ZTL432AFFTA [ZETEX]
Cost effective adjustable precision shunt regulator; 成本效益的可调节精密并联稳压器型号: | ZTL432AFFTA |
厂家: | ZETEX SEMICONDUCTORS |
描述: | Cost effective adjustable precision shunt regulator |
文件: | 总12页 (文件大小:423K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
ZTL431, ZTL432
Cost effective adjustable precision shunt regulator
Description
The ZTL431 and ZTL432 are three terminal The ZTL432 has the same electrical specifications
adjustable shunt regulators offering excellent as the ZTL431 but has a different pin out in
temperature stability and output current SOT23 (F-suffix) and SOT23F (FF-suffix).
handling capability up to 100mA. The output
voltage may be set to any chosen voltage Both variants are available in 2 grades with
between 2.5 and 20 volts by selection of two initial tolerances of 1% and 0.5% for the A and
external divider resistors.
B grades respectively.
The devices can be used as a replacement for These are functionally equivalent to the TL431/
zener diodes in many applications requiring an TL432 except for maximum operation voltage,
improvement in zener performance.
and have an ambient temperature range of -40
to 125°C as standard.
Features
Applications
•
•
Temperature range ................ -40 to 125°C
Reference voltage tolerance at 25°C
•
•
•
•
Opto-coupler linearization
Linear regulators
•
•
0.5% ..................................... B grade
1% ......................................... A grade
Improved zener
Variable reference
•
•
•
•
Low output noise
0.2 typical output impedance
Sink current capability ...... 1mA to 100mA
Adjustable output voltage...... V
to 20V
REF
Pin connections
ZTL431_F SOT23
ZTL432_F SOT23
ZTL431_FF SOT23F
ZTL432_FF SOT23F
ZTL431_H6 SC70-6
(top view)
(top view)
(top view)
Cathode 1
6 Anode
Ref
1
Cathode 1
2
5
*
3 Anode
3
Anode
*
Preview
Cathode 2
Ref
NC
4
2
3
REF
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
1
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ZTL431, ZTL432
Ordering information
Status*
Tol.
Order code
Pack
Part mark
Reel Size
Tape width
(mm)
Quantity
per reel
ZTL431A
31A
ZTL431ACSTZ
ZTL431AE5TA
TO92
Active
Concertina
7”, 180mm
N/A
8
1500
3000
Preview*
Active
SOT23-5
31A
31A
31A
ZTL431AFFTA
ZTL431AFTA
ZTL431AH6TA
SOT23F
SOT23
SC70-6
7”, 180mm
7”, 180mm
7”, 180mm
8
8
8
3000
3000
3000
Active
1%
Preview*
31A
Preview*
Active
ZTL431AZTA
SOT89
7”, 180mm
12
1000
32A
32A
ZTL432AFFTA
ZTL432AFTA
ZTL431BCSTZ
SOT23F
SOT23
TO92
7”, 180mm
7”, 180mm
Concertina
8
8
3000
3000
1500
Active
ZTL431B
Preview*
Preview*
N/A
31B
31B
ZTL431BE5TA
ZTL431BFFTA
SOT23-5
SOT23F
7”, 180mm
7”, 180mm
8
8
3000
3000
Preview*
Active
31B
31B
ZTL431BFTA
SOT23
SC70-6
7”, 180mm
7”, 180mm
8
8
3000
3000
0.5%
Preview*
ZTL431BH6TA
31B
Preview*
Active
ZTL431BZTA
SOT89
7”, 180mm
12
1000
32B
32B
ZTL432BFFTA
ZTL432BFTA
SOT23F
SOT23
7”, 180mm
7”, 180mm
8
8
3000
3000
Active
NOTES:
*
For availability of pre-production status devices contact your local Zetex representative
Absolute maximum ratings
Cathode voltage (V ) .............................................................. 20V
KA
Continuous cathode current (I ) ........................................ 150mA
KA
Reference input current range (I )..................... -50 µA to 10mA
REF
Operating junction temperature ................................. -40 to 150°C
Storage temperature ................................................... -55 to 150°C
Operation above the absolute maximum rating may cause device failure. Operation at the
absolute maximum ratings, for extended periods, may reduce device reliability.
Unless otherwise stated voltages specified are relative to the ANODE pin.
Package thermal data
Package
⍜
P
DIS
JA
T =25°C, T = 150°C
A
J
TO92
SOT23
SOT23F
SOT23-5
SOT89
160°C/W
380°C/W
138°C/W
250°C/W
125°C/W
780mW
330mW
900mW
500mW
1000mW
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
2
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ZTL431, ZTL432
Recommended operating conditions
Min
Max
Units
V
Cathode voltage
V
20
V
KA
ref
I
Cathode current
1
100
125
mA
°C
KA
T
Operating ambient temperature range
-40
A
Electrical characteristics
Electrical characteristics over recommended operating conditions, T = 25°C, unless otherwise stated.
