Samsung Electronics

K3LK8L80CM-MGCT - LPDDR5X 32Gbit DRAM FBGA-315 | Samsung

MPN: K3LK8L80CM-MGCT ✓ Active
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0.5 V, 900 mV, 1.05 V, 1.8 V (multi-rail) Vdss FBGA-315 (315-ball) Package CM-MGCT Speed LPDDR5X SDRAM Memory
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K3LK8L80CM-MGCT Maximum Ratings & Electrical Characteristics

Memory Type LPDDR5X SDRAM
Density 32 Gbit (4 GB)
Organization x32
Max Data Rate 7500 Mbps
Supply Voltages 0.5 V, 900 mV, 1.05 V, 1.8 V (multi-rail)
Package FBGA-315 (315-ball)
Operating Temperature -25C to +85C
Mounting Type Surface Mount (BGA)
Interface LPDDR5X (JEDEC low-power DDR)
Power Efficiency ~25% improvement vs LPDDR5
Application Class Mobile, PC, automotive, on-device AI
RoHS Status Compliant (per JLCPCB listing)
Speed Grade Suffix CM-MGCT
Package Family FBGA -> BGA -> surface mount
Typical End Products Smartphones, tablets, edge AI devices
Refresh / Standby Modes Self-refresh, deep power-down (per LPDDR5X protocol)

K3LK8L80CM-MGCT fbga -> bga -> surface mount Pin Configuration Guide

Complete pinout information for K3LK8L80CM-MGCT (fbga -> bga -> surface mount 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.

fbga -> bga -> surface mount package pinout diagram for K3LK8L80CM-MGCT

No detailed pinout data available for K3LK8L80CM-MGCT.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for K3LK8L80CM-MGCT 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

K3LK8L80CM-MGCT is suitable for 6 applications: Flagship Smartphone Memory, On-Device AI Inference, Automotive Infotainment and Cockpit, Tablets and Thin-Client Laptops, Edge AI Modules and Smart Cameras, Networking and 5G Equipment.

📱

Flagship Smartphone Memory

Flagship smartphones pair high-core-count application processors with a single wide LPDDR5X channel, and the K3LK8L80CM-MGCT fits this role directly: its 7500 Mbps data rate provides roughly 30 GB/s of peak bandwidth on a 32-bit bus, enough to feed CPU clusters, GPUs, and NPUs without stalling. The multi-rail architecture (1.8 V VDD1, 1.05 V/0.5 V-class I/O domains) minimizes dynamic power, and the ~25% efficiency improvement over LPDDR5 extends battery life under memory-heavy workloads such as 8K video and gaming. Implemented as PoP or on-board mounting, the FBGA-315 package is placed adjacent to the SoC with length-matched point-to-point routing; deep power-down and self-refresh states keep standby drain minimal during idle.

🧩

On-Device AI Inference

On-device AI inference is bandwidth-bound: transformer and CNN models stream weights from DRAM to the NPU every layer, so memory throughput directly sets tokens-per-second and frames-per-second. The K3LK8L80CM-MGCT addresses this with up to 7500 Mbps per pin (~30 GB/s peak on x32) and a 32 Gbit (4 GB) capacity that holds quantized mid-size models locally. Its -25C to +85C operating range supports edge enclosures without active cooling. In practice the device sits on the NPU SoC's dedicated LPDDR5X port; designers should enable controller features such as bank-group parallelism and QoS-based arbitration so NPU reads are not starved by display or camera traffic, and verify the SoC's supported speed bin matches the 7500 Mbps class.

🚗

Automotive Infotainment and Cockpit

Automotive cockpit SoCs driving multiple displays, surround-view camera fusion, and voice assistants need dense, fast, low-power DRAM, and the K3LK8L80CM-MGCT's extended -25C to +85C range covers most in-cabin thermal envelopes. Distributor descriptions explicitly list automotive systems among target applications. Its 7500 Mbps bandwidth supports seamless multi-display rendering, while the low-voltage I/O reduces DRAM power share in EV energy budgets. Design considerations: confirm the automotive qualification status of the exact order code with Samsung (standard LPDDR5X is not inherently AEC-Q100), design power rails with cold-crank and load-dump transients in mind, and implement retention strategies (self-refresh during standby) consistent with the infotainment power management plan.

