1N5347B-TP
更新时间:2025-04-27 19:15:47
品牌:MCC
描述:Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, DO-15, ROHS COMPLIANT, PLASTIC PACKAGE-2
1N5347B-TP 概述
Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, DO-15, ROHS COMPLIANT, PLASTIC PACKAGE-2 齐纳二极管
1N5347B-TP 规格参数
是否无铅: | 不含铅 | 是否Rohs认证: | 符合 |
生命周期: | Active | 零件包装代码: | DO-15 |
包装说明: | O-PALF-W2 | 针数: | 2 |
Reach Compliance Code: | not_compliant | ECCN代码: | EAR99 |
HTS代码: | 8541.10.00.50 | 风险等级: | 0.79 |
外壳连接: | ISOLATED | 配置: | SINGLE |
二极管元件材料: | SILICON | 二极管类型: | ZENER DIODE |
最大动态阻抗: | 2 Ω | JEDEC-95代码: | DO-15 |
JESD-30 代码: | O-PALF-W2 | JESD-609代码: | e3 |
湿度敏感等级: | 1 | 元件数量: | 1 |
端子数量: | 2 | 最高工作温度: | 150 °C |
封装主体材料: | PLASTIC/EPOXY | 封装形状: | ROUND |
封装形式: | LONG FORM | 峰值回流温度(摄氏度): | NOT SPECIFIED |
极性: | UNIDIRECTIONAL | 最大功率耗散: | 5 W |
认证状态: | Not Qualified | 标称参考电压: | 10 V |
子类别: | Voltage Reference Diodes | 表面贴装: | NO |
技术: | ZENER | 端子面层: | Matte Tin (Sn) |
端子形式: | WIRE | 端子位置: | AXIAL |
处于峰值回流温度下的最长时间: | NOT SPECIFIED | 最大电压容差: | 5% |
工作测试电流: | 125 mA | Base Number Matches: | 1 |
1N5347B-TP 数据手册
通过下载1N5347B-TP数据手册来全面了解它。这个PDF文档包含了所有必要的细节,如产品概述、功能特性、引脚定义、引脚排列图等信息。
PDF下载1N5338B
THRU
M C C
ꢀꢁꢂꢃꢄꢅꢆꢄꢇꢇꢈꢃꢂꢁꢉꢊꢅꢆomponents
20736 Marilla Street Chatsworth
ꢆꢋꢅꢌꢍꢎꢍꢍ
ꢏꢐꢄꢑꢈꢒꢅꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢎ
$ꢉ%ꢒꢅ ꢅ ꢅ ꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢌ
TM
Micro Commercial Components
1N5388B
Features
xꢀ Zener Voltage From 5.1V to 200V
5 Watt
·
Epoxy meets UL 94 V-0 flammability rating
·
•
Moisture Sensitivity Level 1
Zener Diode
5.1 to 200 Volts
Lead Free Finish/RoHS Compliant (Note1) ("P"Suffix designates
Compliant. See ordering information)
•
Marking : Cathode band and type number
•
Halogen free available upon request by adding suffix "-HF"
Maximum Ratings:
DO-15
xꢀ Operating Temperature: -55qC to +150qC
xꢀ Storage Temperature: -55qC to +150qC
xꢀ 5 Watt DC Power Dissipation
xꢀ Maximum Forward Voltage @ 1A: 1.2 Volts
xꢀ Power Derating: 67 mW/к Above 75к
xꢀ Maximum thermal resistence: 15oC/W from junction to lead
83OC/W from junction to ambient
D
Mechanical Data
Case: JEDEC DO-15.
Terminals: Solder plated , solderable per MIL-STD-750,
Method 2026.
