Lead Free Finish/RoHS Compliant ("P" Suffix designates
RoHS Compliant. See ordering information)
Weight: 0.008 grams (approx.)
F
E
A
D
SOT-23
C
B
Maximum Ratings @ 25
o
C Unless Otherwise Specified
Maximum Forward
V
F
Voltage@IF=10mA
Power Dissipation
P
(AV)
(NoteA)
Operation And
T
J
, T
STG
Storage
Temperature
Peak Forward Surge I
FSM
Current(NoteB)
Thermal Resistance
(Note C)
Rthja
0.9
350
-55 C to
+150
o
C
2.0
357
o
V
mWatt
G
K
H
J
L
DIMENSIONS
o
A
C/W
DIM
A
B
C
D
E
F
G
H
J
K
L
INCHES
MIN
.110
.083
.047
.035
.070
.018
.0005
.035
.003
.015
.007
MAX
.120
.098
.055
.041
.081
.024
.0039
.044
.007
.020
.020
MM
MIN
2.80
2.10
1.20
.89
1.78
.45
.013
.89
.085
.37
.20
MAX
3.04
2.64
1.40
1.03
2.05
.60
.100
1.12
.180
.51
.50
NOTE
NOTES:
A. Mounted on 5.0mm2(.013mm thick) land areas.
B. Measured on 8.3ms, single half sine-wave or
equivalent square wave, duty cycle = 4 pulses per
minute maximum.
C. Valid provided the terminals are kept at ambient
temperature
*Pin Configuration - Top View
Suggested Solder
Pad Layout
.031
.800
.035
.900
.079
2.000
inches
mm
.037
.950
.037
.950
Revision: 13
www.mccsemi.com
1 of
6
2009/04/09
MCC
BZX84C2V4 thru BZX84C51
ELECTRICAL CHARACTERISTICS (Ta=25 C unless otherwise noted)
o
TM
Micro Commercial Components
Nominal Zener Voltage
Part Number
Marking
Nom.
2.4
2.7
3
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
Vz(V) @ I
ZT
Min.
2.28
2.5
2.8
3.1
3.4
3.7
4
4.4
4.8
5.2
5.8
6.4
7
7.7
8.5
9.4
10.4
11.4
12.4
13.8
15.3
16.8
18.8
20.8
22.8
25.1
28
31
34
37
40.85
44.65
48.45
Max.
2.52
2.9
3.2
3.5
3.8
4.1
4.6
5
5.4
6
6.6
7.2
7.9
8.7
9.6
10.6
11.6
12.7
14.1
15.6
17.1
19.1
21.2
23.3
25.6
28.9
32
35
38
41
45.15
49.35
53.55
Max. Zener Impedance
Z
ZT
@ I
ZT
Ohm
mA
100
5
100
5
95
5
95
5
90
5
90
5
90
5
80
5
60
5
40
5
10
5
15
5
15
5
15
5
15
5
20
5
20
5
25
5
30
5
30
5
40
5
45
5
55
5
55
5
70
5
80
2
80
2
80
2
90
2
130
2
150
5
170
5
100
5
Z
ZK
@ I
ZK
Ohm
mA
600
1
600
1
600
1
600
1
600
1
600
1
600
1
500
1
480
1
400
1
150
1
80
1
80
1
80
1
100
1
150
1
150
1
150
1
170
1
200
1
200
1
225
1
225
1
250
1
250
1
300
1
300
1
325
1
350
1
350
1
375
1
375
1
400
1
O
BZX84C2V4
BZX84C2V7
BZX84C3V0
BZX84C3V3
BZX84C3V6
BZX84C3V9
BZX84C4V3
BZX84C4V7
BZX84C5V1
BZX84C5V6
BZX84C6V2
BZX84C6V8
BZX84C7V5
BZX84C8V2
BZX84C9V1
BZX84C10
BZX84C11
BZX84C12
BZX84C13
BZX84C15
BZX84C16
BZX84C18
BZX84C20
BZX84C22
BZX84C24
BZX84C27
BZX84C30
BZX84C33
BZX84C36
BZX84C39
BZX84C43
BZX84C47
BZX84C51
W1/Z11
W2/Z12
W3/Z13
W4/Z14
W5/Z15
W6/Z16
W7/Z17
W8/Z1
W9/Z2
WA/Z3
WB/Z4
WC/Z5
WD/Z6
WE/Z7
WF/Z8
WG/Z9
WH/Y1
WI/Y2
WK/Y3
WL/Y4
WM /Y5
WN/Y6
WO/Y7
WP/Y8
WR/Y9
WS/Y10
WT /Y11
WU/Y12
WW/Y13
WX/Y14
WY
WZ
XA
Max.Reverse
Leakage
Current
IR @ VR
µA
V
50
1.0
20
1.0
10
1.0
5
1.0
5
1.0
3
1.0
3
1.0
3
2.0
2
2.0
1
2.0
3
4.0
2
4.0
1
5.0
0.7
5.0
0.5
6.0
0.2
7.0
0.1
8.0
0.1
8.0
0.1
8.0
0.1
10.5
0.1
11.2
0.1
12.6
0.1
14.0
0.1
15.4
0.1
16.8
0.1
18.9
0.1
21.0
0.1
23.1
0.1
25.2
0.1
27.3
0.1
30.10
0.1
32.90
0.1
35.70
NOTE:
1.Standard zener voltage tolerance is +/- 5% with a 'C' suffix from BZX84C2V4~BZX84C51 , suffix 'B' is +/- 2% tolerance from BZX84B4V3~BZX84B51.
