All products are sold to the commercial specifications shown for any additional reliability testing or extended parameters, please consult the factory.
8
contact semitron on: telephone:
+44 (0)1793 724000
fax:
+44 (0)1793 720401
ELECTRICAL SPECIFICATION @ Tamb = 25°C
PART
NUMBER
UNI-POLAR
DEVICE
CODE
REVERSE
STANDOFF
VOLTAGE
V
R
(Volts)
MIN
P6SMBJ 6V8 / P6SMBJ 6V8C
P6SMBJ 6V8A / P6SMBJ 6V8CA
P6SMBJ 7V5 / P6SMBJ 7V5C
P6SMBJ 7V5A / P6SMBJ 7V5CA
P6SMBJ 8V2 / P6SMBJ 8V2C
P6SMBJ 8V2A / P6SMBJ 8V2CA
P6SMBJ 9V1 / P6SMBJ 9V1C
P6SMBJ 9V1A / P6SMBJ 9V1CA
P6SMBJ 10 / P6SMBJ 10C
P6SMBJ 10A / P6SMBJ 10CA
P6SMBJ 11 / P6SMBJ 11C
P6SMBJ 11A / P6SMBJ 11CA
P6SMBJ 12 / P6SMBJ 12C
P6SMBJ 12A / P6SMBJ 12CA
P6SMBJ 13 / P6SMBJ 13C
P6SMBJ 13A / P6SMBJ 13CA
P6SMBJ 15 / P6SMBJ 15C
P6SMBJ 15A / P6SMBJ 15CA
P6SMBJ 16 / P6SMBJ 16C
P6SMBJ 16A / P6SMBJ 16CA
P6SMBJ 18 / P6SMBJ 18C
P6SMBJ 18A / P6SMBJ 18CA
P6SMBJ 20 / P6SMBJ 20C
P6SMBJ 20A / P6SMBJ 20CA
P6SMBJ 22 / P6SMBJ 22C
P6SMBJ 22A / P6SMBJ 22CA
P6SMBJ 24 / P6SMBJ 24C
P6SMBJ 24A / P6SMBJ 24CA
P6SMBJ 27 / P6SMBJ 27C
P6SMBJ 27A / P6SMBJ 27CA
P6SMBJ 30 / P6SMBJ 30C
P6SMBJ 30A / P6SMBJ 30CA
P6SMBJ 33 / P6SMBJ 33C
P6SMBJ 33A / P6SMBJ 33CA
P6SMBJ 36 / P6SMBJ 36C
P6SMBJ 36A / P6SMBJ 36CA
P6SMBJ 39 / P6SMBJ 39C
P6SMBJ 39A / P6SMBJ 39CA
P6SMBJ 43 / P6SMBJ 43C
P6SMBJ 43A / P6SMBJ 43CA
P6SMBJ 47 / P6SMBJ 47C
P6SMBJ 47A / P6SMBJ 47CA
P6SMBJ 51 / P6SMBJ 51C
P6SMBJ 51A / P6SMBJ 51CA
Notes:
1. Testing is performed @ 25˚
2. Bv is measured using a pulse of 20 milliseconds or less
3. V
F
, for uni-diectional devices, is measured using a 300 microsecond square wave pulse @
I
T
= 50A
4.
