TA79005,06,07,08,09,10,12,15,18,20,24SB
2009-09-30
1
TOSHIBA Bipolar Linear Integrated Circuit Silicon Monolithic
TA79005SB, TA79006SB, TA79007SB, TA79008SB, TA79009SB, TA79010SB,
TA79012SB, TA79015SB, TA79018SB, TA79020SB, TA79024SB
Output Current of 1A, Three-Terminal Negative Voltage Regulators
5 V, 6 V, 7 V, 8 V, 9 V, 10 V, 12 V, 15 V, 18 V, 20 V, 24 V
Features
z Suitable for CMOS, TTL, and the and the power supply of
other digital ICs
z Internal overheating protection
z Internal overcurrent protection
z Maximum output current of 1 A
z Package in the plastic case TPL (PD = 1.8 W)
Pin Assignment
GND
1 3
IN OUT
Marking side
2
Marking
Note: A line under a Lot No. identifies the indication of product Labels.
Underlined: [[G]]/RoHS COMPATIBLE or [[G]]/RoHS [[Pb]]
Please contact your TOSHIBA sales representative for details as to environmental matters such as the RoHS
compatibility of Product. The RoHS is the Directive 2002/95/EC of the European Parliament and of the Council of 27
January 2003 on the restriction of the use of certain hazardous substances in electrical and electronic equipment.
The product(s) in this document (“Product”) contain functions intended to protect the Product from
temporary small overloads such as minor short-term overcurrent or overheating. The protective
functions do not necessarily protect Product under all circumstances. When incorporating Product into
your system, please design the system (1) to avoid such overloads upon the Product, and (2) to shut
down or otherwise relieve the Product of such overload conditions immediately upon occurrence. For
details, please refer to the notes appearing below in this document and other documents referenced in
this document.
SIP3-P-2.50A
Weight: 1.5 g (typ.)
Note
Lot No.
Part No. (or abbreviation code)
79***SB
TA79005,06,07,08,09,10,12,15,18,20,24SB
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Equivalent Circuit
Absolute Maximum Ratings (Ta = 25°C)
Characteristics Symbol Rating Unit
TA79005SB
TA79006SB
TA79007SB
TA79008SB
TA79009SB
TA79010SB
TA79012SB
TA79015SB
35
TA79018SB
TA79020SB
Input voltage
TA79024SB
VIN
40
V
Output current IOUT 1
A
Power dissipation (Ta = 25°C) PD 1.8 W
Operating temperature Topr 30 to 85 °C
Storage temperature Tstg 55 to 150 °C
Junction temperature Tj 150 °C
Thermal resistance Rth (j-a) 69.4 °C/W
Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings and the operating ranges.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79005SB
Electrical Characteristics
(Unless otherwise specified, VIN = 10 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 5.2 5.0 4.8 V
12 V VIN 8 V 7 50
Line regulation Reg·line 1 Tj = 25°C
25 V VIN 7 V 35 100
mV
5 mA IOUT 1.5 A 11 100
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 4 50
mV
Output voltage VOUT 1 Tj = 25°C 20 V VIN 7 V,
5 mA IOUT 1.0 A 5.25 4.75 V
Quiescent current IB 1 Tj = 25°C 4.3 8.0 mA
Line 1 25 V VIN 7 V 1.3
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 40 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 63 70 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 0.6 mV/°C
TA79006SB
Electrical Characteristics
(Unless otherwise specified, VIN = 11 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 6.25 6.0 5.75 V
13 V VIN 9 V 9 60
Line regulation Reg·line 1 Tj = 25°C
25 V VIN 8 V 43 120
mV
5 mA IOUT 1.5 A 13 120
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 5 60
mV
Output voltage VOUT 1 Tj = 25°C 21 V VIN 8 V,
5 mA IOUT 1.0 A 6.3 5.7 V
Quiescent current IB 1 Tj = 25°C 4.3 8.0 mA
Line 1 25 V VIN 8 V 1.3
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 45 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 61 68 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 0.7 mV/°C
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TA79007SB
Electrical Characteristics
(Unless otherwise specified, VIN = 12 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 7.28 7.0 6.72 V
15 V VIN 10 V 10 70
Line regulation Reg·line 1 Tj = 25°C
25 V VIN 9 V 45 140
mV
5 mA IOUT 1.5 A 20 140
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 7 70
mV
Output voltage VOUT 1 Tj = 25°C 22 V VIN 9 V,
5 mA IOUT 1.0 A 7.35 6.65 V
Quiescent current IB 1 Tj = 25°C 4.3 8.0 mA
Line 1 25 V VIN 9 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 49 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 60 67 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 0.9 mV/°C
TA79008SB
Electrical Characteristics
(Unless otherwise specified, VIN = 14 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 8.3 8.0 7.7 V
17 V VIN 11 V 11 80
Line regulation Reg·line 1 Tj = 25°C
