memory subsystems for AI servers typically populate all channels with identical density components to maximize interleaving, so matching this part's exact density/organization block across all DIMMs is essential for symmetric bandwidth, which is why same-code ordering matters in AI platform BOMs.
Recommended
Networking and Telecom Equipment
Routers, switches, and 5G baseband units use soldered DDR5 components like the H5CG24AGBDX022 for packet buffers, flow tables, and control-plane memory. The on-die ECC feature is particularly valuable in telecom designs where silent data corruption in forwarding tables causes packet drops, and the lower 1.1V rail reduces total system power in always-on network infrastructure. Equipment vendors qualify SK hynix H5CG-series components through long-term availability agreements and run them at reduced speed bins for thermal margins in sealed enclosures. The FBGA package withstands the thermal cycling profiles typical of outdoor telecom hardware when board-level reliability rules from the datasheet application section are followed.
Recommended
Consumer Electronics and Set-Top Platforms
Smart TVs, set-top boxes, and gaming peripherals increasingly adopt soldered-down DDR5 components for unified-memory SoC designs. The H5CG24AGBDX022 provides main memory for such platforms where the H5CG series' mature process generation delivers competitive cost per gigabit. On-die ECC improves playback reliability for 4K/8K streaming where memory errors would manifest as visible artifacts, and the low 1.1V supply supports energy-star compliant standby power targets. Consumer designs typically pair this component with mid-range application SoCs that implement DDR5 controllers at JEDEC-standard speed bins, following the reference routing in the SoC vendor's layout guide alongside the SK hynix datasheet termination and decoupling recommendations.
Recommended
Recommended Products Summary
Engineering reference data for H5CG24AGBDX022 — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | H5CG28AGBDX022 | H5CG26AGBDX021 | H5CG44AGBDX018 | H5CG34MEBDX030 |
|---|---|---|---|---|---|
| Package | FBGA (DDR5 component package, per ordering code) | FBGA (DDR5 component package) - same package family | FBGA (DDR5 component package) - same package family | FBGA (DDR5 component package) - same package family | FBGA (DDR5 component package) - same package family |
| Brand | SK hynix | SK hynix | SK hynix | SK hynix | SK hynix |
| Memory Technology | DDR5 SDRAM | DDR5 SDRAM | DDR5 SDRAM | DDR5 SDRAM | DDR5 SDRAM |
| Supply Voltage | 1.1 V (DDR5 nominal) | 1.1 V (DDR5 nominal) | 1.1 V (DDR5 nominal) | 1.1 V (DDR5 nominal) | 1.1 V (DDR5 nominal) |
| Density Block (per SK hynix decoder) | 24A | 28A | 26A | 44A | 34M |
| Speed/Package Suffix | X022 | X022 - same suffix | X021 | X018 | X030 |
| On-die ECC | Yes (DDR5 standard) | Yes (DDR5 standard) | Yes (DDR5 standard) | Yes (DDR5 standard) | Yes (DDR5 standard) |
| Banks / Burst Length | 32 banks / BL16 | 32 banks / BL16 | 32 banks / BL16 | 32 banks / BL16 | 32 banks / BL16 |
Key Differentiators
- Same speed/package suffix X022 for drop-in family matching (vs H5CG28AGBDX022)
- Mature process generation in the H5CG family (vs H5CG34MEBDX030)
- Lower density tier for power-sensitive designs (vs H5CG44AGBDX018)
Design Notes
DDR5 routing requires fly-by command/address topology with VDDQ termination and tightly length-matched DQ/DQS groups. Follow the layout rules in the SK hynix DDR5 datasheet package section and your SoC vendor's memory design guide. Maintain controlled impedance (single-ended ~40 ohm for DQ per typical DDR5 designs), solid VDDQ planes, and per-ball decoupling capacitors placed within 2 mm of supply balls. Verify the exact organization (x8 vs x16) before finalizing the footprint, since ball assignments differ between organizations in JEDEC DDR5.
The 1.1V VDD rail of DDR5 requires a regulator with fast transient response because DRAM read/write currents switch at multi-gigabit rates. Budget VDDQ termination current separately and verify power integrity with target impedance analysis at the memory controller interface. Estimated: total DRAM rail current scales with die density and utilization - size the VRM per the datasheet IDD specification table for your speed bin (marked DATA_NEEDED in specs) plus 20-30% margin for worst-case bank-interleaved access patterns.
Do not substitute DDR5 ordering codes without re-qualification: each code block in H5CG24AGBDX022 encodes density, organization, process generation, and speed grade per the SK hynix part-number decoder. Mixing dies of different process generations (the D code position) on the same channel can shift timing margins and fail read-training. Always update SPD data and memory reference files when changing ordering codes, and confirm the speed bin supported by your memory controller before BOM substitution.
Compliance Information
Compliance statements were not present in the verified web data. Confirm RoHS/REACH material declarations via the SK hynix support portal (product.skhynix.com) before shipping to regulated markets.