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Электронный компонент: DDZX15TS

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DS30416 Rev. 2 - 2
1 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
Diodes Incorporated
Very Sharp Breakdown Characteristics
Very Tight Tolerance on V
Z
Ideally Suited for Automated Assembly
Processes
Very Low Leakage Current
Lead Free Device
Features
Maximum Ratings
@ T
A
= 25
C unless otherwise specified
Characteristic
Symbol
Value
Unit
Forward Voltage
@ I
F
= 10mA
V
F
0.9
V
Power Dissipation (Note 2)
P
d
200
mW
Thermal Resistance, Junction to Ambient Air (Note 2)
R
qJA
625
C/W
Operating and Storage Temperature Range
T
j,
T
STG
-65 to +150
C
Mechanical Data
DDZX5V1BTS - DDZX47TS
TRIPLE SURFACE MOUNT PRECISION ZENER
DIODE ARRAY
A
M
J
L
D
B C
H
K
G
F
KXX
YM
C
3
C
1
C
2
A
2
A
3
A
1
Case: SOT-363, Plastic
Plastic Material: UL Flammability Classification
Rating 94V-0
Moisture sensitivity: Level 1 per J-STD-020A
Terminals: Finish - Matte Tin Solderable
per MIL-STD-202, Method 208 (Note 1)
Orientation: See Diagram
Marking: See Below
Weight: 0.006 grams (approx.)
T
C
U
D
O
R
P
W
E
N
Device
Packaging
Shipping
(Type Number)-7*
SOT-363
3000/Tape & Reel
Ordering Information
(Note 3)
* Example: The part number for the 6.2 Volt device would be DDZX6V2BTS-7.
Note :
3. For Packaging Details, go to our website at http://www.diodes.com/datasheets/ap02007.pdf.
Marking Information
SOT-363
Dim
Min
Max
A
0.10
0.30
B
1.15
1.35
C
2.00
2.20
D
0.65 Nominal
F
0.30
0.40
H
1.80
2.20
J
0.10
K
0.90
1.00
L
0.25
0.40
M
0.10
0.25
a
0
8
All Dimensions in mm
KXX = Product Type Marking Code (See Table 1)
YM = Date Code Marking
Y = Year ex: P = 2003
M = Month ex: 9 = September
KXX
YM
Month
Jan
Feb
March
Apr
May
Jun
Jul
Aug
Sep
Oct
Nov
Dec
Code
1
2
3
4
5
6
7
8
9
O
N
D
Year
2003
2004
2005
2006
2007
2008
2009
Code
P
R
S
T
U
V
W
Date Code Key
Notes: 1. If lead-bearing terminal plating is required, please contact your Diodes Inc. sales representative for availability
and minimum order details.
2. Device mounted on FR-4 PC board with recommended pad layout, which can be found on our website at
http://www.diodes.com/datasheets/ap02001.pdf.
TOP VIEW
D
1
D
2
D
3
SPICE MODEL: DDZX7V5CTS DDZX8V2CTS DDZX9V1CTS DDZX10CTS DDZX11CTS DDZX12CTS DDZX13BTS DDZX14TS DDZX15TS
DDZX16TS DDZX18CTS DDZX20CTS DDZX22DTS DDZX24CTS DDZX27DTS DDZX30DS DDZX33TS DDZX36TS DDZX39FTS DDZX43TS
DDZX47TS
DS30416 Rev. 2 - 2
2 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
Type Number
Marking Code
Zener Voltage Range
(Notes 4,5)
Maximum Zener Impedance
(Note 6)
Maximum Reverse
Current (Note 7)
V
Z
@ I
ZT
I
ZT
Z
ZT @
I
ZT
Z
ZK
@ I
ZK
I
ZK
I
R
@ V
R
Min (V)
Max (V)
mA
W
mA
uA
V
DDZX5V1BTS
KM
4.94
5.20
20
17
480
1
5
1.5
DDZX5V6BTS
KN
5.45
5.73
20
11
400
1
0.5
2.5
DDZX6V2BTS
KO
5.96
6.27
20
7
150
1
0.5
4.0
DDZX6V8CTS