25 V VIN 10.5 V 47 160
mV
5 mA IOUT 1.5 A 26 160
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 9 80
mV
Output voltage VOUT 1 Tj = 25°C 23 V VIN 10.5 V,
5 mA IOUT 1.0 A 8.4 7.6 V
Quiescent current IB 1 Tj = 25°C 4.3 8.0 mA
Line 1 25 V VIN 10.5 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 52 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 59 66 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 1.0 mV/°C
TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79009SB
Electrical Characteristics
(Unless otherwise specified, VIN = 15 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 9.3 9.0 8.7 V
19 V VIN 13 V 11 82
Line regulation Reg·line 1 Tj = 25°C
26 V VIN 11.5 V 48 162
mV
5 mA IOUT 1.5 A 33 162
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 11 82
mV
Output voltage VOUT 1 Tj = 25°C 24 V VIN 11.5 V,
5 mA IOUT 1.0 A 9.4 8.6 V
Quiescent current IB 1 Tj = 25°C 4.3 8.0 mA
Line 1 26.5 V VIN 13 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 60 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 57 64 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 1.1 mV/°C
TA79010SB
Electrical Characteristics
(Unless otherwise specified, VIN = 16 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 10.4 10.0 9.6 V
20 V VIN 14 V 12 90
Line regulation Reg·line 1 Tj = 25°C
27 V VIN 12.5 V 50 180
mV
5 mA IOUT 1.5 A 40 180
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 13 90
mV
Output voltage VOUT 1 Tj = 25°C 25 V VIN 12.5 V,
5 mA IOUT 1.0 A 10.5 9.5 V
Quiescent current IB 1 Tj = 25°C 4.4 8.0 mA
Line 1 27.5 V VIN 14 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 65 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 57 63 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 1.3 mV/°C
TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79012SB
Electrical Characteristics
(Unless otherwise specified, VIN = 19 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 12.5 12.0 11.5 V
22 V VIN 16 V 13 120
Line regulation Reg·line 1 Tj = 25°C
30 V VIN 14.5 V 55 240
mV
5 mA IOUT 1.5 A 46 240
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 17 120
mV
Output voltage VOUT 1 Tj = 25°C 27 V VIN 14.5 V,
5 mA IOUT 1.0 A 12.6 11.4 V
Quiescent current IB 1 Tj = 25°C 4.4 8.0 mA
Line 1 30 V VIN 14.5 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 75 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 54 61 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 1.6 mV/°C
TA79015SB
Electrical Characteristics
(Unless otherwise specified, VIN = 23 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 15.6 15.0 14.4 V
26 V VIN 20 V 14 150
Line regulation Reg·line 1 Tj = 25°C
30 V VIN 17.5 V 57 300
mV
5 mA IOUT 1.5 A 68 300
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 25 150
mV
Output voltage VOUT 1 Tj = 25°C 30 V VIN 17.5 V,
5 mA IOUT 1.0 A 15.75 14.25 V
Quiescent current IB 1 Tj = 25°C 4.4 8.0 mA
Line 1 30 V VIN 17.5 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 90 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 53 60 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 2.0 mV/°C
TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79018SB
Electrical Characteristics
(Unless otherwise specified, VIN = 27 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 18.7 18.0 17.3 V
30 V VIN 24 V 25 180
Line regulation Reg·line 1 Tj = 25°C
33 V VIN 21 V 80 360
mV
5 mA IOUT 1.5 A 110 360
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 55 180
mV
Output voltage VOUT 1 Tj = 25°C 33 V VIN 21 V,
5 mA IOUT 1.0 A 18.85 17.15 V
Quiescent current IB 1 Tj = 25°C 4.5 8.0 mA
Line 1 33 V VIN 21 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 110 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 52 59 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 2.5 mV/°C
TA79020SB
Electrical Characteristics
(Unless otherwise specified, VIN = 30 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 20.8 20.0 19.2 V
32 V VIN 26 V 28 180
Line regulation Reg·line 1 Tj = 25°C
35 V VIN 24 V 104 360
mV
5 mA IOUT 1.5 A 130 360
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 70 180
mV
Output voltage VOUT 1 Tj = 25°C 35 V VIN 24 V,
5 mA IOUT 1.0 A 21.0 19.0 V
Quiescent current IB 1 Tj = 25°C 4.6 8.0 mA
Line 1 36.5 V VIN 25 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 140 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 50 57 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 3.0 mV/°C
TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79024SB
Electrical Characteristics
(Unless otherwise specified, VIN = 33 V, IOUT = 500 mA, 0°C Tj 125°C, CIN = 0.33 μF,
COUT = 0.1 μF)
Characteristics Symbol
Test
