1N4707C-T [MCC]
Zener Diode,;型号: | 1N4707C-T |
厂家: | Micro Commercial Components |
描述: | Zener Diode, |
文件: | 总5页 (文件大小:513K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
1N4678
THRU
M C C
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20736 Marilla Street Chatsworth
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ꢏꢐꢄꢑꢈꢒꢅꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢎ
$ꢉ%ꢒꢅ ꢅ ꢅ ꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢌ
TM
Micro Commercial Components
1N4713
Features
•
•
•
•
Zener Voltage 1.8V to 30V
Very Sharp Reverse Characteristic
VZ – tolerance ± 5%
500mW Silicon
Zener Diodes
High Reliability
Mechanical Data
DO-35
•
Case: Double slug type, hermetically sealed glass
·
Marking : Cathode band and type number
D
Maximum Ratings*
Symbol
PD
Value
500
Units
mW
Max. Steady State Power
Dissipation at
A
TL<75OC, Lead Length=3/8”
Junction Temperature
Cathode
Mark
℃
℃
TJ
TSTG
200
-65 to 200
B
Storage Temperature Range
Thermal Resistance( Junction
D
TthJA
300
K/W
to Ambient)
C
Electrical Characteristics @ 25°C Unless Otherwise Specified
Symbol
Maximum
Unit
DIMENSIONS
Max. Forward Voltage
@ IF=100mA
NOTE:
VF
1.5
V
INCHES
MIN
---
---
---
MM
MIN
DIM
A
B
C
D
MAX
.166
.079
.020
---
MAX
4.2
NOTE
---
---
2.00
.52
---
1) Some part number series have lower JEDEC registered
ratings.
---
1.000
25.40
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2006/05/28
1 of 5
M C C
1N4678 thru 1N4713
TM
Micro Commercial Components
Electrical Characteristics (T
= 30OC Unless Otherwise Noted, VF=1.5V Max @ IF=100mA for all types)
L
Zener Voltage (2)
VZ (Volts)
Leakage Current (3)
(4)
(5)
IZM
∆VZ
Device
Device (1)
IR @ VR
@ IZT
Marking
Min
Nom
1.8
2.0
2.2
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
8.7
9.1
10
Max
1.89
uA
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
50
uA Max
7.5
Volts
1.0
mA
Volts
0.7
1N4678
1N4679
1N4680
1N4681
1N4682
1N4683
1N4684
1N4685
1N4686
1N4687
1N4688
1N4689
1N4690
1N4691
1N4692
1N4693
1N4694
1N4695
1N4696
1N4697
1N4698
1N4699
1N4700
1N4701
1N4702
1N4703
1N4704
1N4705
1N4707
1N4711
1N4713
1N4678
1N4679
1N4680
1N4681
1N4682
1N4683
1N4684
1N4685
1N4686
1N4687
1N4688
1N4689
1N4690
1N4691
1N4692
1N4693
1N4694
1N4695
1N4696
1N4697
1N4698
1N4699
1N4700
1N4701
1N4702
1N4703
1N4704
1N4705
1N4707
1N4711
1N4713
1.71
1.90
120
110
100
95
2.10
5.0
1.0
0.7
2.09
2.31
5.0
1.0
0.75
0.8
2.28
2.52
2.0
1.0
2.565
2.85
2.835
3.15
1.0
1.0
90
0.85
0.9
0.8
1.0
85
3.135
3.42
3.465
3.78
7.5
1.5
80
0.95
0.95
0.97
0.99
0.99
0.97
0.96
0.95
0.9
7.5
2.0
75
3.705
4.085
4.465
4.845
5.32
4.095
4.515
4.935
5.355
5.88
5.0
2.0
70
4.0
2.0
65
10
3.0
60
10
3.0
55
10
4.0
50
5.89
6.51
10
5.0
45
6.46
7.14
10
5.1
35
7.125
7.79
7.875
8.61
10
5.7
31.8
29
0.75
0.5
1.0
6.2
8.265
8.645
9.50
9.135
9.555
10.5
1.0
6.6
27.4
26.2
24.8
21.6
20.4
19
0.4
1.0
6.9
0.08
0.1
1.0
7.6
10.45
11.40
12.35
13.30
14.25
15.20
16.15
17.10
19.00
25.65
11
11.55
12.6
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.01
0.01
0.01
8.4
0.11
0.12
0.13
0.14
0.15
0.16
0.17
0.18
0.2
12
9.1
13
13.65
14.7
9.8
14
10.6
11.4
12.1
12.9
13.6
15.2
20.4
22.8
17.5
16.3
15.4
14.5
13.2
11.9
8.8
7.9
15
15.75
16.8
16
17
17.85
18.9
18
20
21
27
28.35
31.5
0.27
0.3
28.5
30
Note:
1) Tolerance and type number designation (VZ)
The type numbers listed have a standard tolerance of ±5% on the nominal zener voltage. C for 2%, D for 1%.
2) Zener voltage (VZ) measurement
The zener voltage is measured with the device junction in the thermal equilibrium at the lead
temperature (TL) at 30OC ± 1OC and 3/8” lead length.