A
Symbol Parameter
Conditions
Min.
2.475
2.487
Typ. Max. Units
V
Reference voltage
V
I
= V
REF
= 10mA
ZTL43_A
ZTL43_B
2.5
2.5
2.525
2.513
V
REF
KA
KA
V
Deviation of reference
voltage over full
temperature range
T = 0 to 70°
6
16
34
34
DEV
A
V
= V
= 10 mA
mV
KA
REF
T = -40 to 85°C
14
A
I
KA
T = -40 to 125°C
14
A
ΔV
ΔV
Ratio of change in
reference voltage
to the change in
cathode voltage
V
V
= V to 10
REF
-1.4
-1.0
-2.7 mV/V
-2.0
REF
KA
KA
KA
I
= 10mA
KA
= 10V to 20V
I
Reference input
current
I
= 10mA, R1 = 10k⍀
2
4
µA
REF
KA
R = OC
2
I
= 10mA
T = 0 to 70°C
0.8
0.8
0.8
0.4
1.2
2.5
2.5
0.6
KA
A
ΔI
I
deviation over full
µA
R = 10k⍀
R = OC
REF
REF
T = -40 to 85°C
1
A
temperature range
2
T = -40 to 125°C
A
I
I
Minimum cathode
current for regulation
Off state current
V
= V
REF
mA
KA(MIN)
KA
V
V
= 20V, V
= 0V
0.1
0.2
0.5
0.5
µA
KA(OFF)
KA
KA
REF
R
Dynamic output
impedance
= V , f = 0Hz
⍀
Z
REF
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
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ZTL431, ZTL432
Typical characteristics
IKA = 10mA
V
REF = VKA
125
Issue 8 - April 2007
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ZTL431, ZTL432
Typical characteristics
VKA
IKA
IKA
VKA
VKA
VKA
IKA
V
REF < VKA < 20, IKA = 10mA, TA = 25°C
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
5
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ZTL431, ZTL432
Application cicuits
V+
VOUT
V+
VOUT
R1
R2
R1
VREF
VREF
R2
VREF
VOUT
VREF
VOUT
Higher current shunt
regulator
Shunt regulator
V+
ZSR***
V+
VOUT
In
Out
Common
30⍀
R1
VREF
R2
0.01F
R1
VOUT
VREF
R2
VOUT(MIN) = VREF + VREG
VOUT
VREF
VOUT
VREF
Output control of a three
terminal fixed regulator
Series regulator
V+
R1
V+
R1
VREF
Output
Output
VREF
R2a
Input
VON~ 2V
R2b
VOFF = V+
VTH = 2.5V
VREF
VREF
Single supply comparator
with temperature
compensated threshold
Over voltage / under voltage
protection circuit
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
6
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ZTL431, ZTL432
DC test circuits
IL
IL
VKA
VKA
VKA
IKA
IKA
IKA(OFF)
IREF
IREF
VREF
VREF
Figure 1 Test circuit for
= V
Figure 2 Test circuit for
Figure 3 Test circuit for
V
V
KA
> V
off state current
KA
REF
REF
Notes
Deviation of reference input voltage, Vdev, is
defined as the maximum variation of the
reference input voltage over the full
temperature range.
The average temperature coefficient of the
reference input voltage, V is defined as:
ref
VDEV × 1, 000, 000
VREF(ppm°C) = ------------------------------------------------
VREF(T1 – T2)
The dynamic output impedance, R , is
z
defined as:
ΔVz
Rz = ---------
ΔIz
When the device is programmed with two
external resistors, R1 and R2, (fig 2), the
dynamic output impedance of the overall
circuit, R' , is defined as:
z
R1
R2
⎛
⎞
R'z = Rz 1 + -------
⎝
⎠
Stability boundary
The ZTL431 and ZTL432 are stable with a
range of capacitive loads. A zone of instability
exists as demonstrated in the typical
characteristic graph on page 5. The graph
shows typical conditions. To ensure reliable
stability a capacitor of 4.7nF or greater is
recommended between anode and cathode.
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
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ZTL431, ZTL432
Pin connections - preview status devices
ZTL431_E5 SOT235
ZTL431_Z SOT89
(underside view)
(top view)
(top view)
V
1
2
3
z
Cathode
N/C 1
5
Anode
Ref
G
nd
ref
Anode
Ref
2
*
Anode
V
Cathode
4
3
Pin 2 should be left floating or connected to pin 5
*
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
8
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ZTL431, ZTL432
Packaging details - SOT23
E
Dim. Millimeters
Min. Max. Min. Max.
