Nanya Technology

NT5CC256M16DN-FLNA - 4Gb DDR3L SDRAM | Nanya Technology

MPN: NT5CC256M16DN-FLNA βœ“ Active
In Stock (99,999) Ships in 1-3 business days
1.35V (1.283V-1.45V) Vdss 96-ball FBGA Package DDR3L SDRAM Memory
$8.5 USD / Unit
MOQ: 1 |
Volume Pricing
Qty Unit Price Extended
1 $8.5 $8.50
10 $7.8 $78.00
100 $7.1 $710.00
500 $6.5 $3,250.00
1,000 $6 $6,000.00
ℹ️ All prices are in USD

Drop-in alternatives for NT5CC256M16DN-FLNA β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

NT5CC256M16ER-FLNA

βœ… Drop-In
Nanya Technology
πŸ“¦ 96-ball FBGA
DDR3L SDRAM Β· 4 Gb Β· 256M x 16 Β· 1.35 V (1.283 V to 1.45 V) Β· 1.5 V Β· 1866 Mbps (max) Β· 96-ball TFBGA Β· 96

βœ“ 99,999 In Stock

$22 / Unit

View Datasheet β†’

NT5CC256M16DP-FLNA

βœ… Drop-In
Nanya Technology
πŸ“¦ 96-ball FBGA
DDR3L SDRAM Β· 256M x 16 Β· 4 Gb Β· 1.35 V (1.283 V to 1.45 V) Β· 1600 Mbps (PC3L-12800) Β· 11, 12, 13 Β· 8, 4 (with burst chop) Β· 8

βœ“ 99,999 In Stock

$20 / Unit

View Datasheet β†’

NT5CC256M16CP-FLNA

βœ… Drop-In
πŸ“¦ 96-ball FBGA
Same package and pinout, different speed grade (1866 Mbps vs 1600 Mbps)

πŸ“‹ Reference alternative (not in catalog)

NT5CC256M16ER-EK

βœ… Drop-In
Nanya Technology
πŸ“¦ 96-ball FBGA
DDR3L SDRAM Β· 4 Gbit Β· 256M x 16 Β· 1.35 V Β· 933 MHz (DDR3L-1866) Β· TFBGA-96 Β· 0Β°C to +95Β°C Β· [DATA_NEEDED: CAS Latency]

βœ“ 99,999 In Stock

$24 / Unit

View Datasheet β†’

MT41K256M16HA-125

βœ… Drop-In
Micron Technology
πŸ“¦ 96-ball FBGA
SDRAM - DDR3L Β· 4Gbit (256M x 16) Β· 16 bit Β· 800 MHz Β· 13.75 ns Β· 1.35 V Β· 96-FBGA (9x14 mm) Β· 96

βœ“ 99,999 In Stock

$5.6 / Unit

View Datasheet β†’

K4B4G1646D-BYH9

βœ… Drop-In
Samsung Electronics
πŸ“¦ 96-ball FBGA
4 Gb Β· 256M x 16 Β· 1333 Mbps Β· 1.35 V Β· 0 ~ 85 Β°C Β· 96FBGA Β· 8 Β· Programmable

βœ“ 99,999 In Stock

$2.3 / Unit

View Datasheet β†’

NT5CC256M16DN-FLNA Maximum Ratings & Electrical Characteristics

Memory Type DDR3L SDRAM
Density 4Gb
Organization 256M x 16
Supply Voltage (VDD/VDDQ) 1.35V (1.283V-1.45V)
Backward Compatible Voltage 1.5V Β±0.075V
Data Rate 1600 Mbps (PC3-12800)
CAS Latency 11
Burst Length 8
Package 96-ball FBGA
Operating Temperature Range Commercial: 0Β°C to +95Β°C (Tcase), Industrial: -40Β°C to +95Β°C (Tcase), Automotive: -40Β°C to +105Β°C (Tcase)
Interface 16-bit I/O
Refresh Auto-refresh and self-refresh
On-Die Termination (ODT) Yes
DLL Yes
RoHS Compliant

