The Bay Linear B3431 is a three terminal adjustable shunt
regulator with thermal stability over
Temperature range. Using two external resistors allows the
output voltage to be adjusted from 2.5V to 36V. With a sharp
turn on characteristics the B3431 a superior replacement for
zener diode applications.
.
The B3431 shunt regulator has a tolerance of 0.5% which has
proven to be sufficient to overcome all of the other errors in
the system to virtually eliminate the need for trimming in the
power supply manufacturers assembly line and contribute a
significant cost savings.
Features
• Wide Operating Range …1mA to100mA
• Tight Band Gap Tolera nce ….….…0.5%
• Low Temp. Coefficient…...…...30 ppm/
• Wide temp range of –40 to +105
• Available in SOT-23 package
Applications
• Switching Power Supplies
• Adjustable Power Supplies
• Linear Regulators
• Battery Powered Equipment
• Monitors, TV, VCR
• Instrumentation
o
C
Package Information Ordering & Marking Information
SOT-23-3 (K3) B343 1
SOT-23-3 (K3) B343 1
SOT-23-3 (K3) LM343 1
SOT-23-3 (K3) LM343 1
SOT-23-3 (K3) LM343 1
ANODE
ANODE
ANODE
3
3
3
1
1
1
2
2
2
SOT-23-3 (K3) B343 1
ANODE
ANODE
ANODE
3
3
3
1
1
1
Package Tolerance
0.5% 1% 2%
SOT-23 B3431AK3 B3431BK3 B3431CK3
2
2
2
CATHODE
REF
CATHODE
REF
CATHODE
REFCATHODE
REFCATHODE
REFCATHODE
Top View
Top View
Top View
REF
Top View
Top View
Top View
CATHODE (K)
o
C
REFERENCE
(R)
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
2.5V
+
-
ANODE (A)
Page 2
B3431
Absolute Max Ratings
Parameter Symbol Maximum Units
Cathode Voltage Vz 37 V
Continuous Cathode Current Iz 150 mA
Reference Input Current I
Power Dissipation at TA - 25°C
S0-8
TO-92
SOT-23-3
Thermal Resistance
SOT-23-3
S0-8
TO-92
Operating Junction Temperature Range TJ -40 to +150
Storage Temperature Range T
Lead Temperature (Soldering) 10 seconds T
ESD Rating (Human Body Model) T
10 mA
REF
P
D
OJA
-65 to +150
STG
300
LEAD
2 kV
ESD
750
775
200
575
175
160
mW
C/W
°
C
°
C
°
C
°
Recommended Operating Conditions
Min Max Symbol
Cathode Voltage, Vz V
36 V
REF
Cathode Current, Iz 0.1 150 mA
Electrical Characteristics
.
Unless specified: T
٨ = 25°C
Values in bold apply over full operating ambient temperature
Parameter Symbol Condition Min Typ Max Units
Reference Voltage V
V
Temp Deviation V
REF
Ratio of Change in
V
To Change in V
REF
Reference Input
Current
I
Temperature
REF
Deviation
Off-State Cathode
Current
Dynamic Output
Impedance
Minimum Operating
Current
Z
V
REF
V
DEV
Δ V
REF
ΔVZ
IREF
I
REF(DEV)
I
V
Z (OFF)
rz
I
V
Z(MIN)
= V
Z
= V
Z
IZ = 10mA,ΔV
= 10mA,ΔV
I
Z
R1 = 10kΩ, R2 = ∞,
R1 = 10kΩ, R2 = ∞,
REF
F <1kHz, V
= 1mA to 100mA
I
Z
= 10mA
REF1 IZ
= 10mA
REF1 IZ
= 10V to V
Z
= 36V to 10V
Z
= 10mA
I
Z
= 10mA
I
Z
= 0V, VZ =36V
Z
= V
Z
REF
(1)
(1)
(2)
(2)
(3)
= V
REF
(1)
(1)
0.4 1
2.490 2.50 2.515 V
Ref
-2.7 -1.0
-2.0 -0.4 0.3
0.7
0.20 0.50
.