Standard Packaging: 52mm tape
A
Cathode
Mark
B
C
DIMENSIONS
INCHES
MIN
.230
.104
.026
MM
MIN
5.80
2.60
.70
DIM
A
B
C
D
MAX
.300
.140
.034
---
MAX
7.60
3.60
.90
NOTE
1.000
25.40
---
Note: 1. High Temperature Solder Exemption Applied, see EU Directive Annex 7.
www.mccsemi.com
Revision: E
2014/02/26
1 of 6
M C C
TM
Micro Commercial Components
H
1N5338B T RU 1N5388B
ELECTRICAL CHARACTERISTICS (T =25 unless otherwise noted, V =1.2 Max @ I =1A for all types)
qC
A
F
F
MAXIMUM
DYNAMIC
KNEE
MAXIMUM
DYNAMIC
IMPEDANCE
ZZT
MAXIMUM
REVERSE
CURRENT
IR
MAXIMUM
REGULATOR
CURRENT
IZM
MAXIMUM
REGULATOR
VOLTAGE
VZ
TEST
CURRENT
IZ
TEST
VOLTAGE
VR
MAXIMUM
VOLTAGE
SURGE
CURRENT
IZSM
MCC PART
NUMBER
IMPEDANCE
ZZK@1.0mA
REGULATION
VOLTS
5.1
5.6
6
mA
240
220
200
200
175
175
150
150
150
125
125
100
100
100
75
75
70
65
65
65
50
50
50
50
50
40
40
30
30
30
25
25
20
20
20
20
20
15
15
15
12
12
10
10
8
OHMS
1.5
1
ꢀA
1
VOLTS
1
mA
930
865
790
765
700
630
580
545
520
475
430
395
365
340
315
295
280
264
250
237
216
198
190
176
170
158
144
132
122
110
100
93
OHMS
400
400
300
200
200
200
200
200
150
125
125
125
100
75
A
14.4
13.4
12.7
12.4
11.5
10.7
10
VOLTS
0.39
0.25
0.19
0.1
0.15
0.15
0.2
0.2
0.22
0.22
0.25
0.25
0.25
0.25
0.25
0.3
0.35
0.4
0.4
0.4
0.45
0.55
0.55
0.6
0.6
0.6
0.6
0.65
0.65
0.7
0.8
0.9
1
1N5338B
1N5339B
1N5340B
1N5341B
1N5342B
1N5343B
1N5344B
1N5345B
1N5346B
1N5347B
1N5348B
1N5349B
1N5350B
1N5351B
1N5352B
1N5353B
1N5354B
1N5355B
1N5356B
1N5357B
1N5358B
1N5359B
1N5360B
1N5361B
1N5362B
1N5363B
1N5364B
1N5365B
1N5366B
1N5367B
1N5368B
1N5369B
1N5370B
1N5371B
1N5372B
1N5373B
1N5374B
1N5375B
1N5376B
1N5377B
1N5378B
1N5379B
1N5380B
1N5381B
1N5382B
1N5383B
1N5384B
1N5385B
1N5386B
1N5387B
1N5388B
1
2
1
1
3
6.2
6.8
7.5
8.2
8.7
9.1
10
1
1
3
1
10
10
10
10
7.5
5
5.2
1.5
1.5
2
5.7
6.2
6.6
9.5
9.2
8.6
8
2
6.9
2
7.6
11
2.5
2.5
2.5
2.5
2.5
2.5
2.5
2.5
3
5
8.4
12
2
9.1
7.5
7
13
1
9.9
14
1
10.6
11.5
12.2
12.9
13.7
14.4
15.2
16.7
18.2
19
6.7
6.3
6
15
1
75
16
1
75
17
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
75
5.8
5.5
5.3
5.1
4.7
4.4
4.3
4.1
3.9
3.7
3.5
3.3
3.1
2.8
2.7
2.5
2.3
2.2
2.1
2
18
75
19
75
20
3
75
22
3.5
3.5
4
75
24
100
110
120
130
140
150
160
170
190
210
230
280
350
400
500
620
720
760
760
800
1000
1150
1250
1500
1500
1650
1750
1750
1850
1850
25
27
5
20.6
21.2
22.8
25.1
27.4
29.7
32.7
35.8
38.8
42.6
45.5
47.1
51.7
56
28
6
30
8
33
10
11
14
20
25
27
35
40
42
44
45
65
75
75
90
125
170
190
230
330
350
380
430
450
480
36
39
43
47
51
56
86
60
79
1.2
1.35
1.5
1.6
1.8
2
62
76
68
70
75
63
1.9
1.8
1.7
1.6
1.5
1.4
1.3
1.2
1.2
1.1
1.1
1
82
62.2
66
58
87
54.5
52.5
47.5
43
91
69.2
76
2.2
2.3
2.5
2.5
2.5
2.5
3
100
110
120
130
140
150
160
170
180
190
200
83.6
91.2
98.8
106
114
122
129
137
144
152
39.5
36.6
34
8
31.6
29.4
28
8
3
8
3
5
26.4
25
1
4
5
0.9
0.9
5
5
23.6
5
NOTE:
1. TOLERANCE AND VOLTAGE DESIGNATION - The JEDEC type numbers shown indicate a tolerance of+/-10% with
guaranteed limits on only Vz, IR, Ir, and VF as shown in the electrical characteristics table. Units with guaranteed limits
on all seven parameters are indicated by suffix “B” for+/-5% tolerance.
