Analog Devices Fixed Shunt Voltage Reference 1.225V ±1.2 % 3-Pin TO-92, LT1034BIZ-1.2#PBF

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Packaging Options:
RS Stock No.:
884-6983
Mfr. Part No.:
LT1034BIZ-1.2#PBF
Brand:
Analog Devices
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Brand

Analog Devices

Nominal Voltage

1.225V

Package Type

TO-92

Reference Type

Fixed

Initial Accuracy

±1.2 %

Mounting Type

Through Hole

Topology

Shunt

Maximum Output Voltage

1.225 V

Pin Count

3

Dimensions

4.572 x 3.556 x 4.572mm

Minimum Operating Temperature

-40 °C

Length

4.57mm

Height

4.572mm

Width

3.556mm

Maximum Operating Temperature

+85 °C

Voltage Reference, Up to 2.048V, Linear Technology


Linear Technology provides a range of series and shunt precision voltage references. Series voltage references behave like a 3 terminal regulator and shunt voltage references perform like Zener diodes. The LTC voltage references offer accuracy and low drift over time and temperature. .A series voltage reference can also operate in shunt mode; they can draw only load and quiescent current from the input supply. With shunt voltage references the bias current must be set higher. Since shunt voltage references are typically biased with a resistor the voltage reference will work on a range of input voltages. Typical applications include power supply monitor, current loop measurement and control systems, digital voltmeters and 8-bit A/D and D/A reference.

Shunt precision voltage references:
Accuracy and temperature stability with low noise
Series voltage references:
Low dropout, low power and excellent line regulation


Voltage References, Linear Technology


Linear Technology produces a wide range of series and shunt precision voltage references. Series types operate in the same manner as 3-terminal voltage regulators whilst shunt references perform in the same way as zener diodes. Linear Technology voltage references offer accuracy and low drift over time and temperature. Typical applications include precision measurement systems, power supply monitoring, current loop measurement and control systems, digital voltmeters and A/D and D/A references.