nud3124d ON Semiconductor, nud3124d Datasheet - Page 2

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nud3124d

Manufacturer Part Number
nud3124d
Description
Automotive Inductive Load Driver
Manufacturer
ON Semiconductor
Datasheet

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0
1. Nonrepetitive current square pulse 1.0 ms duration.
2. For different square pulse durations, see Figure 9.
3. Nonrepetitive load dump suppressed pulse per Figure 3.
4. For relay’s coils/inductive loads higher than 80 W, see Figure 4.
MAXIMUM RATINGS
THERMAL CHARACTERISTICS
Dual-V olt
Rev-Bat
Symbol
Symbol
V
V
T
E
E
E
ESD
R
P
E
P
DSS
GSS
T
T
STG
I
LD1
LD2
LD3
qJA
PK
D
A
Z
J
D
Drain-to-Source Voltage – Continuous
Gate-to-Source Voltage – Continuous
Drain Current – Continuous
Single Pulse Drain-to-Source Avalanche Energy
Peak Power Dissipation, Drain-to-Source (Notes 1 and 2)
Load Dump Suppressed Pulse, Drain-to-Source (Notes 4 and 3)
Inductive Switching Transient 1, Drain-to-Source
Inductive Switching Transient 2, Drain-to-Source
Reverse Battery, 10 Minutes (Drain-to-Source)
Dual Voltage Jump Start, 10 Minutes (Drain-to-Source)
Human Body Model (HBM)
Operating Ambient Temperature
Maximum Junction Temperature
Storage Temperature Range
Total Power Dissipation
Derating above 25 C
Thermal Resistance Junction–to–Ambient
(T
(T
(T
(For Relay’s Coils/Inductive Loads of 80 W or Higher)
(T
(T
(Suppressed Waveform: V
(For Relay’s Coils/Inductive Loads of 80 W or Higher)
(T
(Waveform: R
(For Relay’s Coils/Inductive Loads of 80 W or Higher)
(T
(Waveform: R
(For Relay’s Coils/Inductive Loads of 80 W or Higher)
(T
(For Relay’s Coils/Inductive Loads of 80 W or more)
(T
(T
According to EIA/JESD22/A114 Specification
A
A
A
A
A
A
A
A
A
A
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
= -40 C to 85 C)
(T
A
= 25 C, unless otherwise specified, each device)
SOURCE
SOURCE
= 10 W, T = 2.0 ms)
= 4.0 W, T = 50 ms)
s
= 45 V, R
SOURCE
http://onsemi.com
Rating
Rating
NUD3124D
= 0.5 W, T = 200 ms)
2
-65 to 150
-40 to 85
Value
Value
2,000
150
250
100
300
-14
150
380
329
1.5
26
12
20
80
26
mW/ C
Unit
Unit
mW
mA
C/W
mJ
W
V
V
V
V
V
V
V
V
C
C
C

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