B3431 0.5%
4 17 mV
mV/V
4
0.4 1.2
0.1 1
µµµµA
µµµµA
µµµµA
Ω
mA
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
Page 3
B3431
Parameter Symbol Condition Min Typ Max Units
Reference Voltage V
V
Temp Deviation V
REF
Ratio of Change in
V
To Change in V
REF
Z
Reference Input
Current
I
Temperature
REF
Deviation
Off-State Cathode
Current
Dynamic Output
Impedance
Minimum Operating
Current
V
REF
V
DEV
Δ V
REF
ΔVZ
IREF
I
REF(DEV)
I
V
Z (OFF)
rz
I
V
Z(MIN)
= V
Z
= V
Z
IZ = 10mA,ΔV
= 10mA,ΔV
I
Z
R1 = 10kΩ, R2 = ∞,
R1 = 10kΩ, R2 = ∞,
REF
F <1kHz, V
= 1mA to 100mA
I
Z
= 10mA
REF1 IZ
= 10mA
REF1 IZ
= 10V to V
Z
= 36V to 10V
Z
= 10mA
I
Z
= 10mA
I
Z
= 0V, VZ =36V
Z
= V
Z
REF
(1)
(1)
2.474 2.50 2.526 V
Ref
-2.7 -1.0
-2.0 -0.4 0.3
(2)
(2)
(3)
= V
REF
(1)
(1)
0.4 1
0.7
0.20 0.50
B3431 1%
4 17 mV
mV/V
4
0.4 1.2
0.1 1
µµµµA
µµµµA
µµµµA
Ω
mA
Parameter Symbol Condition Min Typ Max Units
Reference Voltage V
V
Temp Deviation V
REF
Ratio of Change in
V
To Change in V
REF
Z
Reference Input
Current
I
Temperature
REF
Deviation
Off-State Cathode
Current
Dynamic Output
Impedance
Minimum Operating
Current
V
REF
V
DEV
Δ V
REF
ΔVZ
IREF
I
REF(DEV)
I
V
Z (OFF)
rz
I
V
Z(MIN)
= V
Z
= V
Z
IZ = 10mA,ΔV
= 10mA,ΔV
I
Z
R1 = 10kΩ, R2 = ∞,
R1 = 10kΩ, R2 = ∞,
REF
F <1kHz, V
I
= 1mA to 100mA
Z
= 10mA
REF1 IZ
= 10mA
REF1 IZ
= 10V to V
Z
= 36V to 10V
Z
= 10mA
I
Z
= 10mA
I
Z
= 0V, VZ =36V
Z
= V
Z
REF
(1)
(1)
2.445 2.495 2.545 V
Ref
-2.7 -1.0
-2.0 -0.4 0.3
(2)
(2)
(3)
= V
REF
(1)
(1)
0.4 1
0.7
0.20 0.50
B3431 2%
4 17 mV
mV/V
4
0.4 1.2
0.1 1
µµµµA
µµµµA
µµµµA
Ω
mA
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
Page 4
Calculating Average Temperature Coefficient (TC)
5000
ppm
0.5
Test Circuit
V
IN
I
REF
Figure
mV
%
000
-10
-20
-55
-250255075 100 125
0.06 mV/°C
0.002 %/°C
24 ppm/°C
I
1a. Test Circuit 1
∆
V
REF
Temperature (°C)
V
= V
KA
REF
K
∆Τ
V
IN
R
1
(V
)
REF
R
2
1b. Test Circuit 2
Figure
TC in mV/°C =
TC in ppm/°C =
I
K
TC in %/°C =
V
KA
∆
V
REF
∆
)
∆
V
V
at 25°C
REF
∆
)
∆
V
REF
V
IN
1c. Test Circuit 3
Figure
(mV)
T
A
REF
T
A
V
REF
at 25°C
∆
T
A
B3431
x 100
)
6
x 10
)
V
KA
I
K (OFF)
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
Page 5
TYPICAL PERFORMANCE CURVES
B3431
900
800
Temperature Range: - 0 to 105 °C
700
600
A)
µ
µµ
µ
500
400
300
200
- Cathode Current (
K
I
100
0
-100
-200
100
VKA = 18V
= 0V
V
REF
10
Low Current Operating Characteristics
VKA = V
REF
105 °C
25 °C
-0°C
1.0-1.02.00
VKA - Cathode Voltage (V)
Figure 2
Off State Leakage
High Current Operating Characteristics
150
VKA = V
125
100
- Cathode Current (mA)
K
I
-100
3.0
Temperature Range: - 0 to 105 °C
75
50
25
0
-25
-50
-75
-2-10123
REF
VKA - Cathode Voltage (V)
Figure 3
2.53
2.52
2.51
Reference Voltage vs. Ambient Temperature
VKA = V
REF
IK = 10 mA
1
off - Off State Cathode Current (nA)
0.1
Z
I
0.01
-60-300306090120
TA - Ambient Temperature ( °C)
Figure 4
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
2.50
= 2.500 V at 25 °C
V
2.49
- Reference Voltage (V)
EF
R
V
2.48
2.47
2.46
2.45
REF
-60-3003060
TA - Ambient Temperature ( °C)
Figure 5
90120
Page 6
TYPICAL PERFORMANCE CURVES
B3431
3.0
2.5
A)
µ
µµ
µ
2.0
1.5
1.0
- Reference Input Current (
EF
R
I
0.5
0
-60-300306090120
Reference Input Current
R1 = 10 k
R2 =
IK = 10 mA
TA - Ambient Temperature ( °C)
Figure 6
Noise Voltage
Hz
√
√√
√
70
60
50
40
Ω
∞
0
-10
-20
-30
- Change in Reference Voltage (mV)
-40
REF
V
-50
Reference Voltage Line Regulation
0 °C
25 °C
75 °C
V
- Cathode Voltage (V)
KA
105 °C
