5962-8871901MXA - 12-Bit Quad DAC, 28-CDIP | Analog Devices
MPN: 5962-8871901MXA β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $307.21 | $307.21 |
| 10 | $290 | $2,900.00 |
| 100 | $275 | $27,500.00 |
| 500 | $260 | $130,000.00 |
| 1,000 | $250 | $250,000.00 |
Drop-in alternatives for 5962-8871901MXA 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:
AD664TD-BIP/883B
β Drop-Inπ Reference alternative (not in catalog)
AD664SD-BIP/883B
β Drop-Inπ Reference alternative (not in catalog)
5962-8871902MXA
β Drop-Inπ Reference alternative (not in catalog)
AD664AD-BIP
β Drop-Inπ Reference alternative (not in catalog)
AD664TD-BIP
β Drop-Inπ Reference alternative (not in catalog)
5962-8871901MXA Maximum Ratings & Electrical Characteristics
| Resolution | 12 bit |
| Number of DAC Channels | 4 |
| Output Type | Voltage |
| Settling Time | 10 Β΅s (typical) |
| Output Voltage Range | Β±10 V (bipolar) |
| Supply Voltage | +12 V |
| Interface Type | Parallel (4-, 8-, or 12-bit) |
| Architecture | R-2R Ladder |
| Package | 28-CDIP |
| Operating Temperature Range | -55Β°C to +125Β°C (military) |
| Mounting Type | Through Hole |
| Data Readback | Yes |
| Double-Buffered Input | Yes |
| Reset Function | Yes |
| MIL-STD-883 | Compliant |
5962-8871901MXA Pin Configuration
| Pin 1 | VREF β Reference voltage input |
| Pin 2 | VOUT1 β Analog output channel 1 |
| Pin 3 | AGND β Analog ground |
| Pin 4 | VOUT2 β Analog output channel 2 |
| Pin 5 | VOUT3 β Analog output channel 3 |
| Pin 6 | VOUT4 β Analog output channel 4 |
| Pin 7 | VSS β Negative supply (optional) |
| Pin 8 | DGND β Digital ground |
| Pin 9 | DB0 β Data bit 0 (LSB) |
| Pin 10 | DB1 β Data bit 1 |
| Pin 11 | DB2 β Data bit 2 |
| Pin 12 | DB3 β Data bit 3 |
| Pin 13 | DB4 β Data bit 4 |
| Pin 14 | DB5 β Data bit 5 |
| Pin 15 | DB6 β Data bit 6 |
| Pin 16 | DB7 β Data bit 7 |
| Pin 17 | DB8 β Data bit 8 |
| Pin 18 | DB9 β Data bit 9 |
| Pin 19 | DB10 β Data bit 10 |
| Pin 20 | DB11 β Data bit 11 (MSB) |
| Pin 21 | CS β Chip select (active low) |
| Pin 22 | WR β Write strobe (active low) |
| Pin 23 | LDAC β Load DAC (active low) |
| Pin 24 | CLR β Clear (active low) |
| Pin 25 | A0 β Address bit 0 |
| Pin 26 | A1 β Address bit 1 |
| Pin 27 | VDD β Positive supply (+12V) |
| Pin 28 | VREF β Reference voltage output |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
5962-8871901MXA is suitable for 6 applications: Precision Servo Control, Automatic Test Equipment (ATE), Military Avionics, Industrial Process Control, Waveform Generation, Data Acquisition Systems.
Precision Servo Control
The 5962-8871901MXA provides four 12-bit analog outputs with Β±10V range, ideal for driving servo motors in military and industrial systems. Its double-buffered latches allow simultaneous updates of all channels, ensuring coordinated motion control. The fast 10 Β΅s settling time enables high-bandwidth servo loops, while the military temperature range ensures reliable operation in harsh environments. The R-2R architecture provides monotonic output, critical for smooth motor control without glitches.
Recommended
Automatic Test Equipment (ATE)
In ATE systems, the 5962-8871901MXA generates precise analog stimulus signals for testing electronic modules. Its four independent DAC channels allow simultaneous generation of multiple test signals, reducing test time. The data readback feature enables verification of the programmed values, ensuring test accuracy. The parallel interface supports fast data transfer from the test controller, and the Β±10V output range covers a wide variety of device under test (DUT) requirements. The military-grade reliability minimizes downtime in production test environments.
