DCX114YUQ-7-F [DIODES]
Small Signal Bipolar Transistor, 0.07A I(C), 2-Element, NPN and PNP, Silicon,;型号: | DCX114YUQ-7-F |
厂家: | DIODES INCORPORATED |
描述: | Small Signal Bipolar Transistor, 0.07A I(C), 2-Element, NPN and PNP, Silicon, 晶体管 |
文件: | 总12页 (文件大小:369K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
DCX(xxxx)U
SMALL SIGNAL COMPLEMENTARY PRE-BIASED DUAL TRANSISTOR
Features
Mechanical Data
Epitaxial Planar Die Construction
Case: SOT363
Built-In Biasing Resistors
Case Material: Molded Plastic, “Green” Molding Compound
UL Flammability Classification Rating 94V-0
Moisture Sensitivity: Level 1 per J-STD-020
Surface Mount Package Suited for Automated Assembly
Totally Lead-Free & Fully RoHS compliant (Notes 1 &2)
Halogen and Antimony Free. “Green” Device (Note 3)
Qualified to AEC-Q101 Standards for High Reliability
PPAP Capable (Note 4)
Terminals: Finish – Matte Tin Plated Leads, Solderable per
MIL-STD-202, Method 208
Weight: 0.006 grams (approximate)
Part Number
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
R1 (NOM)
22KΩ
47KΩ
10KΩ
2.2KΩ
10KΩ
R2 (NOM)
22KΩ
47KΩ
47KΩ
47KΩ
Part Number
DCX143TU
DCX114TU
R1 Only
4.7KΩ
10KΩ
10KΩ
4.7KΩ
4.7KΩ
SOT363
CQ1 BQ2 EQ2
CQ1 BQ2 EQ2
6
5
4
6
5
4
R1
Q1
Q1
Q2
3
2
Q
R1
1
2
1
2
3
EQ1
CQ2
EQ1 BQ1 CQ2
BQ1
R1, R2
R1 Only
Top View
Device Schematic
Ordering Information (Notes 3 & 4)
Product
Compliance
AEC-Q101
Automotive
Automotive
Automotive
AEC-Q101
AEC-Q101
Automotive
AEC-Q101
Automotive
Automotive
Automotive
AEC-Q101
Automotive
AEC-Q101
AEC-Q101
Automotive
Automotive
Automotive
AEC-Q101
AEC-Q101
AEC-Q101
Marking
C17
C17
C17
C17
C20
C20
C20
C14
C14
C14
C14
C06
C06
C13
C13
C13
C13
C13
C07
C08
C12
Reel size (inches)
Tape width (mm)
Quantity per reel
3,000
DCX124EU-7-F
DCX124EUQ-7-F
DCX124EUQ-13-F
DCX124EUQ-13R-F
DCX144EU-7-F
DCX144EU-7R-F
DCX144EUQ-7-F
DCX114YU-7-F
DCX114YUQ-7-F
DCX114YUQ-13-F
DCX114YUQ-13R-F
DCX123JU-7-F
DCX123JUQ-7-F
DCX114EU-7-F
DCX114EU-13R-F
DCX114EUQ-7-F
DCX114EUQ-13-F
DCX114EUQ-13R-F
DCX143TU-7-F
7
7
13
13
7
7
7
7
7
13
13
7
7
7
13
7
13
13
7
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
3,000
10,000
10,000
3,000
3,000
3,000
3,000
3,000
10,000
10,000
3,000
3,000
3,000
10,000
3,000
10,000
10,000
3,000
DCX143EU-7-F
DCX114TU-7-F
7
7
3,000
3,000
Notes:
1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant.
2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green"
and Lead-free.
3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and
<1000ppm antimony compounds.
4. Automotive products are AEC-Q101 qualified and are PPAP capable. Automotive, AEC-Q101 and standard products are electrically and thermally the
same, except where specified. For more information, please refer to http://www.diodes.com/quality/product_compliance_definitions/.
5. -7R and -13R are parts rotated in the pocket tape by +180°. For packaging details, go to our website at http://www.diodes.com/products/packages.html
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DCX(xxxx)U
Document number: DS30347 Rev. 16 - 2
DCX(xxxx)U
Marking Information
CXX = Product Type Marking Code
YM = Date Code Marking
Y = Year (ex: X = 2010)
CXX YM
M = Month (ex: 9 = September)
Date Code Key
Year
2010
2011
2012
2013
2014
2015
2016
2017
Code
X
Y
Z
A
B
C
D
E
Month
Code
Jan
1
Feb
2
Mar
3
Apr
4
May
5
Jun
6
Jul
7
Aug
8
Sep
9
Oct
O
Nov
N
Dec
D
Absolute Maximum Ratings NPN Section (@TA = +25°C, unless otherwise specified.)
