VN2222 VN2224 N-Channel Enhancement-Mode Vertical DMOS FETs
Ordering Information
BVDSS / BVDGS 220V 240V RDS(ON) (max) 1.25Ω 1.25Ω ID(ON) (min) 5.0A 5.0A Order Number / Package TO-92 — VN2224N3 20-Pin C-Dip VN2222NC —
High Reliability Devices
See pages 5-4 and 5-5 for MILITARY STANDARD Process Flows and Ordering Information.
Advanced DMOS Technology
These enhancement-mode (normally-off) transistors utilize a vertical DMOS structure and Supertex’s well-proven silicon-gate manufacturing process. This combination produces devices with the power handling capabilities of bipolar transistors and with the high input impedance and positive temperature coefficient inherent in MOS devices. Characteristic of all MOS structures, these devices are free from thermal runaway and thermally-induced secondary breakdown. Supertex’s vertical DMOS FETs are ideally suited to a wide range of switching and amplifying applications where high breakdown voltage, high input impedance, low input capacitance, and fast switching speeds are desired.
Features
❏ Free from secondary breakdown ❏ Low power drive requirement ❏ Ease of paralleling ❏ Low CISS and fast switching speeds ❏ Excellent thermal stability ❏ Integral Source-Drain diode ❏ High input impedance and high gain
Applications
❏ Motor controls ❏ Converters ❏ Amplifiers ❏ Switches ❏ Power supply circuits ❏ Drivers (relays, hammers, solenoids, lamps, memories, displays, bipolar transistors, etc.)
Package Options
S S S G1 G2 G3 G4 S
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2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11
S S NC D1 D2 D3 D4 NC S S
Absolute Maximum Ratings
Drain-to-Source Voltage Drain-to-Gate Voltage Gate-to-Source Voltage Operating and Storage Temperature Soldering Temperature*
* Distance of 1.6 mm from case for 10 seconds. 11/12/01
S BVDSS BVDGS ± 20V
SGD
S
TO-92
-55°C to +150°C 300°C
top view 20-pin Ceramic DIP
Note: See Package Outline section for dimensions.
Supertex Inc. does not recommend the use of its products in life support applications and will not knowingly sell its products for use in such applications unless it receives an adequate "products liability indemnification insurance agreement." Supertex does not assume responsibility for use of devices described and limits its liability to the replacement of devices determined to be defective due to workmanship. No responsibility is assumed for possible omissions or inaccuracies. Circuitry and specifications are subject to change without notice. For the latest product specifications, refer to the Supertex website: http://www.supertex.com. For complete liability information on all Supertex products, refer to the most current databook or to the Legal/Disclaimer page on the Supertex website.
1
VN2222/VN2224
Thermal Characteristics
Package TO-92 ID (continuous)* 540mA ID (pulsed) 5.0A Power Dissipation @ TC = 25°C 1.0W
θjc
θja
IDR* 540mA
IDRM 5.0A
°C/W
125
°C/W
170
* ID (continuous) is limited by max rated Tj.
Electrical Characteristics (@ 25°C unless otherwise specified)
Symbol BVDSS Parameter Drain-to-Source Breakdown Voltage Gate Threshold Voltage Change in VGS(th) with Temperature Gate Body Leakage Zero Gate Voltage Drain Current VN2224 VN2222 Min 240 220 1.0 -4 1 3.0 -5 100 50 5 ID(ON) RDS(ON) ∆RDS(ON) GFS CISS COSS CRSS td(ON) tr td(OFF) tf VSD trr
Notes: 1. All D.C. parameters 100% tested at 25°C unless otherwise stated. (Pulse test: 300µs pulse, 2% duty cycle.) 2. All A.C. parameters sample tested.