YP
6.66
7.01
20
5
150
0.5
0.1
5.0
DDZX7V5CTS
YQ
7.29
7.67
20
6
120
0.5
0.1
6.0
DDZX8V2CTS
YR
8.03
8.45
20
8
120
0.5
0.1
6.5
DDZX9V1CTS
YS
8.83
9.30
20
8
120
0.5
0.1
7.0
DDZX10CTS
YT
9.70
10.20
20
8
120
0.5
0.1
8.0
DDZX11CTS
YU
10.82
11.38
10
10
120
0.5
0.1
8.4
DDZX12CTS
YV
11.74
12.35
10
12
110
0.5
0.1
9.1
DDZX13BTS
KW
12.55
13.21
10
14
110
0.5
0.1
10.0
DDZX14TS
GX
13.44
14.13
10
16
110
0.5
0.05
11.0
DDZX15TS
GY
14.80
15.57
10
18
150
0.5
0.05
12.0
DDZX16TS
YY
15.69
16.51
10
18
150
0.5
0.05
12.0
DDZX18CTS
YZ
17.42
18.33
10
23
150
0.5
0.05
14.0
DDZX20CTS
PJ
19.23
20.22
10
28
200
0.5
0.05
15.0
DDZX22DTS
2K
21.52
22.63
5
30
200
0.5
0.05
17.0
DDZX24CTS
PL
23.12
24.31
5
35
200
0.5
0.05
19.0
DDZX27DTS
2M
26.29
27.64
5
45
250
0.5
0.05
21.0
DDZX30DS
2N
29.02
30.51
5
55
250
0.5
0.05
23.0
DDZX33TS
RP
32.14
33.79
5
75
250
0.5
0.05
27.0
DDZX36TS
ZQ
35.36
37.19
5
85
250
0.5
0.05
30.0
DDZX39FTS
5Q
38.14
40.11
5
85
250
0.5
0.05
30.0
DDZX43TS
ZR
42.14
43.86
5
90
0.05
33.0
DDZX47TS
ZS
46.06
47.94
5
90
0.05
36.0
Electrical Characteristics Table 1
@ T
A
= 25
C unless otherwise specified
T
C
U
D
O
R
P
W
E
N
Notes:
4. The Zener voltage is measured 40ms after power is supplied.
5. For inquiries on tighter tolerances, or alternate nominal zener voltages, please contact your Diodes Inc.
sales representative for availability and minimum order details.
6. f = 1kHz.
7. Short duration test pulse used to minimize self-heating effect.
DS30416 Rev. 2 - 2
3 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
T
C
U
D
O
R
P
W
E
N
0
0.2
0.4
0.6
0.8
1.2
1.0
I
,
INST
ANT
A
NEOUS
F
OR
W
A
RD
CURRENT
(mA
)
F
V , INSTANTANEOUS FORWARD VOLTAGE (V)
F
Fig. 2 Typical Forward Characteristics
100
10
1.0
0.1
0.01
1000
8.0
11.0
13.0
15.0
I
,
ZENER
C
URRENT
(
A
)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 5 Typical Reverse Characteristics, DDZX10CTS - DDZX14TS
10.0
12.0
14.0
1m
100n
10m
100m
DDZX10CTS
DDZX13BTS
DDZX14TS
DDZX11CTS
DDZX12CTS
0
40
80
120
160
200
25
0
50
75
100
125
150
P
,
POWER
D
ISSIP
A
TION
(mW)
d
T , AMBIENT TEMPERATURE (
C)
A
Fig. 1 Power Dissipation vs Ambient Temperature
240
1m
100n
10m
100m
4.0
6.0
8.0
10.0
I
,
ZENER
CURRENT
(A)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 4 Typical Reverse Characteristics, DDZX5V6BTS - DDZX9V1CTS
5.0
7.0
9.0
DDZX5V6BTS
DDZX8V2CTS
DDZX9V1CTS
DDZX6V2BTS
DDZX6V8CTS
DDZX7V5CTS
10n
100n
1m
0
5
I
,
ZENER
C
URRENT
(A)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 3 Typical Reverse Characteristics
10m
100m
10
15
20
25
30
35
40
45
50
5V6B
8V2C
9V1C
10C
11
C
12C
13B
6V2B 6V8C
7V5C
14
15
16
20C
18C
22D
24C
27D
33
39
47
DS30416 Rev. 2 - 2
4 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
T
C
U
D
O
R
P
W
E
N
0.1
10
100
1
1000
10,000
12
13
14
15
16
17
18
V , ZENER VOLTAGE (V)
Z
Fig. 11 Typical Zener Impedance Characteristics,
DDZX12CTS - DDZX18CTS
I = 5mA
Z
I = 1mA