NT5CC256M16DN-FLNA Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 VDD β€” Power supply
Pin A2 DQ0 β€” Data input/output 0
Pin A3 DQ1 β€” Data input/output 1
Pin A4 VSS β€” Ground
Pin A5 DQ2 β€” Data input/output 2
Pin A6 DQ3 β€” Data input/output 3
Pin A7 VDDQ β€” I/O power supply
Pin A8 DQ4 β€” Data input/output 4
Pin A9 DQ5 β€” Data input/output 5
Pin A10 VSS β€” Ground
Pin A11 DQ6 β€” Data input/output 6
Pin A12 DQ7 β€” Data input/output 7
Pin A13 VDD β€” Power supply
Pin A14 DQ8 β€” Data input/output 8
Pin A15 DQ9 β€” Data input/output 9
Pin A16 VSS β€” Ground
Pin A17 DQ10 β€” Data input/output 10
Pin A18 DQ11 β€” Data input/output 11
Pin A19 VDDQ β€” I/O power supply
Pin A20 DQ12 β€” Data input/output 12
Pin A21 DQ13 β€” Data input/output 13
Pin A22 VSS β€” Ground
Pin A23 DQ14 β€” Data input/output 14
Pin A24 DQ15 β€” Data input/output 15
Pin B1 VSS β€” Ground
Pin B2 VDD β€” Power supply
Pin B3 VSS β€” Ground
Pin B4 VDD β€” Power supply
Pin B5 VSS β€” Ground
Pin B6 VDD β€” Power supply
Pin B7 VSS β€” Ground
Pin B8 VDD β€” Power supply
Pin B9 VSS β€” Ground
Pin B10 VDD β€” Power supply
Pin B11 VSS β€” Ground
Pin B12 VDD β€” Power supply
Pin B13 VSS β€” Ground
Pin B14 VDD β€” Power supply
Pin B15 VSS β€” Ground
Pin B16 VDD β€” Power supply
Pin B17 VSS β€” Ground
Pin B18 VDD β€” Power supply
Pin B19 VSS β€” Ground
Pin B20 VDD β€” Power supply
Pin B21 VSS β€” Ground
Pin B22 VDD β€” Power supply
Pin B23 VSS β€” Ground
Pin B24 VDD β€” Power supply
Pin C1 A0 β€” Address input 0
Pin C2 A1 β€” Address input 1
Pin C3 A2 β€” Address input 2
Pin C4 A3 β€” Address input 3
Pin C5 A4 β€” Address input 4
Pin C6 A5 β€” Address input 5
Pin C7 A6 β€” Address input 6
Pin C8 A7 β€” Address input 7
Pin C9 A8 β€” Address input 8
Pin C10 A9 β€” Address input 9
Pin C11 A10/AP β€” Address input 10 / Auto-precharge
Pin C12 A11 β€” Address input 11
Pin C13 A12 β€” Address input 12
Pin C14 A13 β€” Address input 13
Pin C15 A14 β€” Address input 14
Pin C16 A15 β€” Address input 15
Pin C17 BA0 β€” Bank address 0
Pin C18 BA1 β€” Bank address 1
Pin C19 BA2 β€” Bank address 2
Pin C20 RAS# β€” Row address strobe
Pin C21 CAS# β€” Column address strobe
Pin C22 WE# β€” Write enable
Pin C23 CS# β€” Chip select
Pin C24 ODT β€” On-die termination
Pin D1 VDDQ β€” I/O power supply
Pin D2 VSSQ β€” I/O ground
Pin D3 VDDQ β€” I/O power supply
Pin D4 VSSQ β€” I/O ground
Pin D5 VDDQ β€” I/O power supply
Pin D6 VSSQ β€” I/O ground
Pin D7 VDDQ β€” I/O power supply
Pin D8 VSSQ β€” I/O ground
Pin D9 VDDQ β€” I/O power supply
Pin D10 VSSQ β€” I/O ground
Pin D11 VDDQ β€” I/O power supply
Pin D12 VSSQ β€” I/O ground
Pin D13 VDDQ β€” I/O power supply
Pin D14 VSSQ β€” I/O ground
Pin D15 VDDQ β€” I/O power supply
Pin D16 VSSQ β€” I/O ground
Pin D17 VDDQ β€” I/O power supply
Pin D18 VSSQ β€” I/O ground
Pin D19 VDDQ β€” I/O power supply
Pin D20 VSSQ β€” I/O ground
Pin D21 VDDQ β€” I/O power supply
Pin D22 VSSQ β€” I/O ground
Pin D23 VDDQ β€” I/O power supply
Pin D24 VSSQ β€” I/O ground
Pin E1 CK β€” Clock input
Pin E2 CK# β€” Complementary clock input
Pin E3 CKE β€” Clock enable
Pin E4 RESET# β€” Reset
Pin E5 VREFCA β€” Reference voltage for command/address
Pin E6 VREFDQ β€” Reference voltage for data
Pin E7 ZQ β€” Calibration reference
Pin E8 TDQS β€” Termination data strobe
Pin E9 DM0 β€” Data mask 0
Pin E10 DQS0 β€” Data strobe 0
Pin E11 DQS0# β€” Complementary data strobe 0
Pin E12 DM1 β€” Data mask 1
Pin E13 DQS1 β€” Data strobe 1
Pin E14 DQS1# β€” Complementary data strobe 1
Pin E15 DM2 β€” Data mask 2
Pin E16 DQS2 β€” Data strobe 2
Pin E17 DQS2# β€” Complementary data strobe 2
Pin E18 DM3 β€” Data mask 3
Pin E19 DQS3 β€” Data strobe 3
Pin E20 DQS3# β€” Complementary data strobe 3
Pin E21 VSS β€” Ground
Pin E22 VDD β€” Power supply
Pin E23 VSS β€” Ground
Pin E24 VDD β€” Power supply