Typ
Max
Unit V V mV/°C nA µA mA A
Conditions VGS = 0V, ID = 5mA VGS = VDS, ID = 5mA VGS = VDS, ID = 5mA VGS = ±20V, VDS = 0V VGS = 0V, VDS = Max Rating VGS = 0V, VDS = 0.8 Max Rating TA = 125°C VGS = 5V, VDS = 25V VGS = 10V, VDS = 25V VGS = 5V, ID = 2A VGS = 10V, ID = 2A VGS = 10V, ID = 2A VDS = 25V, ID = 2A VGS = 0V, VDS = 25V f = 1 MHz
VGS(th) ∆V GS(th) IGSS IDSS
ON-State Drain Current
2 5 10 1.0 0.9 1.0 1.0 2.2 300 85 20 6 16 65 30 0.8 500 350 150 35 15 25 90 60 1.0 1.5 1.25 1.4
Static Drain-to-Source ON-State Resistance Change in RDS(ON) with Temperature Forward Transconductance Input Capacitance Common Source Output Capacitance Reverse Transfer Capacitance Turn-ON Delay Time Rise Time Turn-OFF Delay Time Fall Time Diode Forward Voltage Drop Reverse Recovery Time
Ω %/°C
pF
ns
V ns
Switching Waveforms and Test Circuit
10V
90% INPUT
0V
PULSE GENERATOR
Rgen
10%
t(ON)
t(OFF) tr td(OFF) tF
td(ON)
VDD
10%
10%
INPUT
OUTPUT
0V
90%
90%
2
Ω
VDD = 25V ID = 2A RGEN = 10Ω VGS = 0V, ISD = 100mA VGS = 0V, ISD = 1A
VDD
RL OUTPUT
D.U.T.
VN2222/VN2224
Typical Performance Curves
Output Characteristics
10 10
Saturation Characteristics
VGS = 10V
8
8V 6V
8
VGS = 10V
8V
ID (amperes)
ID (amperes)
6
6
6V
4V
4
4
4V
2
2
3V
0 0 10 20 30 40 50 0 0 2 4 6 8
3V
10
VDS (volts) Transconductance vs. Drain Current
5 10
VDS (volts) Power Dissipation vs. Case Temperature
VDS = 25V
4
GFS (siemens)
PD (watts)
TA = 25°C TA = 125°C
3
TA = -55°C
5
2
1 TO-92 0 0 5 10 0 25 50 75 100 125 150
0
ID (amperes) Maximum Rated Safe Operating Area
10 1.0
TC (°C) Thermal Response Characteristics
Thermal Resistance (normalized)
1
0.8
ID (amperes)
0.6
0.1 TO-92 (DC) 0.01
0.4
0.2
TO-92 TC = 2 5 °C PD = 1 W
0.001 1
TC = 25°C 10 100 1000 0 0.001 0.01 0.1
1
10
VDS (volts)
tp (seconds)
3
VN2222/VN2224
Typical Performance Curves
BVDSS Variation with Temperature
5 1.1 4
On-Resistance vs. Drain Current
V GS = 5V
BVDSS (normalized)
RDS(ON) (ohms)
3
1.0
2
1 0.9 0 -50 0 50 100 150 0 2 4 6
VGS = 10V
8
10
Tj (°C) Transfer Characteristics
10 1.4
ID (amperes) V(th) and RDS Variation with Temperature
2.4
VDS = 25V
1.2
Vth @ 5mA
ID (amperes)
25°C
125°C
VGS(th) (normalized)
1.0
1.6
5
0.8
1.2
0.6
0.8
0 0 2 4 6 8 10
0.4 -50 0 50 100 150
0.4
VGS (volts) Capacitance vs. Drain-to-Source Voltage
400 10
Tj (°C) Gate Drive Dynamic Characteristics
f = 1MHz
300
CISS
8
VDS = 10V
C (picofarads)
VGS (volts)
6
VDS = 40V
733 pF
200
4
100
COSS
CRSS
2
300 pF
0
0 0 10 20 30 40
0
2
4
6
8
10
VDS (volts)
QG (nanocoulombs)
11/12/01
©2001 Supertex Inc. All rights reserved. Unauthorized use or reproduction prohibited.
4
1235 Bordeaux Drive, Sunnyvale, CA 94089 TEL: (408) 744-0100 • FAX: (408) 222-4895 www.supertex.com
RDS(ON) (normalized)
TA = -55°C
RDS @ 10V, 2A
2.0
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