3) Reverse leakage current (IR)
Reverse leakage currents are guaranteed and measured at V R shown on the table.
4) Maximum zener current rating (IZM)
Maximum zener current ratings are based on maximum zener voltage of the individual units and
JEDEC 250mW rating.
5) Maximum voltage change (ÄVZ)
Voltage change is equal to the difference between V at 100uA and at 10uA
Z
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Revision: 5
2006/05/28
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M C C
1N4678 thru 1N4713
TM
Micro Commercial Components
100
70
50
+12
+10
+8
30
20
+6
V Ă@ĂI (NOTE 2)
Z ZĂ
RANGE
10
7
+4
+2
5
RANGE
V Ă@ĂI
Z
ZT
(NOTE 2)
0
3
2
-2
-4
1
10
2
3
4
5
6
7
8
9
10
11
12
20
30
50
70
100
V , ZENER VOLTAGE (VOLTS)
Z
V , ZENER VOLTAGE (VOLTS)
Z
Figure 1. Range for Units to 12 Volts
Figure 2. Range for Units 12 to 100 Volts
200
180
160
140
+6
+4
+2
V Ă@ĂI
Z
T Ă=Ă25°C
A
Z
20ĂmA
0
0.01ĂmA
1ĂmA
V Ă@ĂI
Z
ZT
(NOTE 2)
120
100
-2
-4
NOTE: BELOW 3 VOLTS AND ABOVE 8 VOLTS
NOTE: CHANGES IN ZENER CURRENT DO NOT
NOTE: AFFECT TEMPERATURE COEFFICIENTS
120
130
140
150
160
170
180
190
200
3
4
5
6
7
8
V , ZENER VOLTAGE (VOLTS)
Z
V , ZENER VOLTAGE (VOLTS)
Z
Figure 3. Range for Units 120 to 200 Volts
Figure 4. Effect of Zener Current
1000
500
100
70
T Ă=Ă25°C
A
T Ă=Ă25°C
A
50
0ĂV BIAS
0 BIAS
200
100
50
30
20
1ĂV BIAS
1ĂVOLTĂBIAS
10
20
10
5
7
5
50% OF V ĂBIAS
Z
50% OF
V ĂBIAS
Z
3
2
2
1
1
1
2
5
10
20
50
100
120
140
160
180
190
200
220
V , ZENER VOLTAGE (VOLTS)
Z
V , ZENER VOLTAGE (VOLTS)
Z
Figure 5. Typical Capacitance 2.4–100 Volts
Figure 6. Typical Capacitance 120–200 Volts
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Revision: 5
2006/05/28
3 of 5
M C C
1N4678 thru 1N4713
TM
Micro Commercial Components
100
RECTANGULAR
WAVEFORM
70
50
11ĂV-91ĂV NONREPETITIVE
1.8ĂV-10ĂV NONREPETITIVE
T Ă=Ă25°C PRIOR TO
J
INITIAL PULSE
30
20
5% DUTY CYCLE
10
7
10% DUTY CYCLE
20% DUTY CYCLE
5
3
2
1
0.01
0.02
0.05
0.1
0.2
0.5
1
2
5
10
20
50
100
200
500 1000
PW, PULSE WIDTH (ms)
Figure 7. Maximum Surge Power 1.8–91 Volts
1000
500
1000
700
500
T Ă=Ă25°C
J
i (rms)Ă=Ă0.1 I (dc)
V Ă=Ă2.7ĂV
Z
Z
fĂ=Ă60ĂHz
Z
RECTANGULAR
WAVEFORM, T Ă=Ă25°C
300
200
J
200
47ĂV
27ĂV
100
50
100
70
50
100-200ĂVOLTS NONREPETITIVE
30
20
20
6.2ĂV
10
7
5
10
5
3
2
2
1
1
0.01
0.1
1
10
100
1000
0.1
0.2
0.5
1
2
5
10
20
50 100
PW, PULSE WIDTH (ms)
I , ZENER CURRENT (mA)
Z
Figure 8. Maximum Surge Power DO-204AH
Figure 9. Effect of Zener Current on
100–200 Volts
Zener Impedance
1000
700
500
1000
500
T Ă=Ă25°C
J
i (rms)Ă=Ă0.1 I (dc)
MAXIMUM
MINIMUM
Z
fĂ=Ă60ĂHz
Z
I Ă=Ă1ĂmA
Z
200
200
100
70
50
100
50
5ĂmA
20ĂmA
20
20
10
5
75°C
10
7
5
25°C
0°C
150°C
2
1
2
1
1
2
3
5
7
10
20 30
50 70 100
0.4
0.5
0.6
0.7
0.8
0.9
1
1.1
V , ZENER VOLTAGE (VOLTS)
Z
V , FORWARD VOLTAGE (VOLTS)
F
Figure 10. Effect of Zener Voltage on Zener Impedance
Figure 11. Typical Forward Characteristics
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2006/05/28
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TM
Micro Commercial Components
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Micro Commercial Components Corp . does not assume any liability arising out of the application or
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Revision: 5
2006/05/28
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