BZX384 series
Voltage regulator diodes
Rev. 4 — 1 January 2023
Product data sheet
1. General description
Low-power voltage regulator diodes in a small SOD323 (SC-76) Surface-Mounted Device (SMD)
plastic package.
The diodes are available in the normalized E24 ±1 % (BZX384-A), ±2 % (BZX384-B) and
approximately ±5 % (BZX384-C) tolerance range. The series includes 37 breakdown voltages with
nominal working voltages from 2.4 V to 75 V.
2. Features and benefits
•
•
•
•
Total power dissipation: ≤300 mW
Three tolerance series: ±1 %, ±2 % and approximately ±5 %
Working voltage range: nominal 2.4 V to 75 V (E24 range)
Non-repetitive peak reverse power dissipation: ≤ 40 W
3. Applications
•
General regulation functions
4. Quick reference data
Table 1. Quick reference data
Symbol Parameter
Conditions
VF
forward voltage
IF = 10 mA
Ptot
total power dissipation
Tamb ≤ 25 °C
[1]
[2]
Min
Typ
Max
Unit
[1] -
-
0.9
V
[2] -
-
300
mW
Pulse test: tp ≤ 100 μs; δ ≤ 0.02.
Device mounted on an FR4 Printed-Circuit Board (PCB), single-sided copper, tin-plated and standard
footprint.
BZX384 series
Nexperia
Voltage regulator diodes
5. Pinning information
Table 2. Pinning
Pin
Symbol
Description
1
K
cathode
2
A
anode
Simplified outline
[1]
1
Graphic symbol
2
A
K
006aaa152
[1]
The marking bar indicates the cathode.
6. Ordering information
Table 3. Ordering information
Type number
BZX384 series[1]
[1]
Package
Name
Description
Version
SC-76
plastic surface-mounted package; 2 leads
SOD323
The series consists of 111 types with 37 breakdown voltages with nominal working voltages from 2.4 V to 75 V and ±1 %, ±2 % and ±5
% tolerances.
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
2 / 14
BZX384 series
Nexperia
Voltage regulator diodes
7. Marking
Table 4. Marking codes
Type number
Marking
code
Type number
Marking
code
Type number
Marking
code
BZX384-A2V4
2B
BZX384-B2V4
K1
BZX384-C2V4
T3
BZX384-A2V7
2U
BZX384-B2V7
K2
BZX384-C2V7
T4
BZX384-A3V0
2V
BZX384-B3V0
K3
BZX384-C3V0
T5
BZX384-A3V3
2W
BZX384-B3V3
K4
BZX384-C3V3
T6
BZX384-A3V6
2X
BZX384-B3V6
K5
BZX384-C3V6
T7
BZX384-A3V9
2Y
BZX384-B3V9
K6
BZX384-C3V9
T8
BZX384-A4V3
2Z
BZX384-B4V3
K7
BZX384-C4V3
T9
BZX384-A4V7
22
BZX384-B4V7
K8
BZX384-C4V7
T0
BZX384-A5V1
23
BZX384-B5V1
K9
BZX384-C5V1
D5
BZX384-A5V6
24
BZX384-B5V6
L1
BZX384-C5V6
D6
BZX384-A6V2
25
BZX384-B6V2
L2
BZX384-C6V2
T1
BZX384-A6V8
26
BZX384-B6V8
L3
BZX384-C6V8
D7
BZX384-A7V5
27
BZX384-B7V5
L4
BZX384-C7V5
D8
BZX384-A8V2
28
BZX384-B8V2
L5
BZX384-C8V2
D9
BZX384-A9V1
29
BZX384-B9V1
L6
BZX384-C9V1
D0
BZX384-A10
3X
BZX384-B10
L7
BZX384-C10
T2
BZX384-A11