2.Zener Voltage (Vz) Measurement. Guarantees the zener voltage when measured at 90 seconds while maintaining the lead temperature (TL) AT 30 C,from the diode body.
3.Zener Impedance (Zz) Derivation. The zener impedance os dervied from the 60 cycle ac voltage, which results when an AC current having an rms value equal to 10% of the
dc zener current (Izt or Izk) is superimposed on Izt or Izk.
4.Surge Current (IR) Non-Repetitive. The rating listed in the electrical characteristics table is maximum peak, non-repetitive, reverse surge current of 1/2 square wave or equivalent
sine wave pulse of 1/120 second duration superimposed on the test current, Izt, per JEDEC registration; however, actual device capability is as described in Figure 5.
Revision: 13
www.mccsemi.com
2 of
6
2009/04/09
MCC
BZX84B4V3 thru BZX84B51
ELECTRICAL CHARACTERISTICS (Ta=25 C unless otherwise noted)
Nominal Zener Voltage
Max. Zener Impedance
Max.Reverse
Leakage
Current
IR @ VR
µA
V
3.0
1.0
3.0
2.0
2.0
2.0
1.0
2.0
3.0
4.0
2.0
4.0
1.0
5.0
0.7
5.0
0.5
6.0
0.2
7.0
0.1
8.0
0.1
8.0
0.1
8.0
0.1
10.5
0.1
11.2
0.1
12.6
0.1
14.0
0.1
15.4
0.1
16.8
0.1
18.9
0.1
21.0
0.1
23.1
0.1
25.2
0.1
27.3
0.1
30.1
0.1
32.9
0.1
38.0
o
TM
Micro Commercial Components
Part Number
Marking
Vz(V) @ I
ZT
Z
ZT
@ I
ZT
Z
ZK
@ I
ZK
BZX84B4V3
BZX84B4V7
BZX84B5V1
BZX84B5V6
BZX84B6V2
BZX84B6V8
BZX84B7V5
BZX84B8V2
BZX84B9V1
BZX84B10
BZX84B11
BZX84B12
BZX84B13
BZX84B15
BZX84B16
BZX84B18
BZX84B20
BZX84B22
BZX84B24
BZX84B27
BZX84B30
BZX84B33
BZX84B36
BZX84B39
BZX84B43
BZX84B47
BZX84B51
W7
W8/Z1
W9/Z2
WA/Z3
WB/Z4
WC/Z5
WD/Z6
WE/Z7
WF/Z8
WG/Z9
WH/Y1
WI/Y2
WK/Y3
WL/Y4
WM /Y5
WN/Y6
WO/Y7
WP/Y8
WR/Y9
WS/Y10
WT /Y11
WU/Y12
WW/Y13
WX/Y14
WY
WZ
XA
Nom.
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
Min.
4.21
4.61
5.00
5.49
6.08
6.66
7.35
8.04
8.92
9.80
10.78
11.76
12.74
14.70
15.68
17.64
19.60
21.56
23.52
26.46
29.40
32.34
35.28
38.22
42.14
46.06
49.98
Max.