Z
0.1
10
100
1
1000
10,000
5.0
6.0
7.0
8.0
9.0
10.0
11.0
12
V , ZENER VOLTAGE (V)
Z
Fig. 10 Typical Zener Impedance Characteristics,
DDZX5V6BTS - DDZX12CTS
I = 1mA
Z
I = 5mA
Z
I = 20mA
Z
38
42
46
50
I
,
ZENER
CURRENT
(A)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 9 Typical Reverse Characteristics,
DDZX39FTS - DDZX47TS
40
44
48
DDZX47TS
DDZX39FTS
1m
100n
10m
100m
26
30
34
38
I,
Z
E
N
E
R
C
URRENT
(
A
)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 8 Typical Reverse Characteristics, DDZX27DTS - DDZX39FTS
28
32
36
DDZX27DTS
DDZX33TS
DDZX39FTS
1m
100n
10m
100m
14
16
18
20
I,
Z
E
N
E
R
C
URRENT
(
A
)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 6 Typical Reverse Characteristics, DDZX15TS - DDZX18CTS
15
17
19
1m
100n
10m
100m
DDZX18CTS
DDZX15TS
DDZX16TS
19
21
23
25
I
,
ZENER
C
URRENT
(
A
)
Z
V , ZENER BREAKDOWN VOLTAGE (V)
Z
Fig. 7 Typical Reverse Characteristics, DDZX20CTS - DDZX24CTS
20
22
24
DDZX20CTS
DDZX22DTS
1m
100n
10m
100m
DDZX24CTS
DS30416 Rev. 2 - 2
5 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
T
C
U
D
O
R
P
W
E
N
-0.08
0.12
-0.04
-0.06
20
26
30
TC
of
V
,
TEMPERA
T
URE
C
OEFFICIENT
Z
OF
ZENER
V
OL
T
A
GE
(%/C)
V , ZENER VOLTAGE (V)
Z
Fig. 17 Typical Temperature Coefficient of
Zener Voltage, DDZX20CTS-DDZX30DTS
24
22
28
-0.02
0
0.02
0.04
0.06
0.08
0.10
I = 5mA
ZT
I = 2mA
ZT
-0.08
0.12
-0.04
-0.06
10
16
20
TC
of
V
,
TEMPERA
T
URE
C
OEFFICIENT
Z
OF
ZENER
V
OL
T
A
GE
(%/C)
V , ZENER VOLTAGE (V)
Z
Fig. 16 Typical Temperature Coefficient of
Zener Voltage vs. Zener Voltage, DDZX10CTS-DDZX20CTS
14
12
18
-0.02
0
0.02
0.04
0.06
0.08
0.10
I = 5mA
ZT
-0.08
0.12
-0.04
-0.06
0
6
10
TC
of
V
,
TEMPERA
T
URE
COEFFICIENT
Z
OF
ZENER
V
OL
T
A
GE
(%/C)
V , ZENER VOLTAGE (V)
Z
Fig. 15 Typical Temperature Coefficient of
Zener Voltage vs. Zener Voltage, DDZX6V62TS-DDZX10CTS
4
2
8
-0.02
0
0.02
0.04
0.06
0.08
0.10
I = 5mA
ZT
0.1
10
100
1
1000
10,000
34
36
38
40
42
44
48
46
V , ZENER VOLTAGE (V)
Z
Fig. 14 Typical Zener Impedance Characteristics,
DDZX36TS - DDZX47TS
I = 2mA
Z
0.1
10
100
1
1000
10,000
18
19
20
21
22
23
24
V , ZENER VOLTAGE (V)
Z
Fig. 12 Typical Zener Impedance Characteristics,
DDZX18CTS - DDZX24CTS
I = 5mA
Z
I = 1mA
Z
0.1
10
100
1
1000
10,000
24
26
28
30
32
34
V , ZENER VOLTAGE (V)
Z
Fig. 13 Typical Zener Impedance Characteristics,
DDZX24CTS - DDZX33TS
I = 2mA
Z
DS30416 Rev. 2 - 2
6 of 6
DDZX5V1BTS - DDZX47TS
www.diodes.com
T
C
U
D
O
R
P
W
E
N
-0.08
0.12
-0.04
-0.06
30
42
50
TC
of
V
,
TEMPERA
T
URE
C
OEFFICIENT
Z
OF
ZENER
VOL
T
AGE
(%/C)
V , ZENER VOLTAGE (V)
Z
Fig. 18 Typical Temperature Coefficient of
Zener Voltage, DDZX30DTS-DDZX47TS
38
34
46
-0.02
0
0.02
0.04
0.06
0.08
0.10
I = 2mA
ZT
C
,
T
O
T
A
L
C
AP
ACIT
ANCE
(pF)
T
1
10
100
10
100
1
V , NOMINAL ZENER VOLTAGE (V)
Z
Fig. 19 Total Capacitance vs Nominal Zener Voltage
T = 25 C
j
f = 1MHz
V = 2V
R
V =1V
R