I
R
is doubled for Bi-directional devices only with V
R
equal or less than 10 volts
6V8 / 6V8C
6V8A /6V8CA
7V5 / 7V5C
7V5A / 7V5CA
8V2 / 8V2C
8V2A / 8V2CA
9V1 / 9V1C
9V1A / 9V1CA
10 / 10C
10A / 10CA
11 / 11C
11A / 11CA
12 / 12C
12A / 12CA
13 / 13C
13A / 13CA
15 / 15C
15A / 15CA
16 / 16C
16A / 16CA
18 / 18C
18A / 18CA
20 / 20C
20A / 20CA
22 / 22C
22A / 22CA
24 / 24C
24A / 24CA
27 / 27C
27A / 27CA
30 / 30C
30A / 30CA
30 / 33C
33A / 33CA
36 / 36C
36A / 36CA
39 / 39C
39A / 39CA
43 / 43C
43A / 43CA
47 / 47C
47A / 47CA
51 / 51C
51A / 51CA
5.50
5.80
6.05
6.40
6.63
7.02
7.37
7.78
8.10
8.55
8.92
9.40
9.72
10.2
10.5
11.1
12.1
12.8
12.9
13.6
14.5
15.3
16.2
17.1
17.8
18.8
19.4
20.5
21.8
23.1
24.3
25.6
26.8
28.2
29.1
30.8
31.6
33.3
34.8
36.8
38.1
40.2
41.3
43.6
6.12
6.45
6.75
7.13
7.38
7.79
8.19
8.65
9.00
9.50
9.90
10.50
10.80
11.40
11.70
12.40
13.50
14.30
14.40
15.20
16.20
17.10
18.00
19.00
19.80
20.90
21.60
22.80
24.30
25.70
27.00
28.50
29.70
31.40
32.40
34.20
35.10
37.10
38.70
40.90
42.30
44.70
45.90
48.50
BREAKDOWN
VOLTAGE
V
BR
(Volts) @
I
T
MAX
7.48
7.14
8.25
7.88
9.02
8.61
10.00
9.55
11.00
10.50
12.10
11.60
13.20
12.60
14.30
13.70
16.50
15.80
17.60
16.80
19.80
18.90
22.00
21.00
24.20
23.10
26.40
25.20
29.70
28.40
33.0
31.50
36.30
34.70
39.60
37.80
42.90
41.00
47.30
45.20
51.70
49.40
56.10
53.60
10.0
10.0
10.0
10.0
10.0
10.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1000.0 (4)
1000.0 (4)
500.0 (4)
500.0 (4)
200.0 (4)
200.0 (4)
50.0 (4)
50.0 (4)
10.0 (4)
10.0 (4)
5.0 (4)
5.0 (4)
5.0 (4)
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
MAXIMUM
REVERSE
LEAKAGE
I
R
@ V
R
(µA)
MAXIMUM
CLAMPING
VOLTAGE
V
C
@
I
PP
(Volts)
(mA)
10.8
10.5
11.7
11.3
12.5
12.1
13.8
13.4
15.0
14.5
16.2
15.6
17.3
16.7
19.0
18.2
22.0
21.2
23.5
22.5
26.1
25.2
29.1
27.7
31.9
30.6
34.7
33.2
39.1
37.5
43.5
41.4
47.7
45.7
52.0
49.9
56.4
53.9
61.9
59.3
67.8
64.8
73.5
70.1
MAXIMUM MAXIMUM
PEAK PULSE FORWARD
CURRENT
VOLTAGE
I
PP
@ V
C
(V
F
) @
I
T
(A)
(Volts)
56.0
57.0
51.0
53.0
48.0
50.0
44.0
45.0
40.0
41.0
37.0
38.0
35.0
36.0
32.0
33.0
27.0
28.0
26.0
27.0
23.0
24.0
21.0
22.0
19.0
20.0
17.0
18.0
15.0
16.0
14.0
14.4
12.6
13.2
11.6
12.0
10.5
11.2
9.6
10.1
8.9
9.3
8.2
8.6
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
All products are sold to the commercial specifications shown, for any additional reliability testing or extended parameters, please consult the factory.