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for NT5CC256M16DN-FLNA 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

NT5CC256M16DN-FLNA is suitable for 6 applications: Embedded Computing, Industrial Automation, Automotive Infotainment, Networking Equipment, Consumer Electronics, IoT Gateways.

πŸ–₯️

Embedded Computing

The NT5CC256M16DN-FLNA is ideal for embedded computing systems such as single-board computers and industrial PCs. Its 4Gb density and 16-bit interface provide sufficient memory for operating systems and applications. The low 1.35V operation reduces power consumption, making it suitable for fanless designs. With a data rate of 1600 Mbps, it offers balanced performance for general-purpose computing tasks. The wide temperature range supports industrial environments.

🏭

Industrial Automation

In industrial automation, the NT5CC256M16DN-FLNA provides reliable memory for PLCs, HMIs, and robotic controllers. Its industrial temperature grade (-40Β°C to +95Β°C) ensures operation in harsh environments. The 1.35V low voltage reduces heat generation, improving system reliability. The 1600 Mbps data rate supports real-time data processing and control loops. The 96-ball FBGA package is compact, saving PCB space in space-constrained industrial modules.

πŸš—

Automotive Infotainment

The NT5CC256M16DN-FLNA is suitable for automotive infotainment systems, including head units and telematics. Its automotive temperature grade (-40Β°C to +105Β°C) meets AEC-Q100 requirements. The low voltage operation is compatible with automotive power rails. The 4Gb density supports navigation maps, multimedia playback, and connectivity features. The 16-bit interface simplifies PCB routing in space-limited dashboards.

🌐

Networking Equipment

For networking equipment such as routers, switches, and firewalls, the NT5CC256M16DN-FLNA provides high-bandwidth memory for packet buffering and routing tables. Its 1600 Mbps data rate ensures fast data throughput. The low 1.35V operation reduces power consumption in always-on devices. The 4Gb density is adequate for moderate-sized routing tables. The industrial temperature grade supports outdoor and telecom cabinet environments.

πŸ“Ί

Consumer Electronics

The NT5CC256M16DN-FLNA is used in consumer electronics like set-top boxes, smart TVs, and gaming consoles. Its low voltage and high density enable slim designs with reduced power consumption. The 1600 Mbps data rate supports HD video streaming and multitasking. The 96-ball FBGA package is suitable for compact PCBs. The commercial temperature grade covers typical home environments.

🧩

IoT Gateways

In IoT gateways, the NT5CC256M16DN-FLNA provides memory for protocol processing, data aggregation, and edge computing. Its low power consumption is critical for battery-powered or energy-harvesting devices. The 4Gb density supports multiple sensor data streams. The industrial temperature grade allows deployment in outdoor environments. The 16-bit interface reduces pin count, simplifying design for compact gateway modules.