Circuit Test Condition Min Typ. Max Unit
Output voltage VOUT 1 Tj = 25°C 25.0 24.0 23.0 V
36 V VIN 30 V 31 240
Line regulation Reg·line 1 Tj = 25°C
38 V VIN 27 V 118 480
mV
5 mA IOUT 1.5 A 150 480
Load regulation Reg·load 1 Tj = 25°C
250 mA IOUT 750 mA 85 240
mV
Output voltage VOUT 1 Tj = 25°C 38 V VIN 27 V,
5 mA IOUT 1.0 A 25.2 22.8 V
Quiescent current IB 1 Tj = 25°C 4.6 8.0 mA
Line 1 38 V VIN 27 V 1.0
Quiescent current
change Load
ΔIB
1
Tj = 25°C
5 mA IOUT 1.0 A 0.5
mA
Output noise voltage VNO 2
Ta = 25°C, IOUT = 20 mA,
10 Hz f 100 kHz 170 μVrms
Ripple rejection R.R. 3 f = 120 Hz, IOUT = 20 mA, Tj = 25°C 49 56 dB
Short circuit current limit ISC 1 Tj = 25°C 1.9 A
Dropout voltage VD 1 Tj = 25°C, IOUT = 1.0 A 2.0 V
Average temperature
coefficient of output voltage TCVO 1 IOUT = 5.0 mA 3.5 mV/°C
TA79005,06,07,08,09,10,12,15,18,20,24SB
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Test Circuit 1
V
OUT, Reg·line, Reg·load, IB, ΔIB, VD, TCVO
Test Circuit 2
V
NO
Test Circuit 3
R.R.
TA79005,06,07,08,09,10,12,15,18,20,24SB
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Usage Precautions
Low voltage
Do not apply voltage to the Product that is lower than the minimum operating voltage, or the Product’s
protective functions will not operate properly and the Product may be permanently damaged.
Overcurrent Protection
The overcurrent protection circuits in the Product are designed to temporarily protect Product from minor
overcurrent of brief duration. When the overcurrent protective function in the Product activates,
immediately cease application of overcurrent to Product. Improper usage of Product, such as application of
current to Product exceeding the absolute maximum ratings, could cause the overcurrent protection circuit
not to operate properly and/or damage Product permanently even before the protection circuit starts to
operate.
Overheating Protection
The thermal shutdown circuits in the Product are designed to temporarily protect Product from minor
overheating of brief duration. When the overheating protective function in the Product activates,
immediately correct the overheating situation. Improper usage of Product, such as the application of heat
to Product exceeding the absolute maximum ratings, could cause the overheating protection circuit not to
operate properly and/or damage Product permanently even before the protection circuit starts to operate.
TA79005,06,07,08,09,10,12,15,18,20,24SB
2009-09-30
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TA79005,06,07,08,09,10,12,15,18,20,24SB
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TA79005,06,07,08,09,10,12,15,18,20,24SB
2009-09-30
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Package Dimensions
TA79005,06,07,08,09,10,12,15,18,20,24SB
2009-09-30
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RESTRICTIONS ON PRODUCT USE
Toshiba Corporation, and its subsidiaries and affiliates (collectively “TOSHIBA”), reserve the right to make changes to the information
in this document, and related hardware, software and systems (collectively “Product”) without notice.
This document and any information herein may not be reproduced without prior written permission from TOSHIBA. Even with
TOSHIBA’s written permission, reproduction is permissible only if reproduction is without alteration/omission.
Though TOSHIBA works continually to improve Product’s quality and reliability, Product can malfunction or fail. Customers are
responsible for complying with safety standards and for providing adequate designs and safeguards for their hardware, software and
systems which minimize risk and avoid situations in which a malfunction or failure of Product could cause loss of human life, bodily
injury or damage to property, including data loss or corruption. Before customers use the Product, create designs including the
Product, or incorporate the Product into their own applications, customers must also refer to and comply with (a) the latest versions of
all relevant TOSHIBA information, including without limitation, this document, the specifications, the data sheets and application notes
for Product and the precautions and conditions set forth in the “TOSHIBA Semiconductor Reliability Handbook” and (b) the
instructions for the application with which the Product will be used with or for. Customers are solely responsible for all aspects of their
own product design or applications, including but not limited to (a) determining the appropriateness of the use of this Product in such
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noncompliance with applicable laws and regulations.