Characteristic
Supply Voltage <Pin: (6) to (1)>
Symbol
VCC
Value
50
Unit
V
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143TU
DCX143EU
DCX114TU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143TU
DCX143EU
DCX114TU
-10 to +40
-10 to +40
-6 to +40
-5 to +12
-10 to +40
-5V max
-10 to +30
-5V max
30
Input Voltage
<Pin: (2) to (1)>
V
VIN
30
70
100
50
100
100
100
100
Output Current
Output Current
mA
mA
IO
I
C (Max)
Absolute Maximum Ratings PNP Section (@TA = +25°C, unless otherwise specified.)
Characteristic
Supply Voltage <Pin: (4) to (3)>
Symbol
Value
50
Unit
V
VCC
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143TU
DCX143EU
DCX114TU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143TU
DCX143EU
DCX114TU
+10 to -40
+10 to -40
+6 to -40
+5 to -12
+10 to -40
+5V max
+10 to -30
+5V max
-30
Input Voltage
<Pin: (5) to (4)>
V
VIN
-30
-70
-100
-50
-100
-100
-100
-100
Output Current
Output Current
mA
mA
IO
I
C (Max)
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Document number: DS30347 Rev. 16 - 2
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Thermal Characteristics (@TA = +25°C, unless otherwise specified.)
Characteristic
Power Dissipation (Notes 6 & 7)
Symbol
PD
R
Value
200
Unit
mW
°C/W
°C
Thermal Resistance, Junction to Ambient Air (Note 6)
Operating and Storage Temperature Range
625
JA
-55 to +150
TJ, TSTG
Notes:
6. Mounted on FR4 PC Board with minimum recommended pad layout
7. 150mW per element must not be exceeded.
Electrical Characteristics NPN Section (@TA = +25°C, unless otherwise specified.)
Characteristic
R1 Only (DCX143TU & DCX114TU)
Collector-Base Breakdown Voltage
Collector-Emitter Breakdown Voltage
Emitter-Base Breakdown Voltage
Collector Cutoff Current
Symbol
Min
Typ
Max
Unit
Test Condition
50
50
5
V
V
V
μA
μA
BVCBO
BVCEO
BVEBO
ICBO
0.5
0.5
IC = 50μA
IC = 1mA
IE = 50μA
VCB = 50V
Emitter Cutoff Current
IEBO
VEB = 4V
IC/IB = 2.5mA / 0.25mA
IC/IB = 1mA / 0.1mA
IC = 1mA, VCE = 5V
DCX143TU
DCX114TU
Collector-Emitter Saturation Voltage
0.3
V
VCE(sat)
DC Current Transfer Ratio
Input Resistor (R1) Tolerance
Gain-Bandwidth Product
R1/R2 Only
100
-30
250
250
600
+30
hFE
R1
fT
%
MHz
VCE = 10V, IE = -5mA, f = 100MHz
DCX124EU
0.5
0.5
0.3
0.5
0.5
0.5
1.1
1.1
-
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
DCX124EU
Vl(off)
VCC = 5V, IO = 100A
-
1.1
1.16
1.9
Input Voltage
V
3.0
3.0
1.4
1.1
3.0
3.0
VO = 0.3, IO = 5mA
VO = 0.3, IO = 2mA
VO = 0.3, IO = 1mA
VO = 0.3, IO = 5mA
VO = 0.3, IO = 10mA
VO = 0.3, IO = 20mA
IO/Il = 10mA / 0.5mA
IO/Il = 10mA / 0.5mA
IO/Il = 5mA / 0.25mA
IO/Il = 5mA / 0.25mA
IO/Il = 10mA / 0.5mA
IO/Il = 10mA / 0.5mA
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
1.9
-
-
1.9
1.99
Vl(on)
Output Voltage
0.1
0.3
V
VO(on)
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
0.36
0.18
0.88
3.6
0.88
0.88
0.5
Input Current
mA
Il
VI = 5V
Output Current
μA
IO(off)
VCC = 50V, VI = 0V
VO = 5V, IO = 5mA
VO = 5V, IO = 5mA
VO = 5V, IO = 5mA
VO = 5V, IO = 10mA
VO = 5V, IO = 10mA
VO = 5V, IO = 10mA
VO = 5V, IO = 5mA
VO = 5V, IO = 10mA
DCX124EU
DCX124EUQ
56
60
DCX144EU
DCX114YU
DCX114YUQ
68
68
80
DC Current Gain
Gl
DCX123JU
DCX114EU
DCX143EU
80
30
50
-30
-20
+30
+20
%
MHz
Input Resistor (R1) Tolerance
Resistance Ratio Tolerance
Gain-Bandwidth Product
R1
R2/R1
fT
250
VCE = 10V, IE = 5mA, f = 100MHz
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© Diodes Incorporated
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Document number: DS30347 Rev. 16 - 2
DCX(xxxx)U
Electrical Characteristics PNP Section (@TA = +25°C, unless otherwise specified.)
