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Hello, Please ask a question about REF01CH Datasheet
# Example questions:
➢ What is the typical output voltage change with temperature (∆v/∆t) for the ref-01c and ref-02c models?
➢ What is the typical output voltage change with temperature for the ref-01c and ref-02c models, according to the first table?
➢ How does the load regulation (∆vout/∆iout) compare between the ref-01c/ref-02c and ref-02d models when the current ranges from 0ma to 5ma?
1. General Variants & Temperature Range
️· Variants: The data covers several variants: A/E, H, C, and D. A/E and H are differentiated by temperature operation range and regulation performance. C and D seem to be aimed at slightly different performance characteristics, but with less emphasis on extreme temperature ranges.
️· Temperature Range:
- A/E: 0°C to 70°C (Good for moderate temperature environments). A/E also supports –55°C to 125°C
- H: 0°C to 70°C, but with specified regulation figures.
- C/D: Not explicitly temperature-range limited within these tables.
2. Input Voltage & Output Voltage
️· The data seems to assume a fixed input voltage of 15V (V=15V) and implies an output voltage being regulated by the device.
️· Line regulation specifies tolerance based on input voltage changes from 8V to 30V (Variant C/D).
3. Output Voltage Regulation
️· Line Regulation (ΔVOUT/ΔVIN):
- A/E: 0.0001%/V to 0.015%/V (depending on temperature)
- C/D: 0.0001%/V to 0.05%/V (within the 8V - 30V input range)
- H: 0.0001%/V to 0.018%/V
️· Load Regulation (ΔVOUT/ΔIOUT):
- A/E: 0.002%/mA to 0.012%/mA (depending on temperature)
- C/D: 0.002%/mA to 0.05%/mA
- H: 0.002%/mA to 0.018%/mA
️· Output Voltage Change with Temperature (ΔV/ΔT):
- A/E: 0.45% to 1.7% (depending on temperature)
- H: 0.45% to 1.7%
️· Output Voltage Temperature Coefficient (TC):
- A/E: 8 ppm/°C to 65 ppm/°C
- C: 8 ppm/°C to 250 ppm/°C
- H: 8 ppm/°C to 65 ppm/°C
️· Change in VO Temperature Coefficient with Output Adjustment: 0.5 ppm/% for all variants.
4. Other Parameters
️· Output Voltage Temperature Coefficient (Temperature Voltage Output Temperature Coefficient): 2.1 mV/°C for REF-02.
️· Short-Circuit Protection: Not explicitly mentioned, assume standard protection mechanisms are employed.
Key Differences & Considerations:
️· A/E vs. H: The A/E variants offer a wider operating temperature range than the H variant. However, at lower temperatures the H variant has the higher regulation specs.
️· C/D vs A/E/H: C/D have lower performance specs in terms of regulation, but seem designed for wider input voltages.
️· Temperature Sensitivity: The C/D variant has a higher temperature coefficient, so the output voltage would change more with temperature variations.
1. General Variants & Temperature Range
️· Variants: The data covers several variants: A/E, H, C, and D. A/E and H are differentiated by temperature operation range and regulation performance. C and D seem to be aimed at slightly different performance characteristics, but with less emphasis on extreme temperature ranges.
️· Temperature Range:
- A/E: 0°C to 70°C (Good for moderate temperature environments). A/E also supports –55°C to 125°C
- H: 0°C to 70°C, but with specified regulation figures.
- C/D: Not explicitly temperature-range limited within these tables.
2. Input Voltage & Output Voltage
️· The data seems to assume a fixed input voltage of 15V (V=15V) and implies an output voltage being regulated by the device.
️· Line regulation specifies tolerance based on input voltage changes from 8V to 30V (Variant C/D).
3. Output Voltage Regulation
️· Line Regulation (ΔVOUT/ΔVIN):
- A/E: 0.0001%/V to 0.015%/V (depending on temperature)
- C/D: 0.0001%/V to 0.05%/V (within the 8V - 30V input range)
- H: 0.0001%/V to 0.018%/V
️· Load Regulation (ΔVOUT/ΔIOUT):
- A/E: 0.002%/mA to 0.012%/mA (depending on temperature)
- C/D: 0.002%/mA to 0.05%/mA
- H: 0.002%/mA to 0.018%/mA
️· Output Voltage Change with Temperature (ΔV/ΔT):
- A/E: 0.45% to 1.7% (depending on temperature)
- H: 0.45% to 1.7%
️· Output Voltage Temperature Coefficient (TC):
- A/E: 8 ppm/°C to 65 ppm/°C
- C: 8 ppm/°C to 250 ppm/°C
- H: 8 ppm/°C to 65 ppm/°C
️· Change in VO Temperature Coefficient with Output Adjustment: 0.5 ppm/% for all variants.
4. Other Parameters
️· Output Voltage Temperature Coefficient (Temperature Voltage Output Temperature Coefficient): 2.1 mV/°C for REF-02.
️· Short-Circuit Protection: Not explicitly mentioned, assume standard protection mechanisms are employed.
Key Differences & Considerations:
️· A/E vs. H: The A/E variants offer a wider operating temperature range than the H variant. However, at lower temperatures the H variant has the higher regulation specs.
️· C/D vs A/E/H: C/D have lower performance specs in terms of regulation, but seem designed for wider input voltages.
️· Temperature Sensitivity: The C/D variant has a higher temperature coefficient, so the output voltage would change more with temperature variations.
| Part No. | REF01CH |
| Manufacturer | LINER |
| Size | 100 Kbytes |
| Pages | 8 pages |
| Description | Precision Voltage References |
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