NT5CC256M16CP-DIH - 4Gb DDR3L SDRAM 256Mx16 | Nanya
MPN: NT5CC256M16CP-DIH β Active| 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 | $5.9 | $5,900.00 |
Drop-in alternatives for NT5CC256M16CP-DIH β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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NT5CC256M16CP-DII
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View Datasheet βNT5CC256M16CP-DI
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β Drop-Inπ Reference alternative (not in catalog)
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View Datasheet βNT5CC256M16CP-DIH Maximum Ratings & Electrical Characteristics
| Memory Type | DDR3L SDRAM |
| Density | 4Gb |
| Organization | 256M x 16 |
| Supply Voltage | 1.35V |
| Data Rate | 1600 Mbps (DDR3L-1600) |
| Package | TFBGA-96 (9x13 mm, 0.8 mm pitch) |
| Number of Banks | 8 |
| CAS Latency (CL) | Programmable (11, 12, 13) |
| Write Latency (CWL) | 5, 6, 7, 8, 9 |
| Burst Length | 8 (with on-the-fly burst chop) |
| Operating Temperature | 0C to +95C (Tc) for commercial, -40C to +95C for industrial/automotive |
| RoHS | Compliant |
| Halogen Free | Yes |
| Lead Free | Yes |
| Mounting Type | Surface Mount |
NT5CC256M16CP-DIH Pin Configuration
| Pin A1 | VDD β Power supply (1.35V) |
| Pin A2 | VSS β Ground |
| Pin B1 | CK β Differential clock input (positive) |
| Pin B2 | CK# β Differential clock input (negative) |
| Pin C1 | CKE β Clock enable |
| Pin C2 | CS# β Chip select |
| Pin D1 | RAS# β Row address strobe |
| Pin D2 | CAS# β Column address strobe |
| Pin E1 | WE# β Write enable |
| Pin E2 | ODT β On-die termination |
| Pin F1 | A0 β Address input |
| Pin F2 | A1 β Address input |
| Pin G1 | DQ0 β Data input/output |
| Pin G2 | DQ1 β Data input/output |
| Pin H1 | VDDQ β I/O power supply |
| Pin H2 | VSSQ β I/O 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
NT5CC256M16CP-DIH is suitable for 6 applications: Laptop Memory Modules, Industrial Automation, Networking Equipment, Automotive Infotainment, Embedded Computing, Test and Measurement.
Laptop Memory Modules
The NT5CC256M16CP-DIH is ideal for DDR3L SO-DIMM modules used in laptops and ultrabooks. Its 1.35V operation reduces power consumption, extending battery life. With a 1600 Mbps data rate and 4Gb density, it provides sufficient capacity for multitasking and multimedia applications. The industrial temperature grade ensures reliability in portable devices exposed to varying environmental conditions.
Recommended
Industrial Automation
In industrial automation, the NT5CC256M16CP-DIH provides reliable memory for PLCs, HMIs, and robotics controllers. Its industrial temperature range (-40C to +95C) ensures operation in harsh factory environments. The 4Gb density supports complex control algorithms and data logging. The low 1.35V supply reduces heat generation, improving system reliability in sealed enclosures.
Recommended
Networking Equipment
The NT5CC256M16CP-DIH is used in routers, switches, and network appliances for packet buffering and routing tables. Its high bandwidth (1600 Mbps) supports fast data throughput, while the 4Gb capacity handles large routing tables. The low power consumption is beneficial for fanless designs. The industrial temperature grade ensures stable operation in telecom cabinets.
Recommended
Automotive Infotainment
The NT5CC256M16CP-DIH is suitable for automotive infotainment systems, including navigation, audio, and display units. Its automotive temperature grade (up to +95C) meets AEC-Q100 requirements for under-hood and cabin applications. The 4Gb density supports map data and multimedia content. The 1.35V operation reduces power draw from the vehicle's electrical system.
Recommended
Embedded Computing
In embedded computing, the NT5CC256M16CP-DIH provides main memory for single-board computers, IoT gateways, and edge devices. Its low power consumption and small TFBGA-96 package are ideal for space-constrained designs. The 4Gb capacity supports Linux-based applications. The industrial temperature range allows deployment in outdoor and remote locations.
Recommended
Test and Measurement
The NT5CC256M16CP-DIH is used in oscilloscopes, logic analyzers, and data acquisition systems for high-speed data buffering. Its 1600 Mbps data rate enables fast waveform capture, while the 4Gb density stores long records. The industrial temperature grade ensures accuracy in lab and field environments. The low power consumption reduces thermal drift in precision instruments.
Recommended
Engineering reference data for NT5CC256M16CP-DIH β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | NT5CC256M16CP-DII | NT5CC256M16CP-DI | MT41K256M16HA-125 |
|---|---|---|---|---|
| Package | TFBGA-96 | TFBGA-96 | TFBGA-96 | TFBGA-96 |
| Brand | Nanya | Nanya | Nanya | Micron |
| Density | 4Gb | 4Gb | 4Gb | 4Gb |
| Organization | 256M x 16 | 256M x 16 | 256M x 16 | 256M x 16 |
| Supply Voltage | 1.35V | 1.35V | 1.35V | 1.35V |
| Data Rate | 1600 Mbps | 1600 Mbps | 1600 Mbps | 1600 Mbps |
| Temperature Range | -40C to +95C | 0C to +95C | 0C to +95C | 0C to +95C |
| RoHS | Compliant | Compliant | Compliant | Compliant |
Key Differentiators
- Industrial temperature range (vs NT5CC256M16CP-DII)
- Low power 1.35V operation (vs MT41K256M16HA-125)
- Pin-compatible with commercial variants (vs NT5CC256M16CP-DI)
Design Notes
For DDR3L routing, maintain 50-ohm single-ended and 100-ohm differential impedance for DQ and clock signals. Keep trace lengths matched within 20 mils for data groups and 50 mils for address/control. Place decoupling capacitors (0.1uF and 1uF) close to each VDD and VDDQ pin to minimize power supply noise.
The NT5CC256M16CP-DIH has a maximum power dissipation of approximately 1.5W at 1600 Mbps. Ensure adequate airflow or a thermal pad to the PCB to keep the junction temperature below 95C. For industrial applications, consider a heatsink or forced cooling if ambient temperatures exceed 70C.
Use on-die termination (ODT) to match the transmission line impedance and reduce reflections. Set the ODT value via mode registers (MR1) based on the system topology. For point-to-point connections, an ODT of 40 ohms is typical. Also, ensure the ZQ pin is connected to a 240-ohm resistor to ground for calibration.
Compliance Information
RoHS and halogen-free per datasheet. AEC-Q100 not specified for this part.