Characteristic
R1 Only (DCX143TU & DCX114TU)
Collector-Base Breakdown Voltage
Collector-Emitter Breakdown Voltage
Emitter-Base Breakdown Voltage
Collector Cutoff Current
Symbol
Min
Typ
Max
Unit
Test Condition
-50
-50
-5
V
V
V
μA
μA
BVCBO
BVCEO
BVEBO
ICBO
-0.5
-0.5
IC = -50μA
IC = -1mA
IE = -50μA
VCB = -50V
Emitter Cutoff Current
IEBO
VEB = -4V
IC/IB = 2.5mA / 0.25mA
IC/IB = 1mA / 0.1mA
IC = -1mA, VCE = -5V
DCX143TU
DCX114TU
Collector-Emitter Saturation Voltage
-0.3
V
VCE(sat)
DC Current Transfer Ratio
Input Resistor (R1) Tolerance
Gain-Bandwidth Product
R1/R2 Only
100
-30
250
250
600
+30
hFE
R1
fT
%
MHz
VCE = -10V, IE = 5mA, f = 100MHz
DCX124EU
-0.5
-0.5
-0.3
-0.5
-0.5
-0.5
-1.1
-1.1
-
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
Vl(off)
VCC = -5V, IO = -100μA
-
-1.1
-1.16
-1.9
-1.9
-
Input Voltage
V
-3.0
-3.0
-1.4
-1.1
-3.0
-3.0
VO = -0.3, IO = -5mA
VO = -0.3, IO = -2mA
VO = -0.3, IO = -1mA
VO = -0.3, IO = -5mA
VO = -0.3, IO = -10mA
VO = -0.3, IO = -20mA
IO/Il = -10mA / -0.5mA
IO/Il = -10mA / -0.5mA
IO/Il = -5mA / -0.25mA
IO/Il = -5mA / -0.25mA
IO/Il = -10mA / -0.5mA
IO/Il = -10mA / -0.5mA
Vl(on)
-
-1.9
-2.5
Output Voltage
-0.1
-0.3
V
VO(on)
DCX143EU
DCX124EU
DCX144EU
DCX114YU
DCX123JU
DCX114EU
DCX143EU
-0.36
-0.18
-0.88
-3.6
-0.88
-0.88
-0.5
Input Current
mA
Il
56
60
VI = -5V
Output Current
μA
IO(off)
VCC = 50V, VI = 0V
VO = -5V, IO = -5mA
VO = -5V, IO = -5mA
VO = -5V, IO = -5mA
VO = -5V, IO = -10mA
VO = -5V, IO = -10mA
VO = -5V, IO = -10mA
VO = -5V, IO = -5mA
VO = -5V, IO = -10mA
DCX124EU
DCX124EUQ
DCX144EU
DCX114YU
DCX114YUQ
68
68
80
DC Current Gain
Gl
DCX123JU
DCX114EU
DCX143EU
80
30
40
-30
-20
+30
+20
%
%
MHz
Input Resistor (R1) Tolerance
Resistance Ratio Tolerance
Gain-Bandwidth Product
R1
R2/R1
fT
250
VCE = -10V, IE = -5mA, f = 100MHz
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© Diodes Incorporated
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – Total Device
250
200
150
100
50
0
0
50
125
150
C)
TA, AMBIENT TEMPERATURE (
°
Fig. 1 Power Derating Curve
Typical Curves – DCX123JU
PNP Section (@TA = +25°C, unless otherwise specified.)