2. ZENER VOLTAGE (Vz) AND IMPEDANCE (ZZT & ZZK) - Test conditions for Zener voltage and impedance are as
follows; Iz is applied 40+/-10 ms prior to reading. Mounting contacts are located from the inside edge of mounting
o
clips to the body of the diode(Ta=25 C)
www.mccsemi.com
Revision: E
2014/02/26
2 of 6
M C C
TM
Micro Commercial Components
1N5338B THRU 1N5388B
3. SURGE CURRENT (Ir) - Surge current is specified as the maximum allowable peak, non-recurrent square-wave
current with a pulse width, PW, of 8.3 ms. The data given in Figure 5 may be used to find the maximum surge
current for a quare wave of any pulse width between 1 ms and 1000ms by plotting the applicable points on
logarithmic paper. Examples of this, using the 6.8v , is shown in Figure 6. Mounting
ć
contact located as specified in Note 3. (TA=25 ).
4. VOLTAGE REGULATION (Vz) - Test conditions for voltage regulation are as follows: Vz measurements are made
at 10% and then at 50% of the Iz max value listed in the electrical characteristics table. The test currents are the
same for the 5% and 10% tolerance devices. The test current time druation for each Vz measurement is 40+/- 10 ms.
(TA=25C ). Mounting contact located as specified in Note2.
5. MAXIMUM REGULATOR CURRENT (IZM) - The maximum current shown is based on the maximum voltage of a
5% type unit. Therefore, it applies only to the B-suffix device. The actual IZM for any device may not exceed the
value of 5 watts divided by the actual Vz of the device. TL=75Cat maximum from the device body.
APPLICATION NOTE:
Since the actual voltage available from a given Zener
diode is temperature dependent, it is necessary to determine
junction temperature under any set of operating conditions
in order to calculate its value. The following procedure is
recommended:
For worst‐case design, using expected limits of I , limits
Z
of P and the extremes of T (DT ) may be estimated.
D
J
J
Changes in voltage, V , can then be found from:
Z
DV = qVZ DTJ
q
, the Zener voltage temperature coefficient, is found
VZ
from Figures 2 and 3.
Lead Temperature, T , should be determined from:
L
TL = qLA PD + TA
Under high power‐pulse operation, the Zener voltage will
vary with time and may also be affected significantly by the
zener resistance. For best regulation, keep current
excursions as low as possible.
q
power dissipation.
is the lead‐to‐ambient thermal resistance and P is the
D
LA
Junction Temperature, T , may be found from:
J
TJ = TL + DTJL
Data of Figure 4 should not be used to compute surge
capability. Surge limitations are given in Figure 5. They are
lower than would be expected by considering only junction
temperature, as current crowding effects cause temperatures
to be extremely high in small spots resulting in device
degradation should the limits of Figure 5 be exceeded.
DT is the increase in junction temperature above the lead
JL
temperature and may be found from Figure 4 for a train of
power pulses or from Figure 1 for dc power.