4.39
4.79
5.20
5.71
6.32
6.94
7.65
8.36
9.28
10.20
11.22
12.24
13.26
15.30
16.32
18.36
20.40
22.44
24.48
27.54
30.60
33.66
36.72
39.78
43.86
47.94
52.02
Ohm
90
80
60
40
10
15
15
15
15
20
20
25
30
30
40
45
55
55
70
80
80
80
90
130
150
170
100
mA
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
Ohm
600
500
480
400
150
80
80
80
100
150
150
150
170
200
200
225
225
250
250
300
300
325
350
350
375
375
750
mA
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
NOTE:
1.Standard zener voltage tolerance is +/- 5% with a 'C' suffix from BZX84C2V4~BZX84C51 , suffix 'B' is +/- 2% tolerance from BZX84B4V3~BZX84B51.
2.Zener Voltage (Vz) Measurement. Guarantees the zener voltage when measured at 90 seconds while maintaining the lead temperature (TL) AT 30 C,from the diode body.
3.Zener Impedance (Zz) Derivation. The zener impedance os dervied from the 60 cycle ac voltage, which results when an AC current having an rms value equal to 10% of the
dc zener current (Izt or Izk) is superimposed on Izt or Izk.
4.Surge Current (IR) Non-Repetitive. The rating listed in the electrical characteristics table is maximum peak, non-repetitive, reverse surge current of 1/2 square wave or equivalent
sine wave pulse of 1/120 second duration superimposed on the test current, Izt, per JEDEC registration; however, actual device capability is as described in Figure 5.
A few days ago, a student asked me about ARM interrupt nesting. I found that what I took for granted in my mind was not easy for students to understand. ARM has seven modes. Here we only discuss SVC, ...
The LCD of my development board is 800*480. There is no problem with the nk.bin file provided by the development board. However, when I customize it myself using the BSP package provided by the develo...
I want to transplant the linux 2.6.28 system on the hard disk to a USB flash drive. A vmlinux and initrd.img run well on the hard disk. ,0)/grub/splash.xpm.gz hiddenmenu title USB(2.6.28) root (hd0,0)...
I am using msp430g2553 to display Chinese characters on the LCD. However, when I debug in single step mode, it sometimes displays abnormal Chinese characters or letters, and when I run at full speed, ...
I made a USB board, the built-in USB of STM32F103C8T6. The interrupt transmission can be enumerated successfully, and the data can be sent out. The current maximum number of data transmissions is 64, ...
The core of a machine vision system is image acquisition and processing. All information comes from images, and image quality is crucial to the entire vision system. A good image can improve the st...[Details]
Is electromagnetic radiation from electric vehicles harmful to the human body? Recently, the issue of electromagnetic radiation from electric vehicles has garnered widespread attention. However, pu...[Details]
"Have you set your calendar reminder?"
On August 24, Nvidia Robotics' official account posted a photo of a black gift box on a social media platform, with an attached greeting card sig...[Details]
On August 22nd, Lantu Motors unveiled a new technology called "Lanhai Intelligent Hybrid" during a live broadcast of CCTV News' "Top Laboratory." The name sounds like another new term, but a closer...[Details]
With the rapid adoption of smart electric vehicles, automotive chips are evolving from auxiliary control units to the foundation of the entire vehicle's intelligence. Their applications extend from...[Details]
introduction
Sonar imaging is of great significance in marine resource development and defense. Its long range, intuitive display of the observed area, and target identification make it widely...[Details]
Electric vehicles are powered by electricity, and charging is a device that supplements the vehicle's energy source. It is common to need to recharge the vehicle when driving. But can you charge th...[Details]
SMT placement machines are important equipment in surface mount technology (Surface Mount Technology). Their performance has a decisive impact on the quality and efficiency of electronic manufactur...[Details]
Learned the following information.
Customer product: industrial computer motherboard
Glue application area: CPU/BGA filling
Glue color requirements: black or t...[Details]
Reflow soldering, as an electronics assembly process, has become a vital component of the electronics manufacturing industry. Choosing reflow soldering equipment is crucial for improving production...[Details]
On August 22, the Wall Street Journal reported on the 21st local time that the new US government does not plan to acquire equity in semiconductor wafer foundry giant TSMC and Micron, one of the thr...[Details]
With the gradual popularization of new energy vehicles in recent years, more and more people have been able to access and purchase electric vehicles. The structure of electric vehicles is composed ...[Details]
With the prevalence of online conferencing, live streaming, and voice communication in gaming, high-quality audio input devices are becoming increasingly important. To this end, XMOS, an expert in ...[Details]
The screen is the first thing you notice when evaluating a phone's quality. Its quality directly impacts both visual and operational performance. However, understanding mobile phone screens r...[Details]
Since the beginning of the 21st century, with the rapid development of my country's urban and rural economies and the improvement of people's living standards, more and more people have begun to ow...[Details]