1.12 0.044 e1
A1 0.01 0.10 0.0004 0.004
Inches
Dim. Millimeters
Min. Max. Max. Max.
1.90 NOM 0.075 NOM
Inches
A
-
-
E
2.10
1.20
0.25
0.45
-
2.64 0.083 0.104
1.40 0.047 0.055
0.62 0.018 0.024
0.62 0.018 0.024
e
b
C
D
e
0.30 0.50 0.012 0.020 E1
0.085 0.120 0.003 0.008
2.80 3.04 0.110 0.120 L1
0.95 NOM 0.0375 NOM
L
e1
b
3 leads
-
-
-
-
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
D
L1
E1
A
L
c
A1
Packaging details - SOT23-5
Dim.
Millimeters
Min.
Inches
Max.
1.45
0.15
1.30
0.50
0.26
3.10
3.20
1.80
Min.
Max.
A
A1
A2
b
0.90
0.00
0.90
0.20
0.09
2.70
2.20
1.30
0.0354
0.00
0.0570
0.0059
0.0511
0.0196
0.0102
0.1220
0.1181
0.0708
0.0354
0.0078
0.0035
0.1062
0.0866
0.0511
C
D
E
E1
e
0.95 REF
1.90 REF
0.0374 REF
0.0748 REF
e1
L
0.10
0°
0.60
30°
0.0039
0°
0.0236
30°
a°
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
9
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ZTL431, ZTL432
Package details - SOT89
Dim. Millimeters
Inches
Dim. Millimeters
Inches
Min. Max. Min. Max.
Min. Max. Min Max.
D
A
A
B
1.40 1.60 0.550 0.630 E1
2.13 2.29 0.084 0.090
C
D1
0.44 0.56 0.017 0.022
e
1.50 BSC
3.00 BSC
0.059 BSC
0.118 BSC
B1
C
0.36 0.48 0.014 0.019 e1
0.35 0.44 0.014 0.019
4.40 4.60 0.173 0.181
2.29 2.60 0.090 0.102
H
L
3.94 4.25 0.155 0.167
0.89 1.20 0.155 0.167
D
E
E1
H
E
-
-
-
-
L
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
B
e
B1
e1
Package details - TO92
Dim.
Millimeters
Min.
Inches
Max.
4.95
0.51
3.50
3.94
5.88
2.94
15.49
2.41
1.52
0.56
4.95
6°
Min.
0.170
0.014
0.099
0.130
0.192
0.096
0.500
0.085
0.045
0.016
0.175
4°
Max.
0.195
0.020
0.138
0.155
0.232
0.116
0.610
0.095
0.060
0.022
0.195
6°
A
b
4.32
0.36
2.50
3.30
4.88
2.44
12.70
2.16
1.14
0.41
4.45
4°
C
E
e
e1
L
R
S1
W
D
*°
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
10
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ZTL431, ZTL432
Package details - SC70-6
Dim. Millimeters
Inches
Dim Millimeters
.
Inches
Min. Max. Min. Max.
Min. Max. Max. Max.
A
0.80
-
1.10 0.0315 0.0433
0.10 0.0039 E1 1.25
1.00 0.0315 0.0394
0.30 0.006 0.0118 e1
E
2.10 BSC
0.0826 BSC
A1
-
1.35 0.0492 0.0531
A2 0.80
e
0.65 BSC
1.30 BSC
0.0255 BSC
0.0511 BSC
b
C
D
0.15
0.08
0.25 0.0031 0.0098
0.0787 BSC
L
0.26
0°
0.46 0.0102 0.0181
8° 0° 8°
2.00 BSC
␣
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
␣
Package details SOT23F
c
Dim. Millimeters
Inches
Dim. Millimeters
Inches
D
e1
b
b
e
Min. Max. Min. Max.
Min. Max. Max. Max.
L1
L
A
0.80 1.00 0.031 0.0394
E
2.30
1.50
1.10
0.48
0.39
0.05
0°
2.50 0.0906 0.0984
1.70 0.0590 0.0669
1.26 0.0433 0.0496
0.68 0.0189 0.0268
0.41 0.0153 0.0161
0.15 0.0019 0.0059
A1
-
0.10 0.00 0.0043 E1
E1
E
E2
A2 0.06 0.16 0.0024 0.0006 E2
b
c
0.39 0.41 0.0153 0.0161
L
0.11 0.20 0.0043 0.0079 L1
b
A1
D
e
2.80 3.00 0.1102 0.1181
R
O
-
R
0.95 ref
1.90 ref
0.0374 ref
0.7480 ref
12°
-
0°
-
12°
-
A
e1
-
Note: Controlling dimensions are in millimeters.
Approximate dimensions are provided in inches
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
11
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ZTL431, ZTL432
Definitions
Product change
Zetex Semiconductors reserves the right to alter, without notice, specifications, design, price or conditions of supply of any product or
service. Customers are solely responsible for obtaining the latest relevant information before placing orders.
