© Semiconductor Components Industries, LLC, 1995
October, 2016 − Rev. 39
1 Publication Order Number:
TL431/D
TL431A, B Series,
NCV431A, B Series,
SCV431A
Programmable
Precision References
The TL431A, B integrated circuits are three−terminal
programmable shunt regulator diodes. These monolithic IC voltage
references operate as a low temperature coefficient zener which is
programmable from V
ref
to 36 V with two external resistors. These
devices exhibit a wide operating current range of 1.0 mA to 100 mA
with a typical dynamic impedance of 0.22 W. The characteristics of
these references make them excellent replacements for zener diodes in
many applications such as digital voltmeters, power supplies, and op
amp circuitry. The 2.5 V reference makes it convenient to obtain a
stable reference from 5.0 V logic supplies, and since the TL431A, B
operates as a shunt regulator, it can be used as either a positive or
negative voltage reference.
Features
Programmable Output Voltage to 36 V
Voltage Reference Tolerance: ±0.4%, Typ @ 25°C (TL431B)
Low Dynamic Output Impedance, 0.22 W Typical
Sink Current Capability of 1.0 mA to 100 mA
Equivalent Full−Range Temperature Coefficient of 50 ppm/°C Typical
Temperature Compensated for Operation over Full Rated Operating
Temperature Range
Low Output Noise Voltage
NCV/SCV Prefixes for Automotive and Other Applications
Requiring Unique Site and Control Change Requirements;
AEC−Q100 Qualified and PPAP Capable
These Devices are Pb−Free, Halogen Free/BFR Free and are RoHS
Compliant
(Top View)
3
1
Reference
N/C
N/C
N/C
2
4
8
7
6
5
N/C
Anode
N/C
Cathode
Anode Anode
TO−92 (TO−226)
LP SUFFIX
CASE 29
PDIP−8
P SUFFIX
CASE 626
SOIC−8
D SUFFIX
CASE 751
Pin 1. Reference
2. Anode
3. Cathode
(Top View)
3
1
Reference
N/C
2
4
8
7
6
5
N/C
Cathode
Micro8E
DM SUFFIX
CASE 846A
8
1
8
1
1
2
3
This is an internally modified SOIC−8 package. Pins 2, 3, 6 an
d
7 are electrically common to the die attach flag. This interna
l
lead frame modification increases power dissipation capabilit
y
when appropriately mounted on a printed circuit board. Th
is
modified package conforms to all external dimensions of th
e
standard SOIC−8 package.
See detailed ordering and shipping information on page 13 o
f
this data sheet.
ORDERING INFORMATION
See general marking information in the device marking
section on page 14 of this data sheet.
DEVICE MARKING INFORMATION
www.onsemi.com
TL431A, B Series, NCV431A, B Series, SCV431A
www.onsemi.com
2
1.0 k
Cathode
(K)
2.5 V
ref
Anode (A)
Reference
(R)
4.0 k
150
Figure 1. Symbol
10 k
20 pF
800
Cathode (K)
3.28 k
Anode (A)
-
+
Anode
(A)
800
Reference
(R)
2.4 k 7.2 k
20 pF
800
Cathode
(K)
Reference
(R)
This device contains 12 active transistors.
Figure 2. Representative Block Diagram
Figure 3. Representative Schematic Diagram
Component values are nominal
MAXIMUM RATINGS (Full operating ambient temperature range applies, unless otherwise noted.)
Rating
Symbol Value Unit
Cathode to Anode Voltage V
KA
37 V
Cathode Current Range, Continuous I
K
−100 to +150 mA
Reference Input Current Range, Continuous I
ref
−0.05 to +10 mA
Operating Junction Temperature T
J
150 °C
Operating Ambient Temperature Range
T
A
°C
TL431I, TL431AI, TL431BI −40 to +85
TL431C, TL431AC, TL431BC 0 to +70
NCV431AI, NCV431B, TL431BV, SCV431AI −40 to +125
Storage Temperature Range T
stg
−65 to +150 °C
Total Power Dissipation @ T
A
= 25°C P
D
W
Derate above 25°C Ambient Temperature
D, LP Suffix Plastic Package 0.70
P Suffix Plastic Package 1.10
DM Suffix Plastic Package 0.52
Total Power Dissipation @ T
C
= 25°C P
D
W
Derate above 25°C Case Temperature
D, LP Suffix Plastic Package 1.5
P Suffix Plastic Package 3.0
ESD Rating (Note 1)
Human Body Model per JEDEC JESD22−A114F
Machine Model per JEDEC JESD22−A115C
Charged Device Model per JEDEC JESD22−C101E
HBM
MM
CDM
>2000
>200
>500
V
Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality
should not be assumed, damage may occur and reliability may be affected.
1. This device contains latch−up protection and exceeds ±100 mA per JEDEC standard JESD78.
RECOMMENDED OPERATING CONDITIONS
Condition Symbol Min Max Unit
Cathode to Anode Voltage V
KA
V
ref
36 V
Cathode Current I
K
1.0 100 mA
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond
the Recommended Operating Ranges limits may affect device reliability.