32
BZX384-B11
L8
BZX384-C11
DA
BZX384-A12
33
BZX384-B12
L9
BZX384-C12
DB
BZX384-A13
34
BZX384-B13
M1
BZX384-C13
DC
BZX384-A15
35
BZX384-B15
M2
BZX384-C15
DD
BZX384-A16
36
BZX384-B16
M3
BZX384-C16
DE
BZX384-A18
37
BZX384-B18
M4
BZX384-C18
DF
BZX384-A20
38
BZX384-B20
M5
BZX384-C20
DG
BZX384-A22
39
BZX384-B22
M6
BZX384-C22
DH
BZX384-A24
4N
BZX384-B24
M7
BZX384-C24
DJ
BZX384-A27
4P
BZX384-B27
M8
BZX384-C27
DK
BZX384-A30
5F
BZX384-B30
M9
BZX384-C30
DL
BZX384-A33
4R
BZX384-B33
N0
BZX384-C33
DM
BZX384-A36
4S
BZX384-B36
N1
BZX384-C36
DN
BZX384-A39
4T
BZX384-B39
N2
BZX384-C39
DP
BZX384-A43
4U
BZX384-B43
N3
BZX384-C43
DR
BZX384-A47
4V
BZX384-B47
N4
BZX384-C47
DS
BZX384-A51
4W
BZX384-B51
N5
BZX384-C51
DT
BZX384-A56
4X
BZX384-B56
N6
BZX384-C56
DU
BZX384-A62
4Y
BZX384-B62
N7
BZX384-C62
DV
BZX384-A68
4Z
BZX384-B68
N8
BZX384-C68
DW
BZX384-A75
42
BZX384-B75
N9
BZX384-C75
DX
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
3 / 14
BZX384 series
Nexperia
Voltage regulator diodes
8. Limiting values
Table 5. Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol
Parameter
IF
forward current
IZSM
non-repetitive peak
reverse current
[1] -
see
Tables 8 and
9
PZSM
non-repetitive peak
reverse power dissipation
[1] -
40
W
Ptot
total power dissipation
[2] -
300
mW
Tj
junction temperature
-
150
°C
Tamb
ambient temperature
-65
+150
°C
Tstg
storage temperature
-65
+150
°C
[1]
[2]
Conditions
Tamb ≤ 25 °C
Min
Max
Unit
-
250
mA
tp = 100 μs; square wave; Tj = 25 °C prior to surge.
Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint.
9. Thermal characteristics
Table 6. Thermal characteristics
Symbol
Parameter
Conditions
Rth(j-a)
thermal resistance from
junction to ambient
in free air
Rth(j-sp)
thermal resistance from
junction to solder point
[1]
[2]
Min
Typ
Max
Unit
[1] -
-
415
K/W
[2] -
-
110
K/W
Typ
Max
Unit
Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint.
Soldering point of cathode tab.
10. Characteristics
Table 7. Characteristics
Tj = 25 °C unless otherwise specified.
Symbol
Parameter
Conditions
VF
forward voltage
IF = 10 mA
[1] -
-
0.9
V
IF = 100 mA
[1] -
-
1.1
V
[1]
Min
Pulse test: tp ≤ 100 μs; δ ≤ 0.02.
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
4 / 14
BZX384 series
Nexperia
Voltage regulator diodes
Table 8. Characteristics per type; BZX384-A2V4 to BZX384-C24
Tj = 25 °C unless otherwise specified.
Working
voltage
VZ (V)
IZ = 5 mA
Maximum differential
resistance
rdif (Ω)
Reverse
current
IR (μA)
Temperature
coefficient
SZ (mV/K)
IZ = 5 mA
Diode
Non-repetitive
capacitance peak reverse
Cd (pF) [1]
current
IZSM (A) [2]
Min