🖥️

Tablets and Thin-Client Laptops

Thin tablets and entry laptops use one or two LPDDR5X channels with memory mounted on-board to save height and power versus socketed DDR. The K3LK8L80CM-MGCT provides 4 GB per package in x32 organization, so a two-channel (64-bit) configuration yields 8 GB and up to 60 GB/s peak bandwidth - ample for productivity and media workloads. The ~25% power-efficiency gain over LPDDR5 translates into measurable battery-life extension, and self-refresh preserves OS state during modern-standby. Layout practice: fly the two channels length-matched on inner layers with solid reference planes, and use the SoC's training routines to compensate at-boot for PVT variation at the 7500 Mbps operating point.

🎥

Edge AI Modules and Smart Cameras

Smart-camera and edge-AI modules integrate SoC plus LPDDR5X on a small SOM, processing video analytics at the sensor. The K3LK8L80CM-MGCT's 4 GB capacity stores model weights plus frame buffers for multi-stream analytics, and its 7500 Mbps interface feeds ISP and NPU pipelines in real time; the extended -25C floor suits outdoor enclosures. Because these modules dissipate everything through a small heatsink or conduction plate, the DRAM's low-voltage I/O and deep power-down states are essential to stay within a 5-10 W total module budget. Verify the camera SoC's memory-controller PHY supports LPDDR5X speed bins and enable periodic refresh with temperature-compensated refresh (TCR) for the full industrial temperature span.

🌐

Networking and 5G Equipment

5G small cells, network processors, and edge gateways need fast packet-buffer and control-plane memory with low power, and LPDDR5X fills this niche where full DDR5 DIMMs are overkill. The K3LK8L80CM-MGCT offers 4 GB in one package with ~30 GB/s peak bandwidth for table lookups, queuing, and dataplane scratch memory. The -25C to +85C range fits outdoor telecom cabinets, and the low-voltage rails reduce the power draw budgeted to always-on equipment. Design notes: telecom platforms often require redundant-refresh handling for elevated ambient temperatures, ECC-capable controllers (inline ECC on LPDDR5X) for carrier-grade reliability, and careful rail sequencing tied to the system's hot-swap power tree.