contact semitron on: telephone:
+44 (0)1793 724000
fax:
+44 (0)1793 720401
9
ELECTRICAL SPECIFICATION @ Tamb = 25°C
PART
NUMBER
UNI-POLAR
DEVICE
CODE
REVERSE
STANDOFF
VOLTAGE
V
R
(Volts)
MIN
P6SMBJ 56 / P6SMBJ 56C
P6SMBJ 56A / P6SMBJ 56CA
P6SMBJ 62 / P6SMBJ 62C
P6SMBJ 62A / P6SMBJ 62CA
P6SMBJ 68 / P6SMBJ 68C
P6SMBJ 68A / P6SMBJ 68CA
P6SMBJ 75/ P6SMBJ 75C
P6SMBJ 75A / P6SMBJ 75CA
P6SMBJ 82 / P6SMBJ 82C
P6SMBJ 82A / P6SMBJ 82CA
P6SMBJ 91 / P6SMBJ 91C
P6SMBJ 91A / P6SMBJ 91CA
P6SMBJ 100 / P6SMBJ 100C
P6SMBJ 100A / P6SMBJ 100CA
P6SMBJ 110 / P6SMBJ 110C
P6SMBJ 110A / P6SMBJ 110CA
P6SMBJ 120 / P6SMBJ 120C
P6SMBJ 120A / P6SMBJ 120CA
P6SMBJ 130 / P6SMBJ 130C
P6SMBJ 130A / P6SMBJ 130CA
P6SMBJ 150 / P6SMBJ 150C
P6SMBJ 150A / P6SMBJ 150CA
P6SMBJ 160 / P6SMBJ 160C
P6SMBJ 160A / P6SMBJ 160CA
P6SMBJ 170 / P6SMBJ 170C
P6SMBJ 170A / P6SMBJ 170CA
P6SMBJ 180 / P6SMBJ 180C
P6SMBJ 180A / P6SMBJ 180CA
P6SMBJ 200 / P6SMBJ 200C
P6SMBJ 200A / P6SMBJ 200CA
P6SMBJ 220 / P6SMBJ 220C
P6SMBJ 220A / P6SMBJ 220CA
Notes:
1. Testing is performed @ 25˚
2. Bv is measured using a pulse of 20 milliseconds or less
3. V
F
, for uni-diectional devices, is measured using a 300 microsecond square wave pulse @
I
T
= 50A
4.
I
R
is doubled for Bi-directional devices only with V
R
equal or less than 10 volts
56 / 56C
56A / 56CA
62 / 62C
62A / 62CA
68 / 68C
68A / 68CA
75 / 75C
75A / 75CA
82 / 82C
82A / 82CA
91 / 91C
91A / 91CA
100 / 100C
100A / 100CA
110 / 110C
110A / 110CA
120 / 120C
120A / 120CA
130 / 130C
130A / 130CA
150 / 150C
150A / 150CA
160 / 160C
160A / 160CA
170 / 170C
170A / 170CA
180 / 180C
180A / 180CA
200 / 200C
200A / 200CA
220 / 220C
220A / 220CA
45.4
47.8
50.2
53.0
55.1
58.1
60.7
64.1
66.4
70.1
73.7
77.8
81.0
85.5
89.2
94.0
97.2
102.0
105.0
111.0
121.0
128.0
130.0
136.0
138.0
145.0
146.0
154.0
162.0
171.0
175.0
185.0
50.40
53.20
55.80
58.90
61.20
64.60
67.50
71.30
73.80
77.90
81.90
86.50
90.00
95.00
99.00
105.00
108.00
114.00
117.00
124.00
135.00
143.00
144.00
152.00
153.00
162.00
162.00
171.00
180.00
190.00
198.00
209.00
BREAKDOWN
VOLTAGE
V
BR
(Volts) @
I
T
MAX
61.60
58.80
68.20
65.10
74.80
71.40
82.50
78.80
90.20
86.10
100.00
95.50
110.00
105.00
121.00
116.00
132.00
126.00
143.00
137.00
165.00
158.00
176.00
168.00
187.00
179.00
198.00
189.00
220.00
210.00
242.00
231.00
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
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
MAXIMUM
REVERSE
LEAKAGE
I
R
@ V
R
(µA)
MAXIMUM
CLAMPING
VOLTAGE
V
C
@
I
PP
(Volts)
(mA)
80.5
77.0
89.0
85.0
98.0
92.0
108.0
103.0
118.0
113.0
131.0
125.0
144.0
137.0
158.0
152.0
173.0
165.0
187.0
179.0
215.0
207.0
230.0
219.0
244.0
234.0
258.0
246.0
287.0
274.0
344.0
328.0
MAXIMUM MAXIMUM
PEAK PULSE FORWARD
CURRENT
VOLTAGE
I
PP
@ V
C
(V
F
) @
I
T
(A)
(Volts)
7.4
7.8
6.8
7.1
6.1
6.5
5.5
5.8
5.1
5.3
4.5
4.8
4.2
4.4
3.8
4.0
3.5
3.6
3.2
3.3
2.8
2.9
2.6
2.7
2.5
2.6
2.3
2.4
2.1
2.2
1.8
1.8
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
3.5
All products are sold to the commercial specifications shown for any additional reliability testing or extended parameters, please consult the factory.