DTJL = qJL PD
www.mccsemi.com
Revision: E
2014/02/26
3 of 6
M C C
TM
RATING AND CHARACTERISTICS CURVES
1N5338B THRU 1N5388B
Micro Commercial Components
TEMPERATURE COEFFICIENTS
300
200
100
8
6
4
2
0
RANGE
50
30
20
10
5
0
20 40 60 80 100 120 140 160 180 200 220
VZ, ZENER VOLTAGE @IZT (VOLTS)
0
20
40
60
80
100
120
140
160
TL, LEAD TEMPERATURE
Fig. 1-POWER TEMPERATURE DERATING CURVE
Fig. 2-TEMPERATURE COEFFICIENT-RANGE FOR UNITS
6 TO 51 VOLTS
20
D = 0.5
10
5
D = 0.2
P
PK
t
1
D = 0.1
t
2
2
1
D = 0.05
DUTY CYCLE, D = t /t
1 2
SINGLE PULSE D T = q (t)P
D = 0.01
NOTE: BELOW 0.1 SECOND, THERMAL
NOTE: RESPONSE CURVE IS APPLICABLE
NOTE: TO ANY LEAD LENGTH (L).
JL
JL
REPETITIVE PULSES D T = q (t, D)P
PK
PK
0.5
0.2
JL
JL
D = 0
0.001
0.005 0.01
0.05
0.1
0.5
1
5
10
20
50
100
t, TIME (SECONDS)
Figure 3. Typical Thermal Response
L, Lead Length = 3/8 Inch
40
PW = 1ms*
20
10
40
30
PW = 8.3ms*
4
2
1
20
10
2
MOUNT ON 8.0mm
COPPER PADS TO
EACH TERMINAL
PW = 1000ms*
SINE / SQUARE WAVE PW = 100ms*
10 20 30 40 60 80 100
0.4
0.2
0.1
3
0
0
0.2
0.4
0.6
0.8
1
4
6
8
200
L, LEAD LENGTH TO HEAT SINK (INCH)
NOMINAL VZ(V)
Fig. 4-TYPICAL THERMAL RESISTANCE
Fig. 5-MAXIMUM NON-REPETITIVE SURGE
CURRENT VERSUS NOMINAL ZENER
VOLTAGE (SEE NOTE 3)
www.mccsemi.com
Revision: E
2014/02/26
4 of 6
M C C
TM
RATING AND CHARACTERISTICS CURVES
1N5338B THRU 1N5388B
Micro Commercial Components
ZENER VOLTAGE VERSUS ZENER CURRENT
(FIGURES 7,8)
30
20
VZ = 6.8V
TC = 25
T = 25
1000
10
5
PLOTTED FROM INFORMATION
100
10
GIVEN IN FIGURE 5
2
1
0.5
1
0.2
0.1
0.1
1
2
3
4
5
6
7
8
9
10
1
10
100
1000
VZ, ZENER VOLTAGE (VOLTS)
Fig. 6-PEAK SURGE CURRENT VERSUS PULSE
WIDTH(SEE NOTE 3)
Fig. 7-ZENER VOLTAGE VERSUS ZENER CURRENT
VZ = 6.8 THRU 10 VOLTS
1000
T = 25
100
10
1
0.1
10
20
30
40
50
60
70
80
VZ, ZENER VOLTAGE (VOLTS)
Fig. 8-ZENER VOLTAGE VERSUS ZENER CURRENT
VZ = 11 THRU 51 VOLTS
*** Data of Figure 3 should not be used to compute surge capability. Surge limitations are given in Figure 5. They are
lower than would be expected by considering only junction temperature, as current crowding effects cause
temperatures to be extremely high in small spots resulting in device degradation should the limits of Figure. 5 be
exceeded
w w w.m c c s e m i.c o m
Revision: E
2014/02/26
5 of 6
M C C
TM
Micro Commercial Components
Ordering Information :
Device
Part Number-TP
Packing
Tape&Reel: 4Kpcs/Reel
Ammo Packing: 3Kpcs/Ammo Box
Bulk: 25Kpcs/Carton
Part Number-AP
Part Number-BP
Note : Adding "-HF" suffix for halogen free, eg. Part Number-TP-HF
***IMPORTANT NOTICE***
Micro Commercial Components Corp. reserves the right to make changes without further notice to any product herein to
make corrections, modifications , enhancements , improvements , or other changes . Micro Commercial Components
Corp . does not assume any liability arising out of the application or use of any product described herein; neither does it
convey any license under its patent rights ,nor the rights of others . The user of products in such applications shall assume all
risks of such use and will agree to hold Micro Commercial Components Corp . and all the companies whose products are
represented on our website, harmless against all damages.
