NT5CC256M16CP-DII - 4Gb DDR3L SDRAM 256Mx16 | Nanya
MPN: NT5CC256M16CP-DII ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $2.97 | $2.97 |
| 10 | $2.85 | $28.50 |
| 100 | $2.65 | $265.00 |
| 500 | $2.45 | $1,225.00 |
| 1,000 | $2.3 | $2,300.00 |
Drop-in alternatives for NT5CC256M16CP-DII — 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:
NT5CC256M16DP-DI
✅ Drop-In📋 Reference alternative (not in catalog)
NT5CC256M16ER-DII
✅ Drop-In📋 Reference alternative (not in catalog)
NT5CC256M16CP-DI
✅ Drop-In✓ 99,999 In Stock
$2.9 / Unit
View Datasheet →MT41K256M16TW-107
✅ Drop-In✓ 99,999 In Stock
$11.66 / Unit
View Datasheet →K4B4G1646E-BYMA
✅ Drop-In✓ 99,999 In Stock
$11.5 / Unit
View Datasheet →IS43TR16512B-125KBLI
✅ Drop-In📋 Reference alternative (not in catalog)
NT5CC256M16CP-DII Maximum Ratings & Electrical Characteristics
| Memory Type | DDR3L SDRAM |
| Organization | 256M x 16 |
| Total Density | 4Gb |
| Clock Frequency | 800 MHz |
| Data Rate | 1600 Mbps |
| Supply Voltage | 1.35 V |
| Temperature Grade | Industrial |
| Package | TFBGA-96 (9x13 mm, 0.8 mm pitch) |
| Number of Terminals | 96 |
| Refresh Cycles | 8192 |
| Access Time | 0.225 ns |
| Technology | CMOS |
| RoHS | Compliant |
| Halogen Free | Yes |
| Operating Temperature Range | -40°C to +95°C |
NT5CC256M16CP-DII Pin Configuration
| Pin A1 | VDD — Power supply |
| Pin A2 | DQ0 — Data input/output 0 |
| Pin A3 | DQ1 — Data input/output 1 |
| Pin A4 | VSS — Ground |
| Pin A5 | DQ2 — Data input/output 2 |
| Pin A6 | DQ3 — Data input/output 3 |
| Pin A7 | VDD — Power supply |
| Pin A8 | DQ4 — Data input/output 4 |
| Pin A9 | DQ5 — Data input/output 5 |
| Pin A10 | VSS — Ground |
| Pin A11 | DQ6 — Data input/output 6 |
| Pin A12 | DQ7 — Data input/output 7 |
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
NT5CC256M16CP-DII is suitable for 6 applications: Networking Equipment, Industrial Automation, Embedded Computing, Automotive Infotainment, Data Center Storage, Medical Devices.
Networking Equipment
The NT5CC256M16CP-DII provides high-density, low-power memory for routers and switches. Its 4Gb density and 1600Mbps data rate support high-throughput packet processing, while the 1.35V operation reduces power consumption in always-on network devices. The industrial temperature grade ensures reliable operation in uncontrolled environments like telecom cabinets.
Recommended
Industrial Automation
In industrial controllers and PLCs, the NT5CC256M16CP-DII offers reliable memory with industrial temperature rating. The 256Mx16 organization provides ample storage for control algorithms and data logging. Its low voltage and high density enable compact, energy-efficient designs for factory floor equipment that must operate 24/7 in harsh conditions.
Recommended
Embedded Computing
For embedded computing modules, the NT5CC256M16CP-DII delivers high memory bandwidth in a small TFBGA-96 package. The 1600Mbps data rate supports demanding applications like real-time data processing and edge computing. The 1.35V supply reduces thermal load, making it suitable for fanless designs in space-constrained systems.
Recommended
Automotive Infotainment
The NT5CC256M16CP-DII is suitable for automotive infotainment systems that require high-density memory for navigation, multimedia, and connectivity. Its industrial temperature grade covers automotive cabin environments, and the low power consumption helps meet vehicle energy budgets. The 4Gb density supports complex user interfaces and multiple applications simultaneously.
Recommended
Data Center Storage
In data center storage controllers, the NT5CC256M16CP-DII provides high-density, low-power memory for caching and buffering. The 1600Mbps data rate enables fast data transfers, while the 1.35V operation reduces power consumption in large-scale deployments. The industrial temperature grade ensures reliability in server rooms with variable cooling.
Recommended
Medical Devices
The NT5CC256M16CP-DII is used in medical imaging and monitoring equipment that require reliable, high-density memory. Its industrial temperature grade supports operation in clinical environments, and the low power consumption is beneficial for portable devices. The 4Gb density allows storage of large image datasets and patient records.
Recommended
Recommended Products Summary
Engineering reference data for NT5CC256M16CP-DII — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | NT5CC256M16DP-DI | NT5CC256M16ER-DII | MT41K256M16TW-107 |
|---|---|---|---|---|
| Package | TFBGA-96 | TFBGA-96 | TFBGA-96 | FBGA-96 |
| Brand | Nanya Technology | Nanya Technology | Nanya Technology | Micron Technology |
| Density | 4Gb | 4Gb | 4Gb | 4Gb |
| Organization | 256M x 16 | 256M x 16 | 256M x 16 | 256M x 16 |
| Clock Frequency | 800 MHz | [DATA_NEEDED] | [DATA_NEEDED] | 933 MHz |
| Supply Voltage | 1.35 V | 1.35 V | 1.35 V | 1.35 V |
| Temperature Grade | Industrial | [DATA_NEEDED] | Industrial | Industrial |
| RoHS | Compliant | Compliant | Compliant | Compliant |
Key Differentiators
- Industrial temperature grade (vs NT5CC256M16CP-DI)
- Low voltage operation (vs MT41K256M16TW-107)
- Halogen-free and RoHS compliant (vs K4B4G1646E-BYMA)
Design Notes
For DDR3L-1600 operation, maintain controlled impedance for data and address lines (typically 40-60 ohms single-ended). Keep trace lengths matched within 50 mils for data byte lanes and within 100 mils for address/command. Place decoupling capacitors (0.1uF and 1uF) close to each VDD and VDDQ pin to minimize power supply noise.
The industrial temperature grade allows operation up to 95°C case temperature. Ensure adequate airflow or heatsinking in high-ambient environments. The 1.35V supply reduces power dissipation compared to 1.5V DDR3, but at 1600Mbps data rates, the device can still generate significant heat. Monitor junction temperature in dense layouts.
Use on-die termination (ODT) to improve signal integrity on the data bus. Configure RTT_Nom via mode register MR1 to match the system's memory topology. For point-to-point connections, a 40-ohm ODT is typical. For multi-rank systems, adjust ODT and drive strength settings to minimize reflections and crosstalk.
Compliance Information
RoHS compliant and halogen-free per datasheets.com and EEWORLD listings. AEC-Q100 not applicable for DRAM.