Max
IZ = 1 mA
IZ = 5 mA
Max
VR (V)
Min
Max
Max
Max
A
2.37
2.43
600
100
50
1
-3.5
0.0
450
6.0
B
2.35
2.45
C
2.20
2.60
A
2.67
2.73
600
100
20
1
-3.5
0.0
450
6.0
B
2.65
2.75
C
2.50
2.90
A
2.97
3.03
600
95
10
1
-3.5
0.0
450
6.0
B
2.94
3.06
C
2.80
3.20
A
3.26
3.34
600
95
5
1
-3.5
0.0
450
6.0
B
3.23
3.37
C
3.10
3.50
A
3.56
3.64
600
90
5
1
-3.5
0.0
450
6.0
B
3.53
3.67
C
3.40
3.80
A
3.86
3.94
600
90
3
1
-3.5
0.0
450
6.0
B
3.82
3.98
C
3.70
4.10
A
4.25
4.35
600
90
3
1
-3.5
0.0
450
6.0
B
4.21
4.39
C
4.00
4.60
A
4.65
4.75
500
80
3
2
-3.5
0.2
300
6.0
B
4.61
4.79
C
4.40
5.00
A
5.04
5.16
480
60
2
2
-2.7
1.2
300
6.0
B
5.00
5.20
C
4.80
5.40
A
5.54
5.66
400
40
1
2
-2.0
2.5
300
6.0
B
5.49
5.71
C
5.20
6.00
A
6.13
6.27
150
10
3
4
0.4
3.7
200
6.0
B
6.08
6.32
C
5.80
6.60
A
6.73
6.87
80
15
2
4
1.2
4.5
200
6.0
B
6.66
6.94
C
6.40
7.20
A
7.42
7.58
80
15
1
5
2.5
5.3
150
4.0
B
7.35
7.65
C
7.00
7.90
BZX384 Sel
-xxx
2V4
2V7
3V0
3V3
3V6
3V9
4V3
4V7
5V1
5V6
6V2
6V8
7V5
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
5 / 14
BZX384 series
Nexperia
Voltage regulator diodes
Working
voltage
VZ (V)
IZ = 5 mA
Maximum differential
resistance
rdif (Ω)
Reverse
current
IR (μA)
Temperature
coefficient
SZ (mV/K)
IZ = 5 mA
Diode
Non-repetitive
capacitance peak reverse
Cd (pF) [1]
current
IZSM (A) [2]
Min
Max
IZ = 1 mA
IZ = 5 mA
Max
VR (V)
Min
Max
Max
Max
A
8.11
8.29
80
15
0.7
5
3.2
6.2
150
4.0
B
8.04
8.36
C
7.70
8.70
A
9.00
9.20
100
15
0.5
6
3.8
7.0
150
3.0
B
8.92
9.28
C
8.50
9.60
A
9.90
10.10 150
20
0.2
7
4.5
8.0
90
3.0
B
9.80
10.20
C
9.40
10.60
A
10.89 11.11 150
20
0.1
8
5.4
9.0
85
2.5
B
10.80 11.20
C
10.40 11.60
A
11.88 12.12 150
25
0.1
8
6.0
10.0
85
2.5
B
11.80 12.20
C
11.40 12.70
A
12.87 13.13 170
30
0.1
8
7.0
11.0
80
2.5
B
12.70 13.30
C
12.40 14.10
A
14.85 15.15 200
30
0.05
10.5
9.2
13.0
75
2.0
B
14.70 15.30
C
13.80 15.60
A
15.84 16.16 200
40
0.05
11.2
10.4
14.0
75
1.5
B
15.70 16.30
C
15.30 17.10
A
17.82 18.18 225
45
0.05
12.6
12.4
16.0
70
1.5
B
17.60 18.40
C
16.80 19.10
A
19.80 20.20 225
55
0.05
14
14.4
18.0
60
1.5
B
19.60 20.40
C
18.80 21.20
A
21.78 22.22 250
55
0.05
15.4
16.4
20.0
60
1.25
B
21.60 22.40
C
20.80 23.30
A
23.76 24.24 250
70
0.05
16.8
18.4
22.0
55
1.25
B
23.50 24.50
C
22.80 25.60
BZX384 Sel
-xxx
8V2
9V1
10
11
12
13
15
16
18
20
22
24
[1]
[2]
f = 1 MHz; VR = 0 V
tp = 100 μs; square wave; Tj = 25 °C
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
©
Nexperia B.V. 2022. All rights reserved
6 / 14
BZX384 series
Nexperia
Voltage regulator diodes
Table 9. Characteristics per type; BZX384-A27 to BZX384-C75
Tj = 25 °C unless otherwise specified.
