Available as “HR” (high reliability) screened per MIL-PRF-19500, JANTX level. Add “HR” suffix to base part number.
Available as non-RoHS (Sn/Pb plating), standard, and as RoHS by adding “-PBF” suffix.
MAXIMUM RATINGS
Rating
Operating temperature
Storage temperature
Thermal resistance
Steady-state power
Forward voltage
Solder temperature
Value
-65°C to +175°C
-65°C to +175°C
250°C/W junction to lead at 3/8” lead length from body, or 310°C/W junction to ambient when mounted on
FR4 PC board
(1)
0.5W at T
L
≤ 50°C 3/8” from body or 0.48W at T
A
≤ 25°C when mounted on FR4 PC board
(1)
@ 200 mA: 1.1 volts maximum (1N957B-1N985B)
@ 200mA: 1.3 volts maximum (1N985-1N992B)
260°C for 10 s maximum
ELECTRICAL CHARACTERISTICS
(T
A
= 25°C unless otherwise specified)
Part
number
(1)
Nominal
zener
voltage
(2)
Zener
test
current
I
ZT
mA
18.5
16.5
15.0
14.0
12.5
11.5
10.5
9.5
8.5
7.8
7.0
6.2
5.6
5.2
4.6
4.2
3.8
3.4
3.2
3.0
Maximum zener impedance
(3)
Z
ZT
@ I
ZT
Ohms
4.5
5.5
6.5
7.5
8.5
9.5
11.5
13
16
17
21
25
29
33
41
49
58
70
80
93
Z
ZK
Ohms
700
700
700
700
700
700
700
700
700
700
750
750
750
750
750
1000
1000
1000
1000
1500
@I
ZK
mA
1.0
0.5
0.5
0.5
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
Maximum
DC zener
current
(4)
Maximum
surge
current
(5)
Maximum reverse
leakage current
I
R
µA
150
75
50
25
10
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
@V
R
Volts
5.2
5.7
6.2
6.9
7.6
8.4
9.1
9.9
11.4
12.2
13.7
15.2
16.7
18.2
20.6
22.8
25.1
27.4
29.7
32.7
Maximum
temperature
coefficient
α
vz
%/°C
0.05
0.058
0.065
0.068
0.075
0.076
0.077
0.079
0.082
0.083
0.085
0.086
0.087
0.088
0.090
0.091
0.092
0.093
0.094
0.095
V
Z
Volts
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
I
ZM
mA
55
50
45
41
38
32
31
28
25
24
20
18
16
15
13
12
11
10
9.5
8.8
I
ZSM
mA
300
275
250
225
200
175
160
150
130
120
110
100
90
80
70
65
60
55
46
44
1N957B
1N958B
1N959B
1N960B
1N961B
1N962B
1N963B
1N964B
1N965B
1N966B
1N967B
1N968B
1N969B
1N970B
1N971B
1N972B
1N973B
1N974B
1N975B
1N976B
Rev. 20150825
High-reliability discrete products
and engineering services since 1977
1N957B-1N992B
500 mW SILICON ZENER DIODES
Maximum
DC zener
current
(4)
ELECTRICAL CHARACTERISTICS
(T
A
= 25°C unless otherwise specified)
Part
number
(1)
Nominal
zener
voltage
(2)
Zener
test
current
I
ZT
mA
2.7
2.5
2.2
2.0
1.8
1.7
1.5
1.4
1.3
1.1
1.0
0.95
0.85
0.80
0.68
0.65
Maximum zener impedance
Z
ZT
@ I
ZT
Ohms
105
125
150
185
230
270
330
400
500
750
900
1100
1500
1700
2200
2500
Z
ZK
Ohms
1500
1500
2000
2000
2000
2000
3000
3000
3000
4000
4500
5000
6000
6500
7100
8000
(3)
Maximum
surge
current
(5)
Maximum reverse
leakage current
I
R
µA
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
@V
R
Volts
35.8
38.8
42.6
47.1
51.7
56.0
62.2
69.2
76.0
83.6
91.2
98.8
114.0
121.6
136.8
152.0
Maximum
temperature
coefficient
α
vz
%/°C
0.095
0.096
0.096
0.097
0.097
0.098
0.098
0.099
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
V
Z
Volts
47
51
56
62
68
75
82
91
100
110
120
130
150
160
180
200
@I
ZK
mA
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
0.25
I
ZM
mA
7.9
7.4
6.8
6.0
5.5
5.0
4.6
4.1
3.7
3.3
3.1
2.7
2.4
2.2
2.0
1.8
I
ZSM
mA
40
37
35
30
28
26
23
21
18
16
15
13
12
11
10
9
1N977B
1N978B
1N979B
1N980B
1N981B
1N982B
1N983B
1N984B
1N985B
1N986B
1N987B
1N988B
1N989B
1N990B
1N991B
1N992B
NOTE 1. Zener voltage tolerance on ‘’B’’ suffix is + 5%. Suffix letter A denotes +10%. No suffix denotes +20% tolerance. ‘’C’’ suffix denotes + 2% and ‘’D’’ suffix denotes + 1%.
