The TLV431 and TLV431A are low-voltage
three-terminal adjustable voltage references with
specified thermal stability over applicable
industrial and commercial temperature ranges.
Output voltage can be set to any value between
V
(1.24 V) and 6 V with two external resistors
ref
(see Figure 2). The TL V431 and TLV431A operate
from a lower voltage (1.24 V) than the widely used
TL431 and TL1431 shunt-regulator references.
When used with an optocoupler, the TLV431 and
TL V431A are ideal voltage references in isolated
feedback circuits for 3-V to 3.3-V switching-mode
power supplies. These devices have a typical
output impedance of 0.25 Ω. Active output
circuitry provides a very sharp turn-on
characteristic, making the TLV431 and TLV431A
excellent replacements for low-voltage zener
diodes in many applications, including onboard
regulation and adjustable power supplies.
ref
to 6 V
D PACKAGE
(TOP VIEW)
CATHODE
ANODE
ANODE
NC – No internal connection
NC
NC
CATHODE
NC – No internal connection
1
2
3
NC
4
DBV PACKAGE
(TOP VIEW)
1
2
3
LP PACKAGE
(TOP VIEW)
5
4
REF
8
ANODE
7
ANODE
6
NC
5
ANODE
REF
CATHODE
ANODE
REF
The TLV431C and TLV431AC devices are characterized for operation from 0°C to 70°C. The TLV431I and
TLV431AI devices are characterized for operation from –40°C to 85°C.
AVAILABLE OPTIONS
T
A
0°C to 70°C
–40°C to 85°C
The LP package is available taped and reeled. Add the suffix R to the device type
(e.g., TLV431ACLPR). The D and DBV are available only taped and reeled (e.g.,
TLV431IOR). Chip forms are tested at 25°C.
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of Texas Instruments
standard warranty. Production processing does not necessarily include
testing of all parameters.
Lead temperature 1,6 mm (1/16 inch) from case for 10 seconds 260°C. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Storage temperature range, T
†
Stresses beyond those listed under “absolute maximum ratings” may cause permanent damage to the device. These are stress ratings only, and
functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not
implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.
NOTES: 1. Voltage values are with respect to the anode terminal unless otherwise noted.
2. Maximum power dissipation is a function of TJ(max),
ambient temperature is PD = (TJ(max) – TA)/
3. The package thermal impedance is calculated in accordance with JESD 51, except for through-hole packages, which use a trace
length of zero.
, and TA. The maximum allowable power dissipation at any allowable
θ
JA
JA
. Operating at the absolute maximum TJ of 150°C can impact reliability.
recommended operating conditions
MINMAXUNIT
Cathode voltage, V
Cathode current, I
p
KA
K
p
A
TLV431C, TLV431AC070
TLV431I, TLV431AI–4085
V
ref
0.115mA
6V
°
†
POST OFFICE BOX 655303 • DALLAS, TEXAS 75265
3
TLV431, TLV431A
PARAMETER
TEST CONDITIONS
UNIT
LOW-VOLTAGE ADJUSTABLE PRECISION SHUNT REGULATORS
SLVS139C – JULY 1996 – REVISED JULY 1999
electrical characteristics at 25°C free-air temperature (unless otherwise noted)
TLV431CTLV431I
MINTYPMAXMINTYPMAX
TA = 25°C1.2221.24 1.258 1.2221.24 1.258
V
ref
V
ref(dev)
∆V
ref
∆
V
KA
I
ref
I
ref(dev)
I
K(min)
I
K(off)
Ť
z
KA
NOTES: 4. Full range is –40°C to 85°C for the TLV431I, and 0°C to 70°C for the TLV431C.
Reference voltage
V
deviation
ref
over full temperature range
(see Note 5)
Ratio of V
in cathode voltage change
Reference terminal current
I
deviation
ref
over full temperature range
(see Note 5)
Minimum cathode current
for regulation
Off-state cathode current
Dynamic impedance
Ť
(see Note 6)
5. The deviation parameters V
over the rated temperature range. The average full-range temperature coefficient of the reference input voltage,
as:
Ť
a
where:
∆TA is the rated operating temperature range of the device.