BZX384 Sel
-xxx
27
30
33
36
39
43
47
51
56
62
68
75
[1]
[2]
Working
voltage
VZ (V)
IZ = 2 mA
Maximum differential
resistance
rdif (Ω)
Reverse
current
IR (μA)
Temperature
coefficient
SZ (mV/K)
IZ = 2 mA
Diode
Non-repetitive
capacitance peak reverse
Cd (pF) [1]
current
IZSM (A) [2]
Min
IZ = 0.5
mA
IZ = 2 mA
Max
VR (V)
Min
Max
Max
Max
80
0.05
18.9
21.4
25.3
50
1.0
80
0.05
21
24.4
29.4
50
1.0
80
0.05
23.1
27.4
33.4
45
0.9
90
0.05
25.2
30.4
37.4
45
0.8
130
0.05
27.3
33.4
41.2
45
0.7
150
0.05
30.1
37.6
46.6
40
0.6
170
0.05
32.9
42.0
51.8
40
0.5
180
0.05
35.7
46.6
57.2
40
0.4
200
0.05
39.2
52.2
63.8
40
0.3
215
0.05
43.4
58.8
71.6
35
0.3
240
0.05
47.6
65.6
79.8
35
0.25
255
0.05
52.5
73.4
88.6
35
0.20
Max
A
26.73 27.27 300
B
26.50 27.50
C
25.10 28.90
A
29.70 30.30 300
B
29.40 30.60
C
28.00 32.00
A
32.67 33.33 325
B
32.30 33.70
C
31.00 35.00
A
35.64 36.36 350
B
35.30 36.70
C
34.00 38.00
A
38.61 39.39 350
B
38.20 39.80
C
37.00 41.00
A
42.57 43.43 375
B
42.10 43.90
C
40.00 46.00
A
46.53 47.47 375
B
46.10 47.90
C
44.00 50.00
A
50.49 51.51 400
B
50.00 52.00
C
48.00 54.00
A
55.44 56.56 425
B
54.90 57.10
C
52.00 60.00
A
61.38 62.62 450
B
60.80 63.20
C
58.00 66.00
A
67.32 68.68 475
B
66.60 69.40
C
64.00 72.00
A
74.25 75.75 500
B
73.50 76.50
C
70.00 79.00
f = 1 MHz; VR = 0 V
tp = 100 μs; square wave; Tj = 25 °C
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
7 / 14
BZX384 series
Nexperia
Voltage regulator diodes
mbg801
103
PZSM
(W)
aaa-028550
103
IF
(mA)
102
102
10
1
(1)
10-1
10
(2)
10-2
1
10- 1
1
tp (ms)
10
(1) Tj = 25 °C (before surge)
(2) Tj = 150 °C (before surge)
Fig. 1.
aaa-028551
Fig. 2.
1
1
10-1
10-1
10-2
10-2
0.8
VF (V)
1.0
10-3
0.4
Tj = 25 °C
Fig. 3.
Product data sheet
1.0
aaa-028552
0.6
0.8
VF (V)
1.0
Tj = 25 °C
Forward current as a function of forward
voltage; typical values (BZX384-A/B/C6V8)
BZX384_SER
VF (V)
103
IF
(mA)
102
10
0.6
0.8
Forward current as a function of forward
voltage; typical values (BZX384-A/B/C2V4)
10
10-3
0.4
0.6
Tj = 25 °C
Non-repetitive peak reverse power dissipation
as a function of pulse duration; maximum
values
103
IF
(mA)
102
10-3
0.4
Fig. 4.
Forward current as a function of forward
voltage; typical values (BZX384-A/B/C7V5)
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BZX384 series
Nexperia
Voltage regulator diodes
aaa-028553
103
IF
(mA)
102
mld444
0.5
SZ
(mV/K)
4V7
0
4V3
10
- 0.5
2V4
1
2V7
3V9
-1
10-1
10-3
0.4
0.6
0.8
VF (V)
3V3
3V0
-2
10- 1
1.0
Tj = 25 °C
Fig. 5.
3V6
- 1.5
10-2
1
10
IZ (mA)
102
Tj = 25 °C to 150 °C
Forward current as a function of forward
voltage; typical values (BZX384-A/B/C75)
Fig. 6.
mld445
12
IR
(A)
15
SZ
(mV/K)
13
12
11
10
9V1
8V2
7V5
6V8
6V2
5V6
5V1
8
4
0
Temperature coefficient as a function
of working current; typical values
(BZX384-A/B/C2V4 to BZX384-A/B/C4V7)
aaa-006665
10-1
2V4
10-2
2V7
10-3
3V0
3V3
3V6 3V9
4V3 4V7 5V1
10-4
10-5
5V6
10-6
6V2
6V8
10-7
10-8
-4
10- 1
1
10
IZ (mA)
102
10-9
Tj = 25 °C to 150 °C
Fig. 7.
Product data sheet
2
4
6
VR (V)
8
Tj = 25 °C
Temperature coefficient as a function
of working current; typical values
(BZX384-A/B/C5V1 to BZX384-A/B/C15)
BZX384_SER
0
Fig. 8.
Reverse current as a function of
reverse voltage; typical values
(BZX384-A/B/C2V4 to BZX384-A/B/C6V8)
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
9 / 14
BZX384 series
Nexperia
Voltage regulator diodes
IR
(A)
aaa-006666
10-1
IR
(A)
7V5
10-2
10 12
15
18
22
8V2
10-3
aaa-006667
10-1
30 36
10-2
27
33
43
39
51
47
62
75
56
68
10-3
9V1
11 13
16
20
24
10-4
10-4
10-5
10-5
10-6
10-6
10-7
10-7
10-8
10-8
0
5
10
15
20
VR (V)
10-9
25
Tj = 25 °C
Fig. 9.
