LM236H-2.5 National Semiconductor, LM236H-2.5 Datasheet - Page 6

LM236H-2.5

Manufacturer Part Number
LM236H-2.5
Description
Manufacturer
National Semiconductor
Datasheet

Specifications of LM236H-2.5

Fixed / Adjust / Prog
Precision
Output Voltage (max)
2.49V
Reference Voltage Accuracy (max)
1
Load Regulation
6mV
Operating Temp Range
-25C to 85C
Operating Temperature Classification
Commercial
Mounting
Through Hole
Pin Count
3
Package Type
TO-46
Dc
99+
Lead Free Status / Rohs Status
Not Compliant

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Temperature Drift
571528
FIGURE 1. LM136 With Pot for Adjustment
of Breakdown Voltage
(Trim Range = ±120 mV typical)
571527
Application Hints
The LM136 series voltage references are much easier to use
than ordinary zener diodes. Their low impedance and wide
operating current range simplify biasing in almost any circuit.
Further, either the breakdown voltage or the temperature co-
efficient can be adjusted to optimize circuit performance.
Figure 1 shows an LM136 with a 10k potentiometer for ad-
justing the reverse breakdown voltage. With the addition of
R1 the breakdown voltage can be adjusted without affecting
the temperature coefficient of the device. The adjustment
range is usually sufficient to adjust for both the initial device
tolerance and inaccuracies in buffer circuitry.
If minimum temperature coefficient is desired, two diodes can
be added in series with the adjustment potentiometer as
shown in Figure 2. When the device is adjusted to 2.490V the
571529
temperature coefficient is minimized. Almost any silicon sig-
FIGURE 2. Temperature Coefficient Adjustment
nal diode can be used for this purpose such as a 1N914,
(Trim Range = ±70 mV typical)
1N4148 or a 1N457. For proper temperature compensation
the diodes should be in the same thermal environment as the
LM136. It is usually sufficient to mount the diodes near the
LM136 on the printed circuit board. The absolute resistance
of R1 is not critical and any value from 2k to 20k will work.
Low Cost 2 Amp Switching Regulator
571505
*
L1 60 turns #16 wire on Arnold Core A-254168-2
Efficiency
80%
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6

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