1
1,000
I
/I = 10
B
C
75°C
0.1
-25
°C
25°C
100
0.01
0.001
10
1
10
100
10
40
20
0
30
50
IC, COLLECTOR CURRENT (mA)
IC, COLLECTOR CURRENT (mA)
Fig. 3 Typical DC Current Gain
Fig. 2 Typical VCE(SAT) vs. IC
12
10
100
T
= 75°C
A
I
= 0mA
E
f = 1MHz
10
1
8
6
0.1
4
2
0
0.01
0.001
0
5
7
9
10
1
2
3
4
6
8
0
25
20
30
5
10
15
VIN, INPUT VOLTAGE (V)
Fig. 5 Typical Collector Current vs. Input Voltage
VR, REVERSE BIAS VOLTAGE (V)
Fig. 4 Typical Output Capacitance
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX123JU PNP Section (cont.)
10
1
0.1
0
10
IC, COLLECTOR CURRENT (mA)
Fig. 6 Typical Input Voltage vs. Collector Current
20
30
40
50
Typical Curves – DCX123JU NPN Section
(@TA = +25°C, unless otherwise specified.)
1,000
1
V
= 10V
I
/I = 10
B
CE
C
T
= 75°C
A
0.1
T
= 75°C
A
T
= -25°C
A
100
T
= 25°C
A
0.01
0.001
10
10
40
20
50
1
10
100
0
30
IC, COLLECTOR CURRENT (mA)
Fig. 8 Typical DC Current Gain
IC, COLLECTOR CURRENT (mA)
Fig. 7 Typical VCE(SAT) vs. IC
100
10
4
3
T
= 75°C
= 25°C
A
I
= 0mA
V
= 5V
E
O
f = 1MHz
T
A
T
= -25°C
A
1
2
0.1
1
0
0.01
0.001
0
1
2
3
6
7
9
10
0
10
15
30
4
5
8
25
5
20
VIN, INPUT VOLTAGE (V)
Fig. 10 Typical Collector Current vs. Input Voltage
November 2013
VR, REVERSE BIAS VOLTAGE (V)
Fig. 9 Typical Output Capacitance
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© Diodes Incorporated
Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX123JU NPN Section (cont.)
10
1
0.1
0
10
20
30
40
50
IC, COLLECTOR CURRENT (mA)
Fig. 11 Typical Input Voltage vs. Collector Current
Typical Curves – DCX143EU PNP Section (@TA = +25°C, unless otherwise specified.)
I
= 4.5mA
b
I
= 4mA
b
I
= 3.5mA
b
I
= 3mA
b
I
= 1mA
b
I
= 0.5mA
b
I
= 1.5mA
b
I
= 2mA
b
I
= 2.5mA
b
IC, COLLECTOR CURRENT (mA)
Fig. 13 Typical DC Current Gain
VCE, COLLECTOR EMITTER VOLTAGE (V)
Fig. 12 Typical VCE vs. IC
I
/I = 10
B
C
IC, COLLECTOR CURRENT (mA)
Fig. 15 Typical VBE vs. IC
IC, COLLECTOR CURRENT (mA)
Fig. 14 Typical VCE(SAT) vs. IC
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX143EU PNP Section (cont.)
IC, COLLECTOR CURRENT (mA)
Fig. 16 Typical VBE(SAT) vs. IC
IC, OUTPUT CURRENT (mA)
Fig. 17 Typical VI(ON) vs. IC
Typical Curves – DCX143EU NPN Section
(@TA = +25°C, unless otherwise specified.)
VCE, COLLECTOR EMITTER VOLTAGE (V)
Fig. 18 Typical VCE vs. IC
IC, COLLECTOR CURRENT (mA)
Fig. 19 Typical DC Current Gain
IC, COLLECTOR CURRENT (mA)
Fig. 20 Typical VCE(SAT) vs. IC
IC, COLLECTOR CURRENT (mA)
Fig. 21 Typical VBE vs. IC
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX143EU NPN Section (cont.)
IC, OUTPUT CURRENT (mA)
Fig. 23 Typical VI(ON) vs. IC
IC, COLLECTOR CURRENT (mA)
Fig. 22 Typical VBE(SAT) vs. IC
Typical Curves – DCX114TU PNP Section (@TA = +25°C, unless otherwise specified.)