What is the Samsung K3LK8L80CM-MGCT?
The Samsung K3LK8L80CM-MGCT is a 32 Gbit (4 GB) LPDDR5X DRAM in a 315-ball FBGA package, organized x32, with data rates up to 7500 Mbps and an extended operating temperature range of -25C to +85C. According to distributor listings (IBS Electronics, JLCPCB), it draws from multi-rail supplies of 0.5 V-class VDDQ, 1.05 V, and 1.8 V, and targets mobile, PC, automotive, and on-device AI memory applications.
What are the key specifications of K3LK8L80CM-MGCT that engineers should know?
The key specifications are: 32 Gbit density in x32 organization, LPDDR5X interface with up to 7500 Mbps data rate, 315-ball FBGA package, -25C to +85C operating range, and multi-rail power (0.5 V / 900 mV / 1.05 V / 1.8 V). At 7500 Mbps on a 32-bit bus, peak theoretical bandwidth reaches about 30 GB/s, making it suitable for flagship smartphone SoCs and on-device AI inference where memory bandwidth is the bottleneck.
What is the price of K3LK8L80CM-MGCT?
Pricing for K3LK8L80CM-MGCT is quote-based (RFQ): DRAM of this class is typically sold through authorized distribution and independent channels with volume-negotiated pricing that tracks the volatile DRAM spot market. As of 2026-09-04, XAIPART lists it as an RFQ item rather than a fixed catalog price; request a quote for current tiered pricing. Reference aggregator Octopart compares offers from 11 distributors for this part.
Where can I buy K3LK8L80CM-MGCT online?
You can buy K3LK8L80CM-MGCT through XAIPART (RFQ flow) or compare stock on aggregators such as Octopart, which lists 11 distributors including Wolfchip (4740 pcs reported in stock as of Sep 2026), WIN SOURCE, IC-Components, and Fusion Worldwide. Because LPDDR5X components are frequently broker-stocked, always verify authenticity and date codes when purchasing outside franchise distribution.
Is K3LK8L80CM-MGCT in stock and what is the lead time?
Yes, third-party distributor Wolfchip reported 4740 pieces of K3KL8L80CM-MGCT in stock as of Sep 02, 2026, with immediate shipment. Lead times from franchise distribution can differ substantially for high-density LPDDR5X (often quoted in weeks). For guaranteed scheduling, XAIPART recommends confirming quantity and lead time via RFQ as of 2026-09-04, since mobile-class DRAM stock depletes quickly.
What is the difference between K3LK8L80CM-MGCT and K3KL8L80CM-MGCT?
The two orderable codes are adjacent Samsung LPDDR5X order codes in the same K3-family LPDDR5X lineup; the K3L prefix variants differ in package/thermal or speed-grade binning encoded in the suffix. Public distributor listings frequently use the K3KL8L80CM-MGCT designation for the 32 Gbit x32 7500 Mbps FBGA-315 device. Always confirm the exact suffix meaning (package code MGCT, speed bin, temperature range) against the Samsung order-part-number decoder in the official datasheet before substituting one for the other on a BOM.
Can K3LK4L40DM-BGCT replace K3LK8L80CM-MGCT?
Not as a drop-in replacement: K3LK4L40DM-BGCT is a half-density (16 Gbit class, 2 GB) LPDDR family device in a different ball-count package (BGC vs MGC suffix family), so the footprint and capacity differ. For a true same-footprint substitute you must match the 315-ball FBGA MGC package and the x32 organization. Use Samsung's cross-generation guidance and verify SoC memory-controller support before any second-source decision; do not swap without PCB and firmware validation.
What is the best Micron equivalent for K3LK8L80CM-MGCT?
Micron produces pin-compatible LPDDR5X components in comparable densities and speed bins, and Micron maintains an official DRAM cross-reference tool (micron.com) for comparing its products with Samsung alternatives. However, no specific Micron MPN was verified in the data sources for this page, so XAIPART does not list a cross-brand drop-in alternative. Use the Micron DRAM cross-reference tool and validate ball-map compatibility in the respective datasheets before qualifying a second source.
When should I choose K3LK8L80CM-MGCT over lower-speed LPDDR5 memory?
Choose K3LK8L80CM-MGCT when your SoC and workload need more than LPDDR5's typical ceiling: on-device AI inference, 8K video capture/playback, and high-frame-rate gaming all scale with memory bandwidth. The LPDDR5X 7500 Mbps capability delivers roughly 30 GB/s peak on a 32-bit channel and ~25% better power efficiency than LPDDR5, so it suits thermally constrained devices that cannot afford more channels. If your workload is bandwidth-light, lower-speed LPDDR5 reduces BOM cost.
Is K3LK8L80CM-MGCT suitable for automotive applications?
