d. Maximum under Steady State conditions is 85 °C/W.
t
≤
10 s
Steady State
Symbol
R
thJA
R
thJF
Typical
38
22
Maximum
50
28
Unit
°C/W
1
www.din-tek.jp
SPECIFICATIONS
T
J
= 25 °C, unless otherwise noted
Parameter
Static
Drain-Source Breakdown Voltage
V
DS
Temperature Coefficient
V
GS(th)
Temperature Coefficient
Gate-Source Threshold Voltage
Gate-Source Leakage
Zero Gate Voltage Drain Current
On-State Drain Current
a
Drain-Source On-State Resistance
a
Forward Transconductance
a
Dynamic
b
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Total Gate Charge
Gate-Source Charge
Gate-Drain Charge
Gate Resistance
Turn-On Delay Time
Rise Time
Turn-Off Delay Time
Fall Time
Turn-On Delay Time
Rise Time
Turn-Off Delay Time
Fall Time
Drain-Source Body Diode Characteristics
Continuous Source-Drain Diode Current
Pulse Diode Forward Current
a
Body Diode Voltage
Body Diode Reverse Recovery Time
Body Diode Reverse Recovery Charge
Reverse Recovery Fall Time
Reverse Recovery Rise Time
I
S
I
SM
V
SD
t
rr
Q
rr
t
a
t
b
I
F
= 9 A, dI/dt = 100 A/µs, T
J
= 25 °C
I
S
= 9 A
0.8
15
6
8
7
T
C
= 25 °C
25
50
1.2
30
12
A
V
ns
nC
ns
C
iss
C
oss
C
rss
Q
g
Q
gs
Q
gd
R
g
t
d(on)
t
r
t
d(off)
t
f
t
d(on)
t
r
t
d(off)
t
f
V
DD
= 15 V, R
L
= 1.4
Ω
I
D
≅
9 A, V
GEN
= 10 V, R
g
= 1
Ω
V
DD
= 15 V, R
L
= 1.4
Ω
I
D
≅
9 A, V
GEN
= 4.5 V, R
g
= 1
Ω
f = 1 MHz
0.36
V
DS
= 15 V, V
GS
= 10 V, I
D
= 11 A
V
DS
= 15 V, V
GS
= 5 V, I
D
= 11 A
V
DS
= 15 V, V
GS
= 0 V, f = 1 MHz
820
195
73
15
6.8
2.5
2.3
1.8
16
12
16
10
8
10
16
8
3.6
24
18
24
20
16
20
24
15
ns
Ω
23
10.2
nC
pF
V
DS
ΔV
DS
/T
J
ΔV
GS(th)
/T
J
V
GS(th)
I
GSS
I
DSS
I
D(on)
R
DS(on)
g
fs
V
GS
= 0 V, I
D
= 250 µA
I
D
= 250 µA
V
DS
= V
GS
, I
D
= 250 µA
V
DS
= 0 V, V
GS
= ± 20 V
V
DS
= 30 V, V
GS
= 0 V
V
DS
= 30 V, V
GS
= 0 V, T
J
= 55 °C
V
DS
≥
5 V, V
GS
= 10 V
V
GS
= 10 V, I
D
= 11 A
V
GS
= 4.5 V, I
D
= 10 A
V
DS
= 15 V, I
D
= 11 A
20
0.005
0.007
52
0.007
0.009
1.2
30
28
-6
2.5
± 100
1
10
V
mV/°C
V
nA
µA
A
Ω
S
Symbol
Test Conditions
Min.
Typ.
Max.
Unit
DTM4420B
Notes:
a. Pulse test; pulse width
≤
300 µs, duty cycle
≤
2 %.
b. Guaranteed by design, not subject to production testing.
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation
of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum
rating conditions for extended periods may affect device reliability.
2
TYPICAL CHARACTERISTICS
25 °C, unless otherwise noted
50
V
GS
= 10 thru 4
V
40
I
D
- Drain Current (A)
I
D
- Drain Current (A)
4
5
www.din-tek.jp
DTM4420B
T
C
= - 55 °C
3
30
20
V
GS
= 3
V
10
2
T
C
= 25 °C
1
T
C
= 125 °C
0
0
2
4
6
8
10
0
0.0
0.5
1.0
1.5
2.0
2.5
3.0
V
DS
- Drain-to-Source
Voltage
(V)
V
GS
- Gate-to-Source
Voltage
(V)
Output Characteristics
0.015
1200
Transfer Characteristics
R
DS(on)
- On-Resistance (Ω)
0.013
V
GS
= 4.5
V
C - Capacitance (pF)
900
C
iss
0.011
V
GS
= 10
V
0.009
600
300
0.007
C
rss
0
6
C
oss
0.005
0
10
20
30
40
50
0
12
18
24
30
I
D
- Drain Current (A)
V
DS
- Drain-to-Source
Voltage
(V)
On-Resistance vs. Drain Current and Gate Voltage
10
I
D
= 11 A
V
GS
- Gate-to-Source
Voltage
(V)
8
R
DS(on)
- On-Resistance
1.5
1.8
I
D
= 11 A
Capacitance
6
V
DS
= 24
V
4
(Normalized)
V
DS
= 15
V
V
GS
= 10
V
1.2
V
GS
= 4.5
V
0.9
2
0
0
4
8
12
16
0.6
- 50
- 25
0
25
50
75
100
125
150
Q
g
- Total Gate Charge (nC)
T
J
- Junction Temperature (°C)
Gate Charge
On-Resistance vs. Junction Temperature
3
TYPICAL CHARACTERISTICS
25 °C, unless otherwise noted
100
0.030
www.din-tek.jp
DTM4420B
T
J
= 150 °C
1
T
J
= 25 °C
R
DS(on)
- On-Resistance (Ω)
10
I
S
- Source Current (A)
0.025
0.020
T
J
= 125 °C
0.015
0.1
0.010
T
J
= 25 °C
0.005
0.01
0.001
0.0
0.000
0.2
0.4
0.6
0.8
1.0
1.2
0
2
4
6
8
10
V
SD
- Source-to-Drain
Voltage
(V)
V
GS
- Gate-to-Source
Voltage
(V)
Source-Drain Diode Forward Voltage
2.2
50
On-Resistance vs. Gate-to-Source Voltage
2.0
40
1.8
Power (W)
V
GS(th)
(V)
I
D
= 250
µA
1.6
30
20
1.4
10
1.2
1.0
- 50
- 25
0
25
50
75
100
125
150
0
10
- 3
10
- 2
10
- 1
1
10
100
600
T
J
- Temperature (°C)
Time (s)
Threshold Voltage
100
Limited
by
R
DS(on)
*
Single Pulse Power, Junction-to-Ambient
100
µA
10
I
D
- Drain Current (A)
1 ms
1
10 ms
100 ms
0.1
T
A
= 25 °C
Single Pulse
BVDSS Limited
0.01
0.1
1
10
100
1s
10 s
DC
V
DS
- Drain-to-Source
Voltage
(V)
*
V
GS
> minimum
V
GS
at
which
R
DS(on)
is specified
Safe Operating Area, Junction-to-Ambient
4
TYPICAL CHARACTERISTICS
25 °C, unless otherwise noted
18
www.din-tek.jp
DTM4420B
