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TS432AIXRFG Fiches technique(PDF) 2 Page - Taiwan Semiconductor Company, Ltd

No de pièce TS432AIXRFG
Description  Adjustable Precision Shunt Regulator
Download  10 Pages
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Fabricant  TSC [Taiwan Semiconductor Company, Ltd]
Site Internet  http://www.taiwansemi.com
Logo TSC - Taiwan Semiconductor Company, Ltd

TS432AIXRFG Fiches technique(HTML) 2 Page - Taiwan Semiconductor Company, Ltd

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TS432I
Adjustable Precision Shunt Regulator
2/10
Version: C14
Recommend Operating Condition
Parameter
Symbol
Limit
Unit
Cathode Voltage (Note 1)
VKA
18
V
Continuous Cathode Current Range
IK
100
mA
Recommend Operating Condition
Parameter
Symbol
Test Conditions
Min
Typ
Max
Unit
Reference
voltage
TS432AI
VREF
VKA =VREF, IK=10mA (Figure 1)
Ta=25
oC
1.227
1.240
1.252
V
TS432BI
1.233
1.246
Deviation of reference input
voltage
∆VREF
VKA =VREF, IK=10mA
Ta= full range (Figure 1)
--
10
25
mV
Radio of change in Vref to
change in cathode Voltage
∆VREF/∆VKA
IKA=10mA, VKA = 18V to VREF
(Figure 2)
--
-1.0
-2.7
mV/V
Reference Input current
IREF
R1=10K
Ω, R2=
, I
KA=10mA
Ta= full range (Figure 2)
--
0.25
0.5
µA
Deviation of reference input
current, over temp.
∆IREF
R1=10K
Ω, R2=
, I
KA=10mA
Ta= full range (Figure 2)
--
0.04
0.08
µA
Off-state Cathode Current
IKA(off)
VREF=0V (Figure 3),
VKA=18V
--
0.125
0.5
µA
Dynamic Output Impedance
|ZKA|
f<1KHz, VKA=VREF
IKA=1mA to 100mA (Figure 1)
--
0.2
0.4
Minimum operating cathode
current
IKA(min)
VKA=VREF (Figure 1)
--
60
80
µA
* The deviation parameters
∆VREF and ∆IREF are defined as difference between the maximum value and minimum value
obtained over the full operating ambient temperature range that applied.
* The average temperature coefficient of the
reference input voltage,
αV
REF is defined as:
Where: T2-T1 = full temperature change.
α
VREF can be positive or negative depending on whether VREF Min. or VREF Max occurs at the lower ambient
temperature. Example:
∆VREF=7.2mV and the slope is positive, VREF=1.241V at 25
oC, ∆T=125oC
* The dynamic impedance ZKA is defined as:
* When the device operating with two external resistors, R1 and R2, (refer to Figure 2) the total dynamic impedance of
the circuit is given by:


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