change
ref
ppm
ǒ
Ť
V
°C
ref
ǒ
V
Ǔ
+
VKA = V
IK = 10 mA
VKA = V
(see Note 4 and Figure 1)
IK = 10 mA,
(see Figure 2)
IK = 10 mA, R1 = 10 kΩ, R2 = open
(see Figure 2)
IK = 10 mA, R1 = 10 kΩ, R2 = open
(see Note 4 and Figure 2)
VKA = V
VKA = 6 V,
(see Figure 3)
VKA = V
IK = 0.1 mA to 15 mA
(see Figure 1)
ref(dev)
V
)
ref(dev
Ǔ
at 25°C
ref
D
T
A
and I
10
6
,
ref
TA = full range
(see Note 4 and
Figure 1)
, IK = 10 mA,
ref
VKA = V
(see Figure 1)55805580µA
ref
V
ref
, f ≤ 1 kHz,
ref
are defined as the differences between the maximum and minimum values obtained
ref(dev)
= 0
ref
to 6 V,
1.211.27 1.2021.278
412620mV
–1.5–2.7–1.5–2.7mV/V
0.150.50.150.5µA
0.050.30.10.4µA
0.0010.10.0010.1µA
0.250.40.250.4Ω
a
V
ref
V
, is defined
4
can be positive or negative, depending on whether minimum V
a
V
ref
temperature.
D
V
6. The dynamic impedance is defined as:
When the device is operating with two external resistors (see Figure 2), the total dynamic impedance of the circuit is given by:
D
KA
V
Ť
+
D
I
[Ťz
KA
Ť
Ť
z
ǒ1
)
R1
R2
Ť
z
KA
Ǔ
POST OFFICE BOX 655303 • DALLAS, TEXAS 75265
KA
Ť
+
D
I
KA
or maximum V
ref
, respectively, occurs at the lower
ref
PARAMETER
TEST CONDITIONS
UNIT
TLV431, TLV431A
LOW-VOLTAGE ADJUSTABLE PRECISION SHUNT REGULATORS
SLVS139C – JULY 1996 – REVISED JULY 1999
electrical characteristics at 25°C free-air temperature (unless otherwise noted)123
TLV431ACTLV431AI
MINTYPMAXMINTYPMAX
TA = 25°C1.2281.24 1.252 1.2281.24 1.252
V
ref
V
ref(dev)
∆V
ref
∆
V
KA
I
ref
I
ref(dev)
I
K(min)
I
K(off)
Ť
z
KA
NOTES: 4. Full range is –40°C to 85°C for the TLV431I, and 0°C to 70°C for the TLV431C.
Reference voltage
V
deviation
ref
over full temperature range
(see Note 5)
Ratio of V
in cathode voltage change
Reference terminal current
I
deviation
ref
over full temperature range
(see Note 5)
Minimum cathode current
for regulation
Off-state cathode current
Dynamic impedance
Ť
(see Note 6)
5. The deviation parameters V
over the rated temperature range. The average full-range temperature coefficient of the reference input voltage,
as:
Ť
a
V
ref
where:
∆TA is the rated operating temperature range of the device.
Ť
ǒ
ppm
°C
change
ref
Ǔ
+
V
ref(dev
ǒ
V
at 25°C
ref
VKA = V
IK = 10 mA,
VKA = V
(see Note 4 and Figure 1)
IK = 10 mA,
(see Figure 2)
IK = 10 mA,
(see Figure 2)
IK = 10 mA, R1 = 10 kΩ, R2 = open
(see Note 4 and Figure 2)
VKA = V
VKA = 6 V,
(see Figure 3)
VKA = V
IK = 0.1 mA to 15 mA
(see Figure 1)
ref(dev)
)
Ǔ
10
D
T
A
and I
6
,
ref
TA = full range,
(see Note 4 and
Figure 1)
, IK = 10 mA
ref
VKA = V
R1 = 10 kΩ0.150.50.150.5µA
(see Figure 1)55805580µA
ref
V
ref
, f ≤ 1 kHz,
ref
are defined as the differences between the maximum and minimum values obtained
ref(dev)
= 0,
ref
to 6 V
1.2211.259 1.2151.265
412620mV
–1.5–2.7–1.5–2.7
0.050.30.10.4µA
0.0010.10.0010.1µA
0.250.40.250.4Ω
a
V
ref
V
mV/V
, is defined
can be positive or negative, depending on whether minimum V
a
V
ref
temperature.
D
V
6. The dynamic impedance is defined as:
When the device is operating with two external resistors (see Figure 2), the total dynamic impedance of the circuit is given by:
D
KA
V
Ť
+
D
I
[Ťz
KA
Ť
ǒ1
Ť
z
)
R1
R2
Ť
z
KA
Ǔ
POST OFFICE BOX 655303 • DALLAS, TEXAS 75265
KA
Ť
+
D
I
KA
or maximum V
ref
, respectively, occurs at the lower
ref
5
Loading...
+ 10 hidden pages
You need points to download manuals.
1 point = 1 manual.
You can buy points or you can get point for every manual you upload.