Yes with qualification caveats: distributor descriptions list automotive systems among its target applications, and the -25C to +85C operating range covers most in-cabin environments. However, standard LPDDR5X is not inherently AEC-Q100 grade; automotive customers must confirm the automotive qualification status of the specific order code with Samsung and may need the automotive-designated variant of the K3 family. Consult Samsung for PPAP documentation and long-term supply commitments.
What is the best drop-in replacement for K3LK8L80CM-MGCT?
The closest same-footprint candidates are other 315-ball FBGA LPDDR5X devices in the same Samsung K3L MGC-package family with identical x32 organization and speed bin. XAIPART lists five same-brand family alternatives (see the alternatives table), but density and package-suffix differences mean each must be footprint-verified. No cross-brand drop-in was verified in the retrieved web data; consult Samsung directly or the Micron DRAM cross-reference tool for second-source options.
Where to download the K3LK8L80CM-MGCT datasheet PDF?
A K3KL8L80CM-MGCT introduction/datasheet PDF is publicly hosted at ic-golden.com (linked in this page's data sources), and the authoritative datasheet is available from Samsung Semiconductor's official product pages under NDA or public download depending on the order code. For design work, always use the official Samsung Semiconductor document for the exact suffix (MGCT), since speed bins, ball maps, and power sequences differ across family variants.
Where can I find the K3LK8L80CM-MGCT pinout?
The complete 315-ball ball-map for K3LK8L80CM-MGCT is defined in the Samsung LPDDR5X datasheet in the Ball Out / pin description section; XAIPART does not reproduce the full 315-ball map on this page. Because the device uses a point-to-point LPDDR5X interface, ball functions (CA bus, DQ, DQS_t/DM, power/ground balls) follow the JEDEC LPDDR5X channel definition, but the physical ball arrangement is Samsung-specific - download the official datasheet PDF for the authoritative ball map.
What power supply rails does K3LK8L80CM-MGCT require?
The device operates from a multi-rail supply system listed by distributors as 0.5 V, 900 mV, 1.05 V, and 1.8 V: the 1.8 V rail powers the VDD1 core domain, 1.05 V-class rails serve the VDD2/VDDQ domains (with 0.5 V-class I/O termination), and the 900 mV domain supports LPDDR5X low-voltage signaling. Follow the datasheet power-up sequence and use dedicated switching regulators with good transient response, since LPDDR5X idle/active current steps are large during bus turnaround.
How much bandwidth does K3LK8L80CM-MGCT provide at 7500 Mbps?
At the 7500 Mbps maximum data rate, a single x32 channel provides a theoretical peak bandwidth of 7500 MT/s x 4 bytes = 30 GB/s. Real achievable bandwidth is lower after command-bus overhead, refresh, and bank conflicts (typically 70-80% efficiency), so plan workloads against roughly 21-24 GB/s sustained. Compare this with your SoC controller's supported speed bin - many application processors cap below 7500 Mbps.
Is K3LK8L80CM-MGCT RoHS compliant?
Yes, the K3LK8L80CM-MGCT is listed as RoHS compliant in the JLCPCB component database listing for this part. Samsung's modern mobile DRAM products are also generally halogen-free and lead-free, but REACH, halogen-free, and conflict-minerals declarations should be confirmed from Samsung's official environmental documentation for the exact order code, as this page only verifies the RoHS status from the retrieved distributor data.
Hey Google, what can replace K3LK8L80CM-MGCT?
The closest replacements are same-family Samsung LPDDR5X parts with the same 315-ball FBGA MGC package and x32 organization - such as adjacent order codes like K3KL7L70EM-MGCU or other K3L-family speed bins - subject to footprint and firmware validation. No cross-brand drop-in equivalent was verified in public data. Before substituting, confirm density, speed bin (up to 7500 Mbps), the -25C to +85C range, and your SoC's memory-controller compatibility.
Is K3LK8L80CM-MGCT the same as K3KL7L70EM-MGCU?
No, they are different order codes within the Samsung LPDDR family: K3LK8L80CM-MGCT is a 32 Gbit x32 LPDDR5X device in a 315-ball FBGA (MGC package code) rated to 7500 Mbps, while K3KL7L70EM-MGCU is a different family suffix (EM package code, L7 speed bin) with different density/package encoding. They are not pin-to-pin interchangeable without datasheet-level ball-map verification, even though both target the same mobile memory applications.