Recommended
Military Avionics
The 5962-8871901MXA is qualified to MIL-STD-883, making it suitable for avionics systems that demand high reliability. It can be used for flight control surface positioning, where multiple analog outputs are needed to drive actuators. The wide operating temperature range and robust ceramic package withstand the extreme conditions of aerospace environments. The double-buffered inputs allow synchronized updates of all control surfaces, improving flight stability. Its 12-bit resolution provides fine control precision essential for accurate navigation and autopilot systems.
Recommended
Industrial Process Control
In industrial process control, the 5962-8871901MXA provides analog outputs for controlling valves, actuators, and other process equipment. Its four channels allow simultaneous control of multiple loops, improving efficiency. The Β±10V output range is compatible with standard industrial control signals. The device's robust design ensures long-term reliability in factory environments. The parallel interface simplifies integration with PLCs and industrial computers. The data readback feature aids in system diagnostics and calibration, reducing maintenance costs.
Recommended
Waveform Generation
The 5962-8871901MXA can generate arbitrary waveforms by updating its DAC registers at high speed. With a settling time of 10 Β΅s, it can produce waveforms up to 100 kHz. The four channels enable multi-channel waveform generation for applications like phased array radar or audio testing. The double-buffered latches allow glitch-free updates, essential for clean waveform output. The military temperature range ensures stable operation in field-deployed test equipment. The parallel interface supports high-speed data streaming from DSPs or FPGAs.
Recommended
Data Acquisition Systems
The 5962-8871901MXA is used in data acquisition systems to provide analog output for stimulus or control. Its four DAC channels can be used to generate reference voltages or control signals for other components. The data readback feature allows the system to verify the output values, improving overall accuracy. The device's low glitch energy and monotonicity ensure stable outputs. The military-grade qualification makes it suitable for portable or remote data acquisition units. The parallel interface allows easy connection to microcontrollers and DSPs.
Recommended
Recommended Products Summary
Engineering reference data for 5962-8871901MXA β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | AD664TD-BIP/883B | AD664SD-BIP/883B | 5962-8871902MXA |
|---|---|---|---|---|
| Package | 28-CDIP | 28-CDIP | 28-CDIP | 28-CDIP |
| Brand | Analog Devices | Analog Devices | Analog Devices | Analog Devices |
| Resolution | 12 bit | 12 bit | 12 bit | 12 bit |
| Number of Channels | 4 | 4 | 4 | 4 |
| Output Type | Voltage | Voltage | Voltage | Voltage |
| Settling Time | 10 Β΅s | 10 Β΅s | 10 Β΅s | 10 Β΅s |
| Supply Voltage | +12V | +12V | +12V | +12V |
| Temperature Range | -55Β°C to +125Β°C | -55Β°C to +125Β°C | -55Β°C to +125Β°C | -55Β°C to +125Β°C |
Key Differentiators
- Military-grade qualification (vs AD664AD-BIP)
- Data readback feature (vs AD664TD-BIP)
- Quad DAC architecture (vs Single-channel DACs)
Design Notes
The 5962-8871901MXA requires a +12V supply for the analog section. Use a low-noise linear regulator to power VDD and decouple with 10Β΅F tantalum and 0.1Β΅F ceramic capacitors close to the pin. The digital supply (if separate) should be decoupled similarly to prevent digital noise from coupling into the analog output.
For optimal performance, use a ground plane and separate analog and digital ground areas, connecting them at a single point. Place the DAC close to the load to minimize trace inductance. Route digital lines away from analog outputs to reduce crosstalk. Use 4-layer PCB with dedicated power and ground planes for best results.
Ensure the reference input is driven by a low-impedance source, as high impedance can cause errors. Do not exceed the absolute maximum ratings for supply voltage. When using the reset function, ensure the CLR pin is properly pulsed to avoid unintended outputs. Also, verify the timing of the WR and LDAC signals to prevent glitches.
Compliance Information
Military-grade component, likely leaded and not RoHS compliant. Compliance data not provided in verified sources.