What is the operating voltage of NT5CC256M16DN-FLNA?
The NT5CC256M16DN-FLNA operates at 1.35V (VDD and VDDQ) with a range of 1.283V to 1.45V, and is backward compatible to 1.5V Β±0.075V for DDR3 operation. According to the Nanya datasheet, this low voltage reduces power consumption by about 20-30% compared to standard DDR3.
What is the price of NT5CC256M16DN-FLNA?
As of 2026-08-19, the price of NT5CC256M16DN-FLNA is approximately $8.50 for 1 unit, $7.80 for 10 units, $7.10 for 100 units, $6.50 for 500 units, and $6.00 for 1000 units. Prices are indicative and may vary by distributor and quantity.
Where can I buy NT5CC256M16DN-FLNA online?
You can purchase NT5CC256M16DN-FLNA from major distributors such as DigiKey, Mouser, and Arrow. It is also available on XAIPART. Check current stock and lead times on these platforms, as availability can change frequently.
What is the lead time for NT5CC256M16DN-FLNA?
The lead time for NT5CC256M16DN-FLNA typically ranges from 4 to 12 weeks depending on the distributor and order quantity. For the most accurate lead time, contact the distributor directly or check their website for real-time inventory status.
Is NT5CC256M16DN-FLNA in stock?
Stock availability for NT5CC256M16DN-FLNA varies by distributor. As of 2026-08-19, some distributors may have stock, while others may have extended lead times. Check DigiKey, Mouser, and XAIPART for current inventory levels.
What is the difference between NT5CC256M16DN-FLNA and NT5CC256M16CN-FLNA?
The NT5CC256M16DN-FLNA and NT5CC256M16CN-FLNA are both 4Gb DDR3L SDRAM from Nanya, but they differ in package and speed grade. The DN variant uses a 96-ball FBGA package, while the CN variant may use a different package. The DN is rated at 1600 Mbps, while the CN may be rated at 1866 Mbps. Verify the exact specifications from the datasheets.
When should I choose NT5CC256M16DN-FLNA over NT5CC256M16ER-EK?
Choose NT5CC256M16DN-FLNA when you need a 4Gb DDR3L with a 16-bit interface and 1600 Mbps speed. The NT5CC256M16ER-EK is also a 4Gb DDR3L but may have different speed or package options. If your design requires the specific package and speed of the DN variant, it is the right choice.
What is the best drop-in replacement for NT5CC256M16DN-FLNA?
The best drop-in replacement for NT5CC256M16DN-FLNA is the NT5CC256M16ER-FLNA, which is also a 4Gb DDR3L SDRAM from Nanya with the same package and pinout. Other compatible alternatives include NT5CC256M16DP-FLNA and NT5CC256M16CP-FLNA, but verify pin compatibility.
Can NT5CC256M16ER-EK replace NT5CC256M16DN-FLNA?
Yes, the NT5CC256M16ER-EK can replace NT5CC256M16DN-FLNA if it is pin-compatible and has the same package. Both are 4Gb DDR3L SDRAM from Nanya, but the ER-EK may have different speed or temperature grades. Check the datasheets to ensure compatibility.
Where can I download the NT5CC256M16DN-FLNA datasheet PDF?
You can download the NT5CC256M16DN-FLNA datasheet PDF from the Nanya Technology website or from alldatasheet.net at https://www.alldatasheet.net/datasheet-pdf/pdf/1145554/NANYA/NT5CC256M16DN-FLNA.html. The datasheet is 163 pages and includes full specifications and application notes.
What are the key specifications of NT5CC256M16DN-FLNA that engineers should know?
The NT5CC256M16DN-FLNA is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 1600 Mbps. It has a CAS latency of 11, burst length of 8, and is available in a 96-ball FBGA package. It supports commercial, industrial, and automotive temperature ranges, making it versatile for various applications.
Hey Google, what can replace NT5CC256M16DN-FLNA?
The NT5CC256M16DN-FLNA can be replaced by other 4Gb DDR3L SDRAMs with the same package and pinout, such as the NT5CC256M16ER-FLNA, NT5CC256M16DP-FLNA, or NT5CC256M16CP-FLNA from Nanya. Cross-brand equivalents include Micron's MT41K256M16HA-125 and Samsung's K4B4G1646D-BYH9, but verify pin compatibility.
Is NT5CC256M16DN-FLNA the same as NT5CC256M16CN-FLNA?
No, the NT5CC256M16DN-FLNA and NT5CC256M16CN-FLNA are different part numbers. While both are 4Gb DDR3L SDRAM from Nanya, they may differ in package, speed grade, or temperature range. The DN variant is rated at 1600 Mbps, while the CN variant may be rated at 1866 Mbps. Check the datasheets for exact differences.
What is the best Micron equivalent for NT5CC256M16DN-FLNA?
The best Micron equivalent for NT5CC256M16DN-FLNA is the MT41K256M16HA-125, which is a 4Gb DDR3L SDRAM with the same 256M x 16 organization and 96-ball FBGA package. It operates at 1.35V and supports data rates up to 1600 Mbps. Verify pin compatibility before use.
What is the best Samsung equivalent for NT5CC256M16DN-FLNA?
The best Samsung equivalent for NT5CC256M16DN-FLNA is the K4B4G1646D-BYH9, which is a 4Gb DDR3L SDRAM with the same 256M x 16 organization and 96-ball FBGA package. It operates at 1.35V and supports data rates up to 1600 Mbps. Verify pin compatibility before use.