NOTE 2. Zener voltage is measured with the device junction in thermal equilibrium at an ambient temperature of 25°C + 3°C.
NOTE 3. Zener impedance is derived by superimposing on I
ZTA
60HZ rms a.c. current equal to 10% of I
ZT
.
NOTE 4: The values of I
ZM
are calculated for a ±5% tolerance on nominal zener voltage. Allowance has been made for the rise in zener voltage above V
ZT
which results from zener impedance
and the increase in junction temperature as power dissipation approaches 400mW. In the case of individual diodes I
ZM
is that value of current which results in a dissipation of 400mW at 75°C
lead temperature at 3/8” from body.
NOTE 5: The surge for I
ZM
is a square wave or equivalent half-sine wave pulse of 1/120 second duration.
[size=3] The dual-core processor released by ST this time has a main frequency of up to 650MHZ, consisting of 32-bit ARM Cortex-A7 and/or Cortex-M3, and is mainly aimed at automotive-grade audio and v...
Straight to the point: I encountered two problems. 1. When using DTC with ADC10, I found that the data was strung. I opened two AD channels, and the data of AD0 and AD1 were reversed. I was very confu...
Electricity meter, GPRS module, computer. Using Delphi socket programming. May I ask: Does the server (PC) only need to set up the GPRS module and initialize it, or does it also need to set the baud r...
Generally, the method used to terminate an application is Findwindow, terminateProcessing. In addition to this method, are there any other methods? If not, what method can be used to prevent the appli...
Why does my 1602 LCD screen not respond after I write a program into it? When I power on, the lower row turns black and the upper row does not respond. I burned my written program into it and it was t...
In the war without gunpowder between China and the United States,
ZTE
has become a new victim. The seven-year chip ban by the United States has pushed this communications giant to a life-or...[Details]
1. Test conditions Hardware: STM32L432KC Main frequency: 80MHz Compiler: IAR 8.20.1 Compiler options: High Speed no size constraints CRC generator polynomial: 0x782f 2. Test Method The softwar...[Details]
When Amazon launched its first
cloud computing
service, the outside world was not optimistic about this direction, as it had high investment, low profits and many uncertainties. Let's follo...[Details]
background After the hardware engineer completed the PCB and schematic design, the routine was modified according to the tutorial of Zhengdian Atom to verify the correctness of the hardware. STM32F...[Details]
I used STM32CubeMX V4.22.1 to generate a project including EHT and Lwip. The debugging has been abnormal. After careful inspection, the following problems were found: 1. The hardware uses LAN8720A, b...[Details]
This is my first time writing an STM32 program. I have many questions to ask. I want to convert the data of the SO of MAX6675 into the actual temperature and read it out using the serial port tool. I...[Details]
China Energy Storage Network News:
The State Grid Corporation of China, this elephant, is planning to turn around and enter the emerging power service market.
The rallying cry for the tr...[Details]
I slightly changed the lyrics of Yu Quan's song "Running", which seems to be
a reflection of the current state of
Huawei Cloud
. At the annual Huawei Analyst Conference held on April 17,
Zh...[Details]
At present, in the world,
the construction of
smart cities
is in the process of gradually landing from concept, and technology giants and investment giants are important participants in this...[Details]
At present, the Beidou system has achieved industrial breakthroughs and leapfrog development in five major areas, including the automotive OEM market, smart phones, and high-precision applications....[Details]
The application of millimeter wave technology in mobile communications also involves a series of technical problems, including the large propagation loss of millimeter waves and the susceptibility ...[Details]
On May 16, in response to
the public opinion storm caused by
Lenovo's
"
5G
voting" incident,
Lenovo
Holdings Chairman and
Lenovo
Group Founder Liu Chuanzhi, Lenovo Gr...[Details]
In mid-to-late 2016, a girl from Hubei came to Beijing alone, full of curiosity about
cloud computing
. The girl left the deepest impression on me was her lovely smile. She told me that if ...[Details]
As shown in the figure, the author soldered a STM32F207VET6 board using a TQFP (32-100PIN) 0.55MM to direct plug adapter board. The board leads out the SWD debug interface (only PA13 and PA14 are occ...[Details]
The STM8L contains a 12-bit ADC with 25 input channels, including an internal temperature sensor, an internal reference voltage As can be seen from the figure above, there is an internal re...[Details]