
MAX6341CPA+
Obsolete1PPM/°C, LOW-NOISE, +2.5V/+4.096V/+5V VOLTAGE REFERENCES
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MAX6341CPA+
Obsolete1PPM/°C, LOW-NOISE, +2.5V/+4.096V/+5V VOLTAGE REFERENCES
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Technical Specifications
Parameters and characteristics for this part
| Specification | MAX6341CPA+ |
|---|---|
| Current - Output | 15 mA |
| Current - Supply | 3.2 mA |
| Mounting Type | Through Hole |
| Noise - 0.1Hz to 10Hz | 2.4 ppmp-p |
| Noise - 10Hz to 10kHz | 2 µVrms |
| Operating Temperature [Max] | 70 °C |
| Operating Temperature [Min] | 0 °C |
| Package / Case | 8-DIP (0.300", 7.62mm) |
| Reference Type | Series, Buried Zener |
| Supplier Device Package | 8-PDIP |
| Temperature Coefficient | 1 ppm/°C |
| Tolerance | 0.02 % |
| Voltage - Input [Max] | 36 V |
| Voltage - Input [Min] | 8 V |
| Voltage - Output (Min/Fixed) | 4.096 V |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | N/A | 0 | $ 0.00 | |
| 2750 | $ 0.00 | |||
Description
General part information
MAX6341 Series
The MAX6325/MAX6341/MAX6350 are low-noise, precision voltage references with extremely low, 0.5ppm/°C typical temperature coefficients and excellent, ±0.02% initial accuracy. These devices feature buried-zener technology for lowest noise performance. Load-regulation specifications are guaranteed for source and sink currents up to 15mA. Excellent line and load regulation and low output impedance at high frequencies make them ideal for high-resolution data-conversion systems up to 16 bits.The MAX6325 is set for a 2.500V output, the MAX6341 is set for a 4.096V output, and the MAX6350 is set for a 5.000V output. All three provide for the option of external trimming and noise reduction.ApplicationsAutomated Test Equipment (ATE)Digital VoltmetersHigh-Accuracy Industrial and Process ControlHigh-Accuracy Reference StandardHigh-Resolution A/D and D/A ConvertersPrecision Current Sources
Documents
Technical documentation and resources