15
I
D
- Drain Current (A)
12
9
6
3
0
0
25
50
75
100
125
150
T
C
- Case Temperature (°C)
Current Derating*
6
2.0
5
1.5
4
Power (W)
Power (W)
0
25
50
75
100
125
150
3
1.0
2
0.5
1
0
0.0
0
25
50
75
100
125
150
T
C
- Case Temperature (°C)
T
A
- Ambient Temperature (°C)
Power Derating, Junction-to-Foot
Power Derating, Junction-to-Ambient
* The power dissipation P
D
is based on T
J(max)
= 150 °C, using junction-to-case thermal resistance, and is more useful in settling the upper
dissipation limit for cases where additional heatsinking is used. It is used to determine the current rating, when this rating falls below the package
This circuit is a circuit on a CDMA base station board. The DC/DC outputs VDD_5V0, and then VDD_5V0 is converted into other voltages through other DCDCs. There is such a circuit on this VDD_5V0. I thi...
Tektronix's three-detection "detector" helps you overcome the pitfalls of probesLive broadcast time: 2020-09-02 14:00:00Check out the live highlights in advance!Features of different probe typesUnboxi...
How to use mf522? I am a novice and don't know how to write a program. Now I just connected the MF522-AN module to 51. How to test it, such as turning on the LED light when the clock is in? Please giv...
The problem of dynamic sealing of equipment always exists with the operation of the equipment. Today, we have specially sorted out the various commonly used sealing forms, usage scope and character...[Details]
A line scan lens is an industrial lens used with line scan cameras. Its imaging principle is to capture the image of the workpiece using a linear sensor and then perform digital signal processing t...[Details]
When we travel in cities, we all find that electric vehicles have many advantages. As a means of transportation, they can also fulfill their mission well. Now, more and more residential communities...[Details]
In recent years, the government has increasingly supported electric vehicles, and the number of electric vehicles has increased. Observant drivers will notice that there are many more green license...[Details]
Today's security industry has entered the era of massive networking. Many enterprises, especially financial institutions, have established multi-level video surveillance networking platforms. Lever...[Details]
On August 22, Lantu Motors officially launched its Lanhai Intelligent Hybrid technology via an online livestream. This intelligent hybrid technology, which integrates a full-range 800V high-voltage...[Details]
The automotive industry in 2025 is undergoing a thorough intelligent reshuffle.
Geely wants to make changes in the field of AI cockpits: in the future, there will be no traditional smart...[Details]
UPS stands for Uninterruptible Power Supply, which includes energy storage devices. It is mainly used to provide uninterruptible power supply for devices that require high power stability.
...[Details]
Industrial computers with GPUs leverage powerful parallel processing to build deep learning models to analyze and respond to optical inputs. The systems develop an understanding of visual data to i...[Details]
On August 20, Geely announced its focus on "One Cockpit". Through a unified AI OS architecture, a unified AI Agent, and a unified user ID, it will achieve an All-in-One AI cockpit, create the first...[Details]
Shenzhen Baowei Power Supply high frequency pure sine wave power, communication inverter power supply has two communication interfaces, RS232 and R485 interfaces, their functions and characteristic...[Details]
There are many motors that can use thyristor speed control, and they can be used in almost all industries. Various types of motors, such as fans, pumps, AC motors, DC motors, torque motors, single-...[Details]
There are more and more electric vehicles. Recently, I have heard some news about electric vehicles performing poorly in winter. I would like to briefly introduce whether heat pump technology is mo...[Details]
According to Reuters, citing people familiar with the matter, British semiconductor design company Arm Holdings (NASDAQ:ARM) has hired Rami Sinno, head of Amazon's (NASDAQ:AMZN) artificial intellig...[Details]
The practice of warming up a car originated with gasoline-powered vehicles. Warming up the engine allows it to enter a better working state and ensures good lubrication. This has become a habit for...[Details]