***LIFE SUPPORT***
MCC's products are not authorized for use as critical components in life support devices or systems without the express written
approval of Micro Commercial Components Corporation.
***CUSTOMER AWARENESS***
Counterfeiting of semiconductor parts is a growing problem in the industry. Micro Commercial Components (MCC) is taking
strong measures to protect ourselves and our customers from the proliferation of counterfeit parts. MCC strongly encourages
customers to purchase MCC parts either directly from MCC or from Authorized MCC Distributors who are listed by country on
our web page cited below. Products customers buy either from MCC directly or from Authorized MCC Distributors are genuine
parts, have full traceability, meet MCC's quality standards for handling and storage. MCC will not provide any warranty
coverage or other assistance for parts bought from Unauthorized Sources. MCC is committed to combat this global
problem and encourage our customers to do their part in stopping this practice by buying direct or from authorized
distributors.
w w w.m c c s e m i.c o m
6 of 6
Revision: E
2014/02/26
3
1N5347B-TP 替代型号
型号 | 制造商 | 描述 | 替代类型 | 文档 |
1N5347B | ONSEMI | 5 Watt Surmetic 40 Zener Voltage Refulators | 功能相似 |
![]() |
1N5347BG | ONSEMI | 5 Watt Surmetic TM 40 Zener Voltage Regulators | 功能相似 |
![]() |
1N5347BRLG | ONSEMI | 5 Watt Surmetic TM 40 Zener Voltage Regulators | 功能相似 |
![]() |
1N5347B-TP 相关器件
型号 | 制造商 | 描述 | 价格 | 文档 |
1N5347BAD | FORMOSA | Status : Active; Package : DO-201AD; PD(W) : 5; VZ Min.(V) : 9.5; VZ Nom.(V) : 10; VZ Max.(V) : 10.5; IZ(mA) : 125; AEC-Q101Qualified : No; | 获取价格 |
![]() |
1N5347BE3/TR | MICROSEMI | Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, ROHS COMPLIANT, PLASTIC, T-18, 2 PIN | 获取价格 |
![]() |
1N5347BE3/TR13 | MICROSEMI | Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, DO-201AE | 获取价格 |
![]() |
1N5347BE3/TR8 | MICROSEMI | Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, ROHS COMPLIANT, PLASTIC, T-18, 2 PIN | 获取价格 |
![]() |
1N5347BG | ONSEMI | 5 Watt Surmetic TM 40 Zener Voltage Regulators | 获取价格 |
![]() |
1N5347BL | SUNMATE | Protection Devices Zener diode | 获取价格 |
![]() |
1N5347BRL | ONSEMI | 5 Watt Surmetic 40 Zener Voltage Refulators | 获取价格 |
![]() |
1N5347BRL | MOTOROLA | Zener Diode, 10V V(Z), 5%, 5W, Silicon, Unidirectional, PLASTIC, CASE 17-02, 2 PIN | 获取价格 |
![]() |
1N5347BRL | STMICROELECTRONICS | 10V, 5W, SILICON, UNIDIRECTIONAL VOLTAGE REGULATOR DIODE | 获取价格 |
![]() |
1N5347BRLG | ONSEMI | 5 Watt Surmetic TM 40 Zener Voltage Regulators | 获取价格 |
![]() |
1N5347B-TP 相关文章

- 2025-04-30
- 14


- 2025-04-30
- 12


- 2025-04-30
- 10


- 2025-04-30
- 12