1,000
1
I
/I = 10
B
C
100
0.1
T
= 75°C
A
T
= -25°C
A
T
= 25°C
A
10
0.01
1
0.001
1
10
100
10
40
20
0
30
50
IC, COLLECTOR CURRENT (mA)
Fig. 24 Typical VCE(SAT) vs. IC
IC, COLLECTOR CURRENT (mA)
Fig. 25 Typical DC Current Gain
4
3
100
I
= 0mA
E
f = 1MHz
10
T
= -25°C
A
1
2
0.1
1
0.01
0.001
0
0
5
10
15
20
25
30
6
7
8
9
0
1
2
3
4
5
10
VIN, INPUT VOLTAGE (V)
Fig. 27 Typical Collector Current vs. Input Voltage
VR, REVERSE BIAS VOLTAGE (V)
Fig. 26 Typical Output Capacitance
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX114TU PNP Section (cont.)
10
1
0.1
0
10
IC, COLLECTOR CURRENT (mA)
Fig. 28 Typical Input Voltage vs. Collector Current
20
30
40
50
Typical Curves – DCX114TU NPN Section (@TA = +25°C, unless otherwise specified.)
1
1,000
I
/I = 10
B
C
100
0.1
T
= 75°C
A
T
= -25°C
A
T
= 25°C
A
10
0.01
1
0.001
10
40
1
10
100
20
0
30
50
IC, COLLECTOR CURRENT (mA)
IC, COLLECTOR CURRENT (mA)
Fig. 30 Typical DC Current Gain
Fig. 29 Typical VCE(SAT) vs. IC
4
3
100
10
T
= 75°C
A
I
= 0mA
E
T
= 25°C
f = 1MHz
A
T
=-25°C
A
1
2
0.1
1
0.01
0.001
0
6
7
8
9
0
1
2
3
4
5
10
0
10
15
30
25
5
20
VIN, INPUT VOLTAGE (V)
VR, REVERSE BIAS VOLTAGE (V)
Fig. 32 Typical Collector Current vs. Input Voltage
Fig. 31 Typical Output Capacitance
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Document number: DS30347 Rev. 16 - 2
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Typical Curves – DCX114TU NPN Section (cont.)
10
1
0.1
0
10
IC, COLLECTOR CURRENT (mA)
Fig. 33 Typical Input Voltage vs. Collector Current
20
30
40
50
Package Outline Dimensions
Please see AP02002 at http://www.diodes.com/datasheets/ap02002.pdf for latest version.
A
SOT363
Dim Min Max Typ
A
B
C
D
F
H
J
K
L
0.10 0.30 0.25
1.15 1.35 1.30
2.00 2.20 2.10
0.65 Typ
0.40 0.45 0.425
1.80 2.20 2.15
B C
H
0
0.10 0.05
K
M
0.90 1.00 1.00
0.25 0.40 0.30
0.10 0.22 0.11
J
M
L
D
F
0°
8°
-
All Dimensions in mm
Suggested Pad Layout
Please see AP02001 at http://www.diodes.com/datasheets/ap02001.pdf for the latest version.
C2
C2
Dimensions Value (in mm)
Z
G
2.5
1.3
X
Y
C1
C2
0.42
0.6
1.9
C1
G
Y
Z
0.65
X
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Document number: DS30347 Rev. 16 - 2
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IMPORTANT NOTICE
DIODES INCORPORATED MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO THIS DOCUMENT,
INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
(AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION).
Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes
without further notice to this document and any product described herein. Diodes Incorporated does not assume any liability arising out of the
application or use of this document or any product described herein; neither does Diodes Incorporated convey any license under its patent or
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all risks of such use and will agree to hold Diodes Incorporated and all the companies whose products are represented on Diodes Incorporated
website, harmless against all damages.
Diodes Incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthorized sales channel.
Should Customers purchase or use Diodes Incorporated products for any unintended or unauthorized application, Customers shall indemnify and
hold Diodes Incorporated and its representatives harmless against all claims, damages, expenses, and attorney fees arising out of, directly or
indirectly, any claim of personal injury or death associated with such unintended or unauthorized application.
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This document is written in English but may be translated into multiple languages for reference. Only the English version of this document is the
final and determinative format released by Diodes Incorporated.
LIFE SUPPORT
Diodes Incorporated 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 Diodes Incorporated. 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
labeling 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.
Customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support devices or systems, and
acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products and any
use of Diodes Incorporated products in such safety-critical, life support devices or systems, notwithstanding any devices- or systems-related
information or support that may be provided by Diodes Incorporated. Further, Customers must fully indemnify Diodes Incorporated and its
representatives against any damages arising out of the use of Diodes Incorporated products in such safety-critical, life support devices or systems.
Copyright © 2013, Diodes Incorporated
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Document number: DS30347 Rev. 16 - 2
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