NT5CC256M16DP-FLNA - 4Gb DDR3L SDRAM | Nanya Technology
MPN: NT5CC256M16DP-FLNA β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $29.81 | $29.81 |
| 10 | $27.5 | $275.00 |
| 100 | $25 | $2,500.00 |
| 500 | $22 | $11,000.00 |
| 1,000 | $20 | $20,000.00 |
Drop-in alternatives for NT5CC256M16DP-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:
NT5CC256M16DP-DI
β Drop-Inπ Reference alternative (not in catalog)
NT5CC256M16DP-DII
β Drop-Inπ Reference alternative (not in catalog)
MT41K256M16HA-125
β Drop-Inβ 99,999 In Stock
$5.6 / Unit
View Datasheet βIS43TR16512B-125K
β Drop-Inπ Reference alternative (not in catalog)
K4B4G1646E-BYMA
β Drop-Inβ 99,999 In Stock
$11.5 / Unit
View Datasheet βNT5CC256M16DP-FLNA Maximum Ratings & Electrical Characteristics
| Memory Type | DDR3L SDRAM |
| Organization | 256M x 16 |
| Total Density | 4 Gb |
| Supply Voltage | 1.35 V (1.283 V to 1.45 V) |
| Data Rate | 1600 Mbps (PC3L-12800) |
| CAS Latency | 11, 12, 13 |
| Burst Length | 8, 4 (with burst chop) |
| Number of Banks | 8 |
| Interface | SSTL-15 |
| Package | BGA-96 (13x9 mm) |
| Operating Temperature | -40Β°C to +95Β°C (industrial), -40Β°C to +105Β°C (automotive) |
| RoHS | Compliant |
| Lead-Free | Yes |
| Refresh | Auto self-refresh, auto precharge |
| Features | Write leveling, dynamic ODT, ZQ calibration, data mask, asynchronous reset |
NT5CC256M16DP-FLNA Pin Configuration
| Pin A1 | VDD β Power supply (1.35V) |
| Pin A2 | DQ0 β Data input/output 0 |
| Pin A3 | DQ1 β Data input/output 1 |
| Pin B1 | VSS β Ground |
| Pin B2 | DQ2 β Data input/output 2 |
| Pin B3 | DQ3 β Data input/output 3 |
| Pin C1 | VDDQ β I/O power supply |
| Pin C2 | DQ4 β Data input/output 4 |
| Pin C3 | DQ5 β Data input/output 5 |
| Pin D1 | VSSQ β I/O ground |
| Pin D2 | DQ6 β Data input/output 6 |
| Pin D3 | DQ7 β Data input/output 7 |
| Pin E1 | DQS0 β Data strobe 0 |
| Pin E2 | DQS0# β Data strobe 0 complement |
| Pin E3 | VSS β Ground |
| Pin F1 | A0 β Address input 0 |
| Pin F2 | A1 β Address input 1 |
| Pin F3 | A2 β Address input 2 |
| Pin G1 | A3 β Address input 3 |
| Pin G2 | A4 β Address input 4 |
| Pin G3 | A5 β Address input 5 |
| Pin H1 | A6 β Address input 6 |
| Pin H2 | A7 β Address input 7 |
| Pin H3 | A8 β Address input 8 |
| Pin J1 | A9 β Address input 9 |
| Pin J2 | A10/AP β Address input 10 / auto precharge |
| Pin J3 | A11 β Address input 11 |
| Pin K1 | A12 β Address input 12 |
| Pin K2 | A13 β Address input 13 |
| Pin K3 | A14 β Address input 14 |
| Pin L1 | BA0 β Bank address 0 |
| Pin L2 | BA1 β Bank address 1 |
| Pin L3 | BA2 β Bank address 2 |
| Pin M1 | CK β Clock input |
| Pin M2 | CK# β Clock input complement |
| Pin M3 | CKE β Clock enable |
| Pin N1 | CS# β Chip select |
| Pin N2 | RAS# β Row address strobe |
| Pin N3 | CAS# β Column address strobe |
| Pin P1 | WE# β Write enable |
| Pin P2 | ODT β On-die termination |
| Pin P3 | RESET# β Asynchronous reset |
| Pin R1 | ZQ β Calibration reference (240 ohm to ground) |
| Pin R2 | VDD β Power supply |
| Pin R3 | VSS β Ground |
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
NT5CC256M16DP-FLNA is suitable for 6 applications: Networking Equipment, Industrial Automation, Automotive Infotainment, Embedded Computing, Data Acquisition Systems, Medical Devices.
Networking Equipment
The NT5CC256M16DP-FLNA provides high-density, low-power memory for routers and switches. Its 4Gb capacity and 1600 Mbps data rate support high-throughput packet processing. The 1.35V operation reduces power consumption in always-on network devices, while the industrial temperature range ensures reliability in uncontrolled environments. Placed on the memory bus with proper termination, it handles burst traffic efficiently, improving overall system performance.
