XL236-2.5 SOP8
XL336-2.5 SOP8
XT336-2.5 TO-92
General Description
The XL236-2.5 / XL336-2.5 and XT336-2.5 integrated circuits are precision 2.5V shunt regulator diodes. These
monolithic IC voltage references operate as a lowtemperature-coefficient 2.5V zener with 0.2Ω dynamic impedance. A third terminal on the XL236-2.5 allows the reference voltage and temperature coefficient to be trimmed
easily.
The XL236-2.5 series is useful as a precision 2.5V low
voltage reference for digital voltmeters, power supplies or op
amp circuitry. The 2.5V make it convenient to obtain a stable
reference from 5V logic supplies. Further, since the XL2362.5 operates as a shunt regulator, it can be used as either a
positive or negative voltage reference.
The XT336-2.5 is rated for operation over a 0˚C to +70˚C
temperature range. See the connection diagrams for available packages.
Features
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Low temperature coefficient
Wide operating current of 400 µA to 10 mA
0.2Ω dynamic impedance
± 1% initial tolerance available
Guaranteed temperature stability
Easily trimmed for minimum temperature drift
Fast turn-on
The XL236-2.5 is rated for operation over −55˚C to +125˚C
while the XL336-2.5 is rated over a −25˚C to +85˚C temperature range.
Connection Diagrams
SO Package
TO-92
Plastic Package
Bottom View
Order Number XT336-2.5 TO-92
See NS Package Number Z03A
Typical Applications
Top View
Order Number XL236-2.5
or XL336-2.5 SOP8
See NS Package Number M08A
Wide Input Range Reference
2.5V Reference
XL336-2.5
XL236-2.5
XL336-2.5
†
Adjust to 2.490V
*
Any silicon signal diode
2.5V Reference with Minimum
Temperature Coefficient
1
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
Absolute Maximum Ratings (Note 1)
XT336
0˚C to +70˚C
Soldering Information
Reverse Current
15 mA
Forward Current
10 mA
TO-92 Package (10 sec.)
260˚C
−60˚C to +150˚C
TO-46 Package (10 sec.)
300˚C
Storage Temperature
SO Package
Operating Temperature Range (Note 2)
XL236
−55˚C to +150˚C
XL336
−25˚C to +85˚C
Vapor Phase (60 sec.)
215˚C
Infrared (15 sec.)
220˚C
See AN-450 “Surface Mounting Methods and Their Effect
on Product Reliability” (Appendix D) for other methods of
soldering surface mount devices.
Electrical Characteristics (Note 3)
Parameter
Reverse Breakdown
Voltage
Conditions
XL236-2.5/XL336-2.5
Units
XT336-2.5
Min
Typ
Max
Min
Typ
Max
2.440
2.490
2.540
2.390
2.490 2.590
V
2.465
2.490
2.515
2.440
2.490 2.540
V
2.6
6
2.6
10
mV
0.2
0.6
0.2
1
Ω
1.8
6
mV
3.5
9
mV
7.5
18
mV
12
18
mV
3
10
3
12
mV
1
0.4
1.4
Ω
TA=25˚C, IR=1 mA
XL236-2.5
XL336-2.5
XT336-2.5
Reverse Breakdown
Change
TA=25˚C,
With Current
400 µA≤IR≤10 mA
Reverse Dynamic
Impedance
TA=25˚C, IR=1 mA, f = 100 Hz
Temperature Stability
VR Adjusted to 2.490VIR=1
(Note 4)
mA, Figure 20˚C≤TA≤70˚C
(XL336)−25˚C≤TA≤+85˚C
XL336,XT336
−25˚C ≤ TA ≤ +85˚C (XL336M)
−55˚C≤TA≤+125˚C XL236
Reverse Breakdown
Change
400 µA≤IR≤10 mA
With Current
Reverse Dynamic
Impedance
IR=1 mA
0.4
Long Term Stability
TA=25˚C ± 0.1˚C, IR=1 mA,
20
20
ppm
t = 1000 hrs
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Electrical specifications do not apply when operating the device
beyond its specified operating conditions.
Note 2: For elevated temperature operation, Tj max is:
Thermal Resistance
θja (Junction to Ambient)
XL236
150˚C
XL336
125˚C
XT336
100˚C
TO-92
TO-46
SO-8
180˚C/W (0.4" leads)
440˚C/W
165˚C/W
80˚C/W
n/a
170˚C/W (0.125" lead)
θja (Junction to Case)
n/a
2
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
Typical Performance Characteristics
Reverse Voltage Change
Zener Noise Voltage
Dynamic Impedance
Response Time
Reverse Characteristics
Forward Characteristics
Typical Performance
Characteristics (Continued)
Temperature Drift
XL236
FIGURE 1. XL236 With Pot for Adjustment
of Breakdown Voltage
(Trim Range = ± 120 mV typical)
3
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
Application Hints
The XL236 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
coefficient can be adjusted to optimize circuit performance.
Figure 1 shows an XL236 with a 10k potentiometer for
adjusting 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 temperature coefficient is minimized. Almost any silicon
signal diode can be used for this purpose such as a 1N914,
1N4148 or a 1N457. For proper temperature compensation
the diodes should be in the same thermal environment as
the XL236. It is usually sufficient to mount the diodes near
the XL236 on the printed circuit board. The absolute resistance of R1 is not critical and any value from 2k to 20k will
work.
Application Hints
XL236
FIGURE 2. Temperature Coefficient Adjustment
(Trim Range = ± 70 mV typical)
(Continued)
Low Cost 2 Amp Switching Regulator†
*L1
†
60 turns #16 wire on Arnold Core A-254168-2
Efficiency ≈ 80%
Precision Power Regulator with Low Temperature Coefficient
4
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
5V Crowbar
Trimmed 2.5V Reference with
Temperature Coefficient Independent
of Breakdown Voltage
*Does
Application Hints
not affect temperature coefficient
(Continued)
Adjustable Shunt Regulator
XL336-2.5
Linear Ohmmeter
XL336-2.5
XL336-2.5
5
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
Application Hints
(Continued)
2.5V Square Wave Calibrator
Op Amp with Output Clamped
XL336-2.5
XL236-2.5
5V Buffered Reference
Bipolar Output Reference
XL236-2.5
Low Noise Buffered Reference
XL336-2.5
6
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
Schematic Diagram
7
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
78
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
79
XL236-2.5 SOP8/XL336-2.5 SOP8/XT336-2.5 TO-92
710
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