1803691215
Figure 7
Low Frequency Dynamic Output Impedance
0.150
0.125
)
Ω
Ω Ω
Ω
0.100
0.075
= V
V
KA
REF
IKA = 1 to 100 mA
1 kHz
f <
30
Noise Voltage nV/
20
10
VKA = V
REF
IK = 10 mA
TA = 25°C
0
101001 k10 k100 k
Bay Linear, Inc
0.050
- Dynamic Impedance (
A
K
Z
0.025
0.0
-60-3003 06090120
f - Frequency (Hz)
Figure 8
TA - Free Air Temperature
Figure 9
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
Page 7
TYPICAL PERFORMANCE CURVES
B3431
100
10
1.0
- Dynamic Impedance
KA
Z
0.1
0.01
1 k10 k100 k1 M
Small Signal Voltage Gain vs. Frequency
70
Temperature Range: -0 to 105 °C
60
50
40
30
Dynamic Output Impedance
TA = 25 °C
= 1 to 100 mA
I
K
f - Frequency (Hz)
= 10 mA
I
K
Figure 10
9 µF
15 k
10 M
OUT
Ω
I
K
230
20
- Small Signal Voltage Gain (dB)
V
A
10
0
1 k10 k100 k1 M10 M
Bay Linear, Inc
8.25 k
GND
f - Frequency (Hz)
Figure 11
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
Page 8
TYPICAL PERFORMANCE CURVES
B3431
6
5
4
3
2
1
Input and Output Voltages (V)
0
-1
100
A: V
B: VKA = 5V at IK = 10 mA
90
C: V
D: V
80
70
60
KA
KA
KA
Stability Boundary Conditions
= V
REF
= 10V at IK = 10 mA
= 15V at IK = 10 mA
Pulse Response
INPUT
OUTPUT
µµµµ
t - Time (
s)
INPUT
MONITOR
fP = 100 kHz
12
11109876543210
Ω
220
Ω
50
OUT
GND
Figure 12
C
Ω
150
50
40
- Cathode Current (mA)
K
I
30
20
10
0
0
10
Bay Linear, Inc
I
K
STABILITY
REGION
T
A
10
= 25 °C
1
A
B
3
2
10
10
C
- Load Capacitance (pF)
L
D
7
6
5
4
10
10
10
10
Figure 13
10 k
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
C
L
Page 9
B3431
Packaging Information
SOT-23
Advance Information
computer simulations and/ or initial prototype evaluation.
0.020 - 0.024
(0.508 - 0.610)
0.110 - 0.120
(2.794 - 3.048)
0.015 - 0.018
(0.381 - 0.457)
0.047 - 0.055
(1.194 - 1.397)
0.035 - 0.040
(0.889 - 1.016)
0.070 - 0.080
(1.778 - 2.032)
0.001 - 0.004
(0.025 - 0.102)
-
These data sheets contain descriptions of products that are in development. The specifications are based on the engineering calculations,
0.030 - 0.041
(0.762 - 1.041)
0.083 - 0.098
(2.108 - 2.489)
0.003 - 0.005
(0.076 - 0.127)
0.018 - 0.024
(0.457 - 0.610)
-
Preliminary Information
subject to change upon the completion of the full characterization over the specified temperature and supply voltage ranges.
These data sheets contain minimum and maximum specifications that are based on the initial device characterizations. These limits are
The application circuit examples are only to explain the representative applications of the devices and are not intended to guarantee any circuit
design or permit any industrial property right to other rights to execute. Bay Linear takes no responsibility for any problems related to any
industrial property right resulting from the use of the contents shown in the data book. Typical parameters can and do vary in different
applications. Customer’s technical experts must validate all operating parameters including “ Typical” for each customer application.
LIFE SUPPORT AND NUCLEAR POLICY
Bay Linear products are not authorized for and should not be used within life support systems which are intended for
surgical implants into the body to support or sustain life, in aircraft, space equipment, submarine, or nuclear facility
applications without the specific written consent of Bay Linear President.
Bay Linear, Inc
2478Armstrong St., Livermore CA USA 9550 Tel: (925) 606-5950, Fax: (925) 940-9556 www.baylinear.com
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