Recently, I saw netizens on the forum mentioning cmake when playing with Xianji's high-performance MCU. Some netizens gave feedback:
" There are still some aspects of the HPM6750 development environme...
I used VMware and my local machine to set up a dual-machine debugging environment, and I could connect to and disconnect from the target machine. But when I set a breakpoint in the source code, it sai...
The following is an electronic photo album I made myself based on FAT32 and SD card, with keystrokes to operate the addition and subtraction of pictures. . . . . . The project is in the group I create...
Today's computer peripherals are pursuing high speed and high versatility. In order to meet user needs, seven companies led by Intel launched the USB (Universal Serial Bus) bus protocol in 1994, wh...[Details]
Introduction
Power subsystems are becoming more and more integrated into the overall system. Power systems have moved from being separate "essential dangerous devices" to being monitorable...[Details]
The solidification and modularization of intelligent video analysis algorithms are the current trends in the application of intelligent video analysis technology. It perfectly combines intelligent ...[Details]
1. Principle of displacement angle sensor
The angle sensor is used to detect angles. It has a hole in its body that fits the LEGO axle. When connected to the RCX, the angle sensor counts once ...[Details]
AD8205 is
a single-supply high-performance differential
amplifier
launched by
Analog
Devices of the United States
. The typical single-supply voltage is 5V, and its common-mode volta...[Details]
1. Disadvantages of choosing too high a voltage level
Choosing too high a voltage level will result in too high an investment and a long payback period. As the voltage level increases, the...[Details]
In today's body control module (BCM) designs, savvy engineers are moving away from electromechanical relays whenever possible. Their next step is to eliminate fuses. But is eliminating fuses a nece...[Details]
Corelink Semiconductor has launched the CL1100-based 5-7W E27 LED lighting driver system solution DB2. This driver module meets the requirements of small size (L×W×H=5.1cm×2.1cm×1.8cm), low standby...[Details]
Since AC mains power may experience power outages, voltage sags and surges, continuous undervoltage and overvoltage, and frequency fluctuations during supply, these factors will affect the continuous ...[Details]
This article discusses the six design steps of LED lighting system design in detail: (1) determine the lighting requirements; (2) determine the design goals and estimate the optics; (3) the efficie...[Details]
Don’t just look at the power when choosing a power supply
We know that a power supply with a low rated power can hardly meet the power supply needs of the system, which may cause frequent free...[Details]
The automotive power electronics market has grown rapidly as comfort and active safety features become more common. As traditional mechanical functions shift to electronic applications, the demand ...[Details]
There are many types and styles of digital voltmeters in design and development. Traditional digital voltmeters have their own characteristics. They are suitable for manual measurement on site. Tra...[Details]
Applying fieldbus technology on new beer production lines is the first choice for large beer companies with strong management level and technical strength. Guangzhou Zhujiang Beer Group Co., Ltd. i...[Details]
1. Fully understand the design requirements of all parties and determine the appropriate solution.
When starting a hardware development project, the original driving force will come from many a...[Details]