20
40
60
VR (V)
80
Tj = 25 °C
Reverse current as a function of
reverse voltage; typical values
(BZX384-A/B/C7V5 to BZX384-A/B/C24)
Fig. 10. Reverse current as a function of
reverse voltage; typical values
(BZX384-A/B/C27 to BZX384-A/B/C75)
11. Package outline
1.35
1.15
1.1
0.8
0.45
0.15
1
2.7
2.3
1.8
1.6
2
0.40
0.25
Dimensions in mm
0.25
0.10
03-12-17
Fig. 11. Package outline SOD323
BZX384_SER
Product data sheet
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Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
10 / 14
BZX384 series
Nexperia
Voltage regulator diodes
12. Soldering
3.05
2.1
solder lands
solder resist
1.65 0.95
0.5 (2×)
0.6 (2×)
solder paste
occupied area
2.2
Dimensions in mm
0.5
(2×)
0.6
(2×)
sod323_fr
Fig. 12. Reflow soldering footprint for SOD323 (SC-76)
5
2.9
1.5 (2×)
solder lands
solder resist
occupied area
2.75
1.2
(2×)
Dimensions in mm
preferred transport
direction during soldering
sod323_fw
Fig. 13. Wave soldering footprint for SOD323 (SC-76)
BZX384_SER
Product data sheet
All information provided in this document is subject to legal disclaimers.
Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
11 / 14
BZX384 series
Nexperia
Voltage regulator diodes
13. Revision history
Table 10. Revision history
Document ID
Release date
Data sheet status
Change notice
Supersedes
BZX384_SER v.4
20230101
Product data sheet
-
BZX384_SER v.3
Modifications:
•
•
•
BZX384-A selections added
Products changed to non-automotive qualification. Please refer to nexperia.com for
automotive (-Q) product alternatives.
Limiting values: Temperature specification adjusted
BZX384_SER v.3
20161011
Product data sheet
-
BZX384_SER v.2
BZX384_SER v.2
20040322
Product data sheet
-
BZX384_SER v.1
BZX384_SER v.1
20030401
Product data sheet
-
-
BZX384_SER
Product data sheet
All information provided in this document is subject to legal disclaimers.
Rev. 4 — 1 January 2023
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12 / 14
BZX384 series
Nexperia
Voltage regulator diodes
14. Legal information
injury, death or severe property or environmental damage. Nexperia and its
suppliers accept no liability for inclusion and/or use of Nexperia products in
such equipment or applications and therefore such inclusion and/or use is at
the customer’s own risk.
Data sheet status
Quick reference data — The Quick reference data is an extract of the
product data given in the Limiting values and Characteristics sections of this
document, and as such is not complete, exhaustive or legally binding.
Document status
[1][2]
Product
status [3]
Definition
Objective [short]
data sheet
Development
This document contains data from
the objective specification for
product development.
Preliminary [short]
data sheet
Qualification
This document contains data from
the preliminary specification.
Product [short]
data sheet
Production
This document contains the product
specification.
[1]
[2]
[3]
Please consult the most recently issued document before initiating or
completing a design.
The term 'short data sheet' is explained in section "Definitions".
The product status of device(s) described in this document may have
changed since this document was published and may differ in case of
multiple devices. The latest product status information is available on
the internet at https://www.nexperia.com.
Definitions
Draft — The document is a draft version only. The content is still under
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modifications or additions. Nexperia does not give any representations or
warranties as to the accuracy or completeness of information included herein
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full data sheet, which is available on request via the local Nexperia sales
office. In case of any inconsistency or conflict with the short data sheet, the
full data sheet shall prevail.
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data sheet shall define the specification of the product as agreed between
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beyond those described in the Product data sheet.
Disclaimers
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Notwithstanding any damages that customer might incur for any reason
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Terms and conditions of commercial sale of Nexperia.
Right to make changes — Nexperia reserves the right to make changes
to information published in this document, including without limitation
specifications and product descriptions, at any time and without notice. This
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Suitability for use — Nexperia products are not designed, authorized or
warranted to be suitable for use in life support, life-critical or safety-critical
systems or equipment, nor in applications where failure or malfunction
of an Nexperia product can reasonably be expected to result in personal
BZX384_SER
Product data sheet
Applications — Applications that are described herein for any of these
products are for illustrative purposes only. Nexperia makes no representation
or warranty that such applications will be suitable for the specified use
without further testing or modification.
