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TL432CDBVR Datasheet(PDF) 26 Page - Texas Instruments

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Part # TL432CDBVR
Description  TL431, TL432 Precision Programmable Reference
PDF  79 Pages
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

TL432CDBVR Datasheet(HTML) 26 Page - Texas Instruments

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9.2.2 Shunt Regulator/Reference
REF
CATHODE
ANODE
R2
VSUP
RSUP
R1
VO
(
R1
Vref
0.1%
R2
0.1%
TL431
= 1 +
Vref
)
CL
Figure 9-3. Shunt Regulator Schematic
9.2.2.1 Design Requirements
For this design example, use the parameters listed in Table 9-1 as the input parameters.
Table 9-2. Design Parameters
DESIGN PARAMETER
EXAMPLE VALUE
Reference Initial Accuracy
1.0 %
Supply Voltage
24V
Cathode Current (Ik)
5mA
Output Voltage Level
2.5V- 36V
Load Capacitance
10μF
Feedback Resistor Values and Accuracy (R1 & R2)
10kΩ
9.2.2.2 Detailed Design Procedure
When using TL431 as a Shunt Regulator, determine the following:
• Input Voltage Range
• Temperature Range
• Total Accuracy
• Cathode Current
• Reference Initial Accuracy
• Output Capacitance
9.2.2.2.1 Programming Output/Cathode Voltage
In order to program the cathode voltage to a regulated voltage a resistive bridge must be shunted between
the cathode and anode pins with the mid point tied to the reference pin. This can be seen in Figure 9-3, with
R1 & R2 being the resistive bridge. The cathode/output voltage in the shunt regulator configuration can be
approximated by the equation shown in Figure 9-3. The cathode voltage can be more accuratel determined by
taking in to account the cathode current:
Vo=(1+R1/R2)*VREF-IREF*R1
In order for this equation to be valid, TL43xx must be fully biased so that it has enough open loop gain
to mitigate any gain error. This can be done by meeting the Imin spec denoted in Electrical Characteristics,
TL431C, TL432C.
TL431, TL432
SLVS543S – AUGUST 2004 – REVISED MAY 2024
www.ti.com
26
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Copyright © 2024 Texas Instruments Incorporated
Product Folder Links: TL431 TL432



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