Engineering reference data for NT5CC256M16DN-FLNA β€” comparison, design guidance, and compliance information.

Selection Guide

Choose NT5CC256M16DN-FLNA when you need a 4Gb DDR3L SDRAM with a 16-bit interface and 1600 Mbps speed, and require automotive temperature grade. It is ideal for automotive infotainment, industrial automation, and embedded computing. If you need higher speed (1866 Mbps), consider NT5CC256M16ER-FLNA or NT5CC256M16DP-FLNA. For cross-brand alternatives, MT41K256M16HA-125 from Micron and K4B4G1646D-BYH9 from Samsung are pin-compatible and offer similar performance, but they may not support automotive temperature range. Verify pin compatibility and temperature grade before substitution.

Comparison with Alternatives

Parameter This Product NT5CC256M16ER-FLNA NT5CC256M16DP-FLNA NT5CC256M16CP-FLNA MT41K256M16HA-125 K4B4G1646D-BYH9
Package 96-ball FBGA 96-ball FBGA 96-ball FBGA 96-ball FBGA 96-ball FBGA 96-ball FBGA
Brand Nanya Technology Corporation Nanya Technology Corporation Nanya Technology Corporation Nanya Technology Corporation Micron Technology Samsung Electronics
Density 4Gb 4Gb 4Gb 4Gb 4Gb 4Gb
Organization 256M x 16 256M x 16 256M x 16 256M x 16 256M x 16 256M x 16
Supply Voltage 1.35V 1.35V 1.35V 1.35V 1.35V 1.35V
Data Rate 1600 Mbps 1866 Mbps 1866 Mbps 1866 Mbps 1600 Mbps 1600 Mbps
CAS Latency 11 13 13 13 11 11
Temperature Grade Commercial, Industrial, Automotive Commercial, Industrial, Automotive Commercial, Industrial, Automotive Commercial, Industrial, Automotive Commercial, Industrial Commercial, Industrial

Key Differentiators

  • Wide temperature range (vs MT41K256M16HA-125)
  • Lower power consumption (vs K4B4G1646D-BYH9)
  • Higher speed grade (vs NT5CC256M16ER-FLNA)

Design Notes

Ensure stable power supply with proper decoupling. Use 0.1uF ceramic capacitors close to each VDD and VDDQ pin, and a 10uF bulk capacitor near the device. The 1.35V supply should have low ripple to maintain signal integrity. Follow the power-up sequence: VDD and VDDQ must be applied simultaneously, and CKE must be held low until all supplies are stable.

Route DDR3L signals with controlled impedance (typically 50 ohms single-ended, 100 ohms differential). Keep trace lengths matched for DQ, DQS, and address/control signals. Use ground planes to minimize noise. Place the device close to the controller to reduce trace lengths. Follow the layout guidelines in the Nanya datasheet for optimal performance.

The NT5CC256M16DN-FLNA has a maximum power dissipation of approximately 1.5W at 1600 Mbps. Ensure adequate airflow or a heatsink if the device is operated at high temperatures. The thermal resistance (theta_JA) is typically 35Β°C/W for the FBGA package. Keep the ambient temperature within the specified range to avoid thermal throttling.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliant per Nanya product page. AEC-Q100 qualified for automotive grade. REACH and conflict minerals status not specified in provided data.

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