Customers are responsible for the design and operation of their applications
and products using Nexperia products, and Nexperia accepts no liability for
any assistance with applications or customer product design. It is customer’s
sole responsibility to determine whether the Nexperia product is suitable
and fit for the customer’s applications and products planned, as well as
for the planned application and use of customer’s third party customer(s).
Customers should provide appropriate design and operating safeguards to
minimize the risks associated with their applications and products.
Nexperia does not accept any liability related to any default, damage, costs
or problem which is based on any weakness or default in the customer’s
applications or products, or the application or use by customer’s third party
customer(s). Customer is responsible for doing all necessary testing for the
customer’s applications and products using Nexperia products in order to
avoid a default of the applications and the products or of the application or
use by customer’s third party customer(s). Nexperia does not accept any
liability in this respect.
Limiting values — Stress above one or more limiting values (as defined in
the Absolute Maximum Ratings System of IEC 60134) will cause permanent
damage to the device. Limiting values are stress ratings only and (proper)
operation of the device at these or any other conditions above those
given in the Recommended operating conditions section (if present) or the
Characteristics sections of this document is not warranted. Constant or
repeated exposure to limiting values will permanently and irreversibly affect
the quality and reliability of the device.
Terms and conditions of commercial sale — Nexperia products are
sold subject to the general terms and conditions of commercial sale, as
published at http://www.nexperia.com/profile/terms, unless otherwise agreed
in a valid written individual agreement. In case an individual agreement is
concluded only the terms and conditions of the respective agreement shall
apply. Nexperia hereby expressly objects to applying the customer’s general
terms and conditions with regard to the purchase of Nexperia products by
customer.
No offer to sell or license — Nothing in this document may be interpreted
or construed as an offer to sell products that is open for acceptance or the
grant, conveyance or implication of any license under any copyrights, patents
or other industrial or intellectual property rights.
Export control — This document as well as the item(s) described herein
may be subject to export control regulations. Export might require a prior
authorization from competent authorities.
Non-automotive qualified products — Unless this data sheet expressly
states that this specific Nexperia product is automotive qualified, the
product is not suitable for automotive use. It is neither qualified nor tested in
accordance with automotive testing or application requirements. Nexperia
accepts no liability for inclusion and/or use of non-automotive qualified
products in automotive equipment or applications.
In the event that customer uses the product for design-in and use in
automotive applications to automotive specifications and standards,
customer (a) shall use the product without Nexperia’s warranty of the
product for such automotive applications, use and specifications, and (b)
whenever customer uses the product for automotive applications beyond
Nexperia’s specifications such use shall be solely at customer’s own risk,
and (c) customer fully indemnifies Nexperia for any liability, damages or failed
product claims resulting from customer design and use of the product for
automotive applications beyond Nexperia’s standard warranty and Nexperia’s
product specifications.
Translations — A non-English (translated) version of a document is for
reference only. The English version shall prevail in case of any discrepancy
between the translated and English versions.
Trademarks
Notice: All referenced brands, product names, service names and
trademarks are the property of their respective owners.
All information provided in this document is subject to legal disclaimers.
Rev. 4 — 1 January 2023
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Nexperia B.V. 2022. All rights reserved
13 / 14
BZX384 series
Nexperia
Voltage regulator diodes
Contents
1. General description...................................................... 1
2. Features and benefits.................................................. 1
3. Applications.................................................................. 1
4. Quick reference data....................................................1
5. Pinning information......................................................2
6. Ordering information....................................................2
7. Marking.......................................................................... 3
8. Limiting values............................................................. 4
9. Thermal characteristics............................................... 4
10. Characteristics............................................................ 4
11. Package outline........................................................ 10
12. Soldering................................................................... 11
13. Revision history........................................................12
14. Legal information......................................................13
©
Nexperia B.V. 2022. All rights reserved
For more information, please visit: http://www.nexperia.com
For sales office addresses, please send an email to: salesaddresses@nexperia.com
Date of release: 1 January 2023
BZX384_SER
Product data sheet
All information provided in this document is subject to legal disclaimers.
Rev. 4 — 1 January 2023
©
Nexperia B.V. 2022. All rights reserved
14 / 14