TL431A, B Series, NCV431A, B Series, SCV431A
www.onsemi.com
3
THERMAL CHARACTERISTICS
Characteristic Symbol
D, LP Suffix
Package
P Suffix
Package
DM Suffix
Package
Unit
Thermal Resistance, Junction−to−Ambient
R
q
JA
178 114 240 °C/W
Thermal Resistance, Junction−to−Case
R
q
JC
83 41 °C/W
ELECTRICAL CHARACTERISTICS (T
A
= 25°C, unless otherwise noted.)
Characteristic Symbol
TL431I TL431C
Unit
Min Typ Max Min Typ Max
Reference Input Voltage (Figure 1)
V
KA
= V
ref
, I
K
= 10 mA
T
A
= 25°C
T
A
= T
low
to T
high
(Note 2)
V
ref
2.44
2.41
2.495
2.55
2.58
2.44
2.423
2.495
2.55
2.567
V
Reference Input Voltage Deviation Over
Temperature Range (Figure 1, Notes 3, 4)
V
KA
= V
ref,
I
K
= 10 mA
DV
ref
7.0 30 3.0 17 mV
Ratio of Change in Reference Input Voltage to Change
in Cathode to Anode Voltage
I
K
= 10 mA (Figure 2),
DV
KA
= 10 V to V
ref
DV
KA
= 36 V to 10 V
D
V
ref
DV
KA
−1.4
−1.0
−2.7
−2.0
−1.4
−1.0
−2.7
−2.0
mV/V
Reference Input Current (Figure 2)
I
K
= 10 mA, R1 = 10 k, R2 =
T
A
= 25°C
T
A
= T
low
to T
high
(Note 2)
I
ref
1.8
4.0
6.5
1.8
4.0
5.2
mA
Reference Input Current Deviation Over
Temperature Range (Figure 2, Note 3)
I
K
= 10 mA, R1 = 10 k, R2 =
DI
ref
0.8 2.5 0.4 1.2
mA
Minimum Cathode Current For Regulation
V
KA
= V
ref
(Figure 1)
I
min
0.5 1.0 0.5 1.0 mA
Off−State Cathode Current (Figure 3)
V
KA
= 36 V, V
ref
= 0 V
I
off
20 1000 20 1000 nA
Dynamic Impedance (Figure 1, Note 5)
V
KA
= V
ref
, DI
K
= 1.0 mA to 100 mA, f 1.0 kHz
|Z
KA
| 0.22 0.5 0.22 0.5
W
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
2. T
low
= −40°C for TL431AIP TL431AILP, TL431IP, TL431ILP, TL431BID, TL431BIP, TL431BILP, TL431AIDM, TL431IDM, TL431BIDM;
=0°C for TL431ACP, TL431ACLP, TL431CP, TL431CLP, TL431CD, TL431ACD, TL431BCD, TL431BCP, TL431BCLP, TL431CDM,
TL431ACDM, TL431BCDM
T
high
= +85°C for TL431AIP, TL431AILP, TL431IP, TL431ILP, TL431BID, TL431BIP, TL431BILP, TL431IDM, TL431AIDM, TL431BIDM
= +70°C for TL431ACP, TL431ACLP, TL431CP, TL431ACD, TL431BCD, TL431BCP, TL431BCLP, TL431CDM, TL431ACDM,
TL431BCDM
3. Guaranteed by design.
4. The deviation parameter DV
ref
is defined as the difference between the maximum and minimum values obtained over the full operating
ambient temperature range that applies.
DV
ref
= V
ref
max
-V
ref
min
DT
A
= T
2
- T
1
T2
Ambient Temperature
T1
V
ref
min
V
ref
max
The average temperature coefficient of the reference input voltage, aV
ref
is defined as:
V
ref
ppm
_C
+
ǒ
D V
ref
V
ref
@25_C
Ǔ
X10
6
D T
A
+
D V
ref
x10
6
D T
A
(V
ref
@25_C)
aV
ref
can be positive or negative depending on whether V
ref
Min or V
ref
Max occurs at the lower ambient temperature. (Refer to Figure 6.)
Example : DV
ref
+ 8.0 mV and slope is positive,
V
ref
@25_C + 2.495 V,DT
A
+ 70_C
a V
ref
+
0.008 x 10
6
70 (2.495)
+ 45.8 ppmń_C
5. The dynamic impedance Z
KA
is defined as:
|Z
KA
| +
D V
KA
D I
K
. When the device is programmed with two external resistors, R1 and R2,
(refer to Figure 2) the total dynamic impedance of the circuit is defined as:
|Z
KA
Ȁ| [ |Z
KA
|
ǒ
1 )
R1
R2
Ǔ

TL431BCLPRAG

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Voltage References 2.5-36V ADJ 1-100mA
Lifecycle:
New from this manufacturer.
Delivery:
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