Applications disclaimer
The circuits in this design/application note are offered as design ideas. It is the responsibility of the user to ensure that the circuit is fit for
the user’s application and meets with the user’s requirements. No representation or warranty is given and no liability whatsoever is
assumed by Zetex with respect to the accuracy or use of such information, or infringement of patents or other intellectual property rights
arising from such use or otherwise. Zetex does not assume any legal responsibility or will not be held legally liable (whether in contract,
tort (including negligence), breach of statutory duty, restriction or otherwise) for any damages, loss of profit, business, contract,
opportunity or consequential loss in the use of these circuit applications, under any circumstances.
Life support
Zetex products are specifically not authorized for use as critical components in life support devices or systems without the express written
approval of the Chief Executive Officer of Zetex Semiconductors plc. As used herein:
A. Life support devices or systems are devices or systems which:
1. are intended to implant into the body
or
2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the
labelling can be reasonably expected to result in significant injury to the user.
B. A critical component is any component in a life support device or system whose failure to perform can be reasonably expected to
cause the failure of the life support device or to affect its safety or effectiveness.
Reproduction
The product specifications contained in this publication are issued to provide outline information only which (unless agreed by the
company in writing) may not be used, applied or reproduced for any purpose or form part of any order or contract or be regarded as a
representation relating to the products or services concerned.
Terms and Conditions
All products are sold subjects to Zetex’ terms and conditions of sale, and this disclaimer (save in the event of a conflict between the two
when the terms of the contract shall prevail) according to region, supplied at the time of order acknowledgement.
For the latest information on technology, delivery terms and conditions and prices, please contact your nearest Zetex sales office.
Quality of product
Zetex is an ISO 9001 and TS16949 certified semiconductor manufacturer.
To ensure quality of service and products we strongly advise the purchase of parts directly from Zetex Semiconductors or one of our
regionally authorized distributors. For a complete listing of authorized distributors please visit: www.zetex.com/salesnetwork
Zetex Semiconductors does not warrant or accept any liability whatsoever in respect of any parts purchased through unauthorized sales channels.
ESD (Electrostatic discharge)
Semiconductor devices are susceptible to damage by ESD. Suitable precautions should be taken when handling and transporting devices.
The possible damage to devices depends on the circumstances of the handling and transporting, and the nature of the device. The extent
of damage can vary from immediate functional or parametric malfunction to degradation of function or performance in use over time.
Devices suspected of being affected should be replaced.
Green compliance
Zetex Semiconductors is committed to environmental excellence in all aspects of its operations which includes meeting or exceeding
regulatory requirements with respect to the use of hazardous substances. Numerous successful programs have been implemented to
reduce the use of hazardous substances and/or emissions.
All Zetex components are compliant with the RoHS directive, and through this it is supporting its customers in their compliance with
WEEE and ELV directives.
Product status key:
“Preview”
“Active”
Future device intended for production at some point. Samples may be available
Product status recommended for new designs
“Last time buy (LTB)”
Device will be discontinued and last time buy period and delivery is in effect
“Not recommended for new designs” Device is still in production to support existing designs and production
“Obsolete”
Production has been discontinued
Datasheet status key:
“Draft version”
This term denotes a very early datasheet version and contains highly provisional information, which
may change in any manner without notice.
“Provisional version”
“Issue”
This term denotes a pre-release datasheet. It provides a clear indication of anticipated performance.
However, changes to the test conditions and specifications may occur, at any time and without notice.
This term denotes an issued datasheet containing finalized specifications. However, changes to
specifications may occur, at any time and without notice.
Zetex sales offices
Europe
Americas
Asia Pacific
Corporate Headquarters
Zetex GmbH
Kustermann-park
Balanstraße 59
D-81541 München
Germany
Zetex Inc
Zetex (Asia Ltd)
Zetex Semiconductors plc
Zetex Technology Park, Chadderton
Oldham, OL9 9LL
700 Veterans Memorial Highway
Hauppauge, NY 11788
USA
3701-04 Metroplaza Tower 1
Hing Fong Road, Kwai Fong
Hong Kong
United Kingdom
Telefon: (49) 89 45 49 49 0
Fax: (49) 89 45 49 49 49
europe.sales@zetex.com
Telephone: (1) 631 360 2222
Fax: (1) 631 360 8222
usa.sales@zetex.com
Telephone: (852) 26100 611
Fax: (852) 24250 494
asia.sales@zetex.com
Telephone: (44) 161 622 4444
Fax: (44) 161 622 4446
hq@zetex.com
© 2007 Published by Zetex Semiconductors plc
Issue 8 - April 2007
© Zetex Semiconductors plc 2007
12
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