Recommended
Industrial Automation
In industrial automation, the NT5CC256M16DP-FLNA offers reliable memory for PLCs and robotics controllers. Its wide temperature range (-40Β°C to +95Β°C) and low voltage (1.35V) make it suitable for harsh factory floors. The auto self-refresh and write leveling features ensure data integrity during power fluctuations. It interfaces with industrial microcontrollers via a standard DDR3L bus, providing fast access for real-time control algorithms.
Recommended
Automotive Infotainment
The NT5CC256M16DP-FLNA supports automotive infotainment systems with its automotive temperature grade (-40Β°C to +105Β°C) and high bandwidth. It enables smooth multimedia playback and navigation. The 1.35V operation reduces heat generation in the cabin, and the BGA package withstands vibration. It connects to automotive SoCs via a DDR3L interface, providing fast data access for graphics and audio processing.
Recommended
Embedded Computing
For embedded computing, the NT5CC256M16DP-FLNA offers a balance of density and power efficiency. Its 4Gb capacity is ideal for Linux-based systems and edge computing. The low voltage (1.35V) extends battery life in portable devices. The device supports burst lengths of 8 and 4, optimizing memory throughput. It is compatible with a wide range of application processors, making it a versatile choice for custom embedded designs.
Recommended
Data Acquisition Systems
The NT5CC256M16DP-FLNA is used in data acquisition systems to buffer large amounts of sensor data. Its high data rate (1600 Mbps) allows rapid sampling and storage. The industrial temperature range ensures operation in remote monitoring stations. The auto precharge and data mask features simplify control logic. It interfaces with ADCs and DSPs via a DDR3L bus, enabling high-speed data logging.
Recommended
Medical Devices
In medical devices, the NT5CC256M16DP-FLNA provides reliable memory for imaging and monitoring equipment. Its low power consumption is critical for battery-operated devices. The industrial temperature range ensures stable operation in clinical environments. The device's error-free performance and long lifecycle make it suitable for medical applications. It connects to medical-grade processors, supporting real-time data processing.
Recommended
Recommended Products Summary
Engineering reference data for NT5CC256M16DP-FLNA β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | NT5CC256M16DP-DI | NT5CC256M16DP-DII | MT41K256M16HA-125 | IS43TR16512B-125K | K4B4G1646E-BYMA |
|---|---|---|---|---|---|---|
| Package | BGA-96 (13x9 mm) | BGA-96 (13x9 mm) | BGA-96 (13x9 mm) | BGA-96 (13x9 mm) | BGA-96 (13x9 mm) | BGA-96 (13x9 mm) |
| Brand | Nanya Technology | Nanya Technology | Nanya Technology | Micron Technology | ISSI | Samsung Electronics |
| Density | 4 Gb | 4 Gb | 4 Gb | 4 Gb | 8 Gb | 4 Gb |
| Organization | 256M x 16 | 256M x 16 | 256M x 16 | 256M x 16 | 512M x 16 | 256M x 16 |
| Supply Voltage | 1.35V | 1.35V | 1.35V | 1.35V | 1.35V | 1.35V |
| Data Rate | 1600 Mbps | 1600 Mbps | 1866 Mbps | 1600 Mbps | 1600 Mbps | 1866 Mbps |
| Temperature Range | -40Β°C to +95Β°C (industrial) | -40Β°C to +95Β°C | -40Β°C to +95Β°C | 0Β°C to +95Β°C | -40Β°C to +95Β°C | 0Β°C to +95Β°C |
| CAS Latency | 11, 12, 13 | 11, 12, 13 | 12, 13, 14 | 11, 12, 13 | 11, 12, 13 | 12, 13, 14 |
Key Differentiators
- Industrial and automotive temperature grades (vs MT41K256M16HA-125)
- Lower power consumption at 1.35V (vs K4B4G1646E-BYMA)
- Pin-compatible with multiple Nanya variants (vs IS43TR16512B-125K)
Design Notes
Place decoupling capacitors (0.1uF and 1uF) close to each VDD and VDDQ pin. Use a solid ground plane and minimize trace lengths for DQ and DQS signals. Follow the layout guidelines in the Nanya datasheet to ensure signal integrity at 1600 Mbps.
The BGA-96 package has a thermal resistance of [DATA_NEEDED: theta_JA]. Ensure adequate airflow or a thermal pad for high-temperature operation. In automotive applications, consider the -40Β°C to +105Β°C range and design for heat dissipation.
Connect a 240-ohm resistor from the ZQ pin to ground for calibration. Do not leave the RESET# pin floating; tie it high for normal operation. Ensure the supply voltage is within 1.283V to 1.45V to avoid data corruption.
Compliance Information
RoHS compliant per Nanya datasheet. AEC-Q100 not specified; automotive grade may require additional qualification.