Engineering reference data for K3LK8L80CM-MGCT — comparison, design guidance, and compliance information.

Selection Guide

Choose K3LK8L80CM-MGCT when you need maximum per-channel bandwidth (7500 Mbps class, ~30 GB/s peak on x32) and 4 GB of density in one package - typical for flagship smartphone, on-device AI, and multi-display cockpit designs. Choose K3LK4L40DM-BGCT when 2 GB suffices and BOM cost or PCB area dominates; expect a different ball map, so it is a design-in alternative, not a drop-in. Choose K3LKBKB0BM-MGCP or K3LKCKC0BM-MGCP when you need the same MGC package family with a lower speed bin for yield or cost reasons - footprint reuse is likely but re-verify the ball map and controller speed-bin support. Choose K3KL7L70EM-MGCU or K3KL3L30CM-BGCT for adjacent family density/speed options. Honest trade-off: none of these are verified cross-brand equivalents; second-sourcing LPDDR5X requires ball-map and PHY-training validation on real hardware, so budget requalification time before swapping order codes.

Comparison with Alternatives

Parameter This Product K3KL7L70EM-MGCU K3LK4L40DM-BGCT K3LKCKC0BM-MGCP K3LKBKB0BM-MGCP K3KL3L30CM-BGCT
Package FBGA-315 FBGA (EM suffix - verify ball count) FBGA (BGC suffix - different ball count) FBGA (MGC family - same package code family) FBGA (MGC family - same package code family) FBGA (BGC suffix - different ball count)
Brand Samsung Electronics Samsung Electronics Samsung Electronics Samsung Electronics Samsung Electronics Samsung Electronics
Memory Type LPDDR5X LPDDR5X LPDDR5X LPDDR5X LPDDR5X LPDDR5X
Density 32 Gbit (4 GB) [DATA_NEEDED] 16 Gbit class (2 GB) [DATA_NEEDED] [DATA_NEEDED] 12 Gbit class
Organization x32 [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Max Data Rate 7500 Mbps LPDDR5X-class (L7 bin, verify) [DATA_NEEDED] KC bin (verify vs 7500 Mbps) KB bin (verify vs 7500 Mbps) [DATA_NEEDED]
Operating Temperature -25C to +85C [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Lifecycle Status Active [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • LPDDR5X speed class up to 7500 Mbps (vs K3LK4L40DM-BGCT)
  • Extended low-temperature floor (vs K3KL7L70EM-MGCU)
  • ~25% power-efficiency gain over LPDDR5 (vs K3LKCKC0BM-MGCP)
  • MGC package-code family consistency (vs K3LKBKB0BM-MGCP)

Design Notes

LPDDR5X at 7500 Mbps is extremely sensitive to channel loss and skew. Use point-to-point routing with length matching within ±0.5 mm on CA and DQ byte groups, maintain a solid reference plane under every signal layer, and avoid via stubs. Target single-ended impedance of 40 ohms as per typical LPDDR5X ODT settings and simulate the channel with IBIS-AMI models from Samsung before committing the PCB stackup. SoC PHY training can compensate static offset but cannot recover from gross impedance discontinuities.

The device uses a multi-rail system (1.8 V VDD1, 1.05 V/0.5 V-class VDDQ/VDD2, 900 mV domain per distributor listings). Power up VDD1 before VDD2/VDDQ and respect the datasheet sequence timing to avoid latch-up. Size the VDDQ regulator for fast load transients - LPDDR5X current steps of several hundred mA occur on bus turnaround. Estimated: a 4 GB device at 7500 Mbps with 30% read activity can draw on the order of 1 A from the VDDQ rail; decouple with bulk ceramic plus multiple 100 nF balls-adjacent capacitors per the datasheet decoupling guidance.

FBGA mobile DRAM has no heatsink; heat exits through the ball side and package top. In PoP stacks, the LPDDR sits beneath the SoC and sees its junction heat - verify junction temperature stays below the +85C specification under worst-case SoC SoC TDP plus DRAM activity. Estimated: with 0.5-1 W DRAM dissipation and 15-20 C/W effective theta_JA in a PoP stack, expect 8-20 C of self-heating, so budget ambient accordingly. Use thermal vias and copper pours under the device on non-PoP boards.

Order-code suffixes encode speed bin, package, and temperature range; the K3L LPDDR5X family includes many near-identical codes (CM vs KC vs KB speed bins, MGC vs EM vs BGC packages). Ordering or substituting a different suffix than validated can produce a board that trains inconsistently or fails at the 7500 Mbps operating point. Lock the exact MPN in the BOM, and verify the SoC memory controller's qualified speed-bin list before second-sourcing within the family.

Compliance Information

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

RoHS compliance confirmed via JLCPCB listing for K3KL8L80CM-MGCT. Other declarations should be confirmed from Samsung official environmental documents for the exact order code.

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

Related Searches

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Related Components & Terms

Samsung Electronics K3LK8L80CM-MGCT K3KL8L80CM-MGCT LPDDR5X LPDDR5 LPDDR (Low Power Double Data Rate) DRAM SDRAM JEDEC low-power memory standard FBGA-315 FBGA BGA surface mount RoHS 7500 Mbps data rate on-device AI automotive infotainment smartphone memory PoP (Package on Package) self-refresh VDDQ Micron Technology Octopart -25C to +85C operating range
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