TYPE | DESCRIPTION |
---|
Mounting Style | Surface Mount |
Number of Pins | 8 Pin |
Capacitance Tolerance | ±0.05 % |
Case/Package | SOIC-8 |
Input Voltage (DC) | 40.0V (max) |
Output Voltage | 10 V |
Output Current | 10 mA |
Supply Current | 2 mA |
Number of Channels | 1 Channel |
Number of Positions | 8 Position |
Quiescent Current | 1.70 µA |
Input Voltage (Max) | 40 V |
Input Voltage (Min) | 7.2 V |
Output Voltage (Max) | 10.05 V |
Output Voltage (Min) | 10 V |
Output Current (Max) | 10 mA |
Operating Temperature (Max) | 85 ℃ |
Operating Temperature (Min) | -40 ℃ |
Accuracy | ±0.05 % |
Input Voltage | 11.5V ~ 40V |
TYPE | DESCRIPTION |
---|
Product Lifecycle Status | Unknown |
Packaging | Tube |
Size-Length | 5 mm |
Size-Width | 3.988 mm |
Size-Height | 1.498 mm |
Operating Temperature | -40℃ ~ 85℃ |
Temperature Coefficient | ±5 ppm/℃ |
The LT1236 series precision Voltage Reference combines ultralow drift and noise with excellent long-term stability and high output accuracy. The reference output will both source and sink up to 10mA and is almost totally immune to input voltage variations. Two voltages are available - 5 and 10V. The 10V version can be used as a shunt regulator (two-terminal zener) with the same precision characteristics as the three-terminal connection. Special care has been taken to minimize thermal regulation effects and temperature induced hysteresis. The LT1236 combines both superior accuracy and temperature coefficient specifications without the use of high power, on-chip heaters. The LT1236 reference is based on a buried zener diode structure which eliminates noise and stability problems with surface breakdown devices. Further, a subsurface zener exhibits better temperature drift and time stability than even the best band-gap references.
● Operates in series or shunt mode
● Output sinks and sources in series mode
● Minimum input/output differential of 1V
● Pin compatible with AD586 and AD587
● 100% Noise tested
● <1ppm P-P (0.1 to 10Hz) Very low noise
● >100dB Ripple rejection
Linear Technology
13 Pages / 0.22 MByte
Linear Technology
12 Pages / 0.21 MByte
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