VNP14NV04-E STMicroelectronics, VNP14NV04-E Datasheet

MOSFET OMNIFETII 40V 12A TO-2203

VNP14NV04-E

Manufacturer Part Number
VNP14NV04-E
Description
MOSFET OMNIFETII 40V 12A TO-2203
Manufacturer
STMicroelectronics
Series
OMNIFET II™r
Type
Low Sider
Datasheet

Specifications of VNP14NV04-E

Input Type
Non-Inverting
Number Of Outputs
1
On-state Resistance
35 mOhm
Current - Peak Output
18A
Mounting Type
Through Hole
Package / Case
TO-220-3 (Straight Leads)
On Resistance (max)
35 mOhms
Maximum Power Dissipation
74 W
Mounting Style
Through Hole
Supply Current
0.1 mA
Transistor Polarity
N Channel
Continuous Drain Current Id
7A
Drain Source Voltage Vds
55V
On Resistance Rds(on)
35mohm
Rds(on) Test Voltage Vgs
5V
Threshold Voltage Vgs Typ
2.5V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Supply
-
Operating Temperature
-
Current - Output / Channel
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VNP14NV04-E
Manufacturer:
ST
0
Features
Table 1.
April 2010
VNB14NV04
VND14NV04
VND14NV04-1
VNS14NV04
TO-252 (DPAK)
TO-251 (IPAK)
Linear current limitation
Thermal shutdown
Short circuit protection
Integrated clamp
Low current drawn from input pin
Diagnostic feedback through input pin
ESD protection
Direct access to the gate of the Power
MOSFET (analog driving)
Compatible with standard Power MOSFET
TYPE
Package
D
SO-8
2
PAK
Device summary
R
35 mΩ
DS(on)
VND14NV04-1
VND14NV04
VNB14NV04
VNS14NV04
Tube
12 A
I
lim
VND14NV04-1-E
Tube (lead free)
V
VNB14NV04-E
VND14NV04-E
40 V
clamp
Doc ID 7393 Rev 8
VND14NV04-1, VNS14NV04
-
fully autoprotected Power MOSFET
VNB14NV04, VND14NV04
Description
The
VNS14NV04
STMicroelectronics VIPower™ M0 technology,
intended for replacement of standard power
MOSFETS in DC to 50 KHz applications. Built-in
thermal shutdown, linear current limitation and
overvoltage clamp protect the chip in harsh
environments.
Fault feedback can be detected by monitoring the
voltage at the input pin.
VNB14NV04, VND14NV04, VND14NV04-1 and
VNB14NV0413TR
VND14NV0413TR
Tape and reel
TO-252 (DPAK)
are monolithic devices made using
-
-
SO-8
1
3
Tape and reel (lead free)
TO-251 (IPAK)
VND14NV04TR-E
VNB14NV04TR-E
"OMNIFET II"
D
2
PAK
1
-
-
3
1
2
3
www.st.com
1/31
1

Related parts for VNP14NV04-E

VNP14NV04-E Summary of contents

Page 1

... Description The VNB14NV04, VND14NV04, VND14NV04-1 and VNS14NV04 STMicroelectronics VIPower™ M0 technology, intended for replacement of standard power MOSFETS KHz applications. Built-in thermal shutdown, linear current limitation and overvoltage clamp protect the chip in harsh environments. Fault feedback can be detected by monitoring the voltage at the input pin. ...

Page 2

Contents Contents 1 Block diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 3

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 List of tables Table 1. Device summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 4

List of figures List of figures Figure 1. Block diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 5

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 1 Block diagram Figure 1. Block diagram Doc ID 7393 Rev 8 Block diagram 5/31 ...

Page 6

Electrical specification 2 Electrical specification Figure 2. Current and voltage conventions 2.1 Absolute maximum rating Table 2. Absolute maximum rating Symbol V Drain-source voltage ( Input voltage IN I Input current IN R Minimum input series impedance IN ...

Page 7

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 2.2 Thermal data Table 3. Thermal data Symbol Thermal resistance junction-case max R thj-case Thermal resistance junction-lead max R thj-lead Thermal resistance junction-ambient max R thj-amb 1. When mounted on a standard single-sided FR4 board with ...

Page 8

Electrical specification Table 4. Electrical characteristics (continued) Symbol Parameter t Turn-on delay time d(on) t Rise time r t Turn-off delay time d(off) t Fall time f (di/dt) Turn-on current slope on Q Total input charge i Source drain diode ...

Page 9

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 3 Protection features During normal operation, the input pin is electrically connected to the gate of the internal power MOSFET through a low impedance path. The device then behaves like a standard power MOSFET and can ...

Page 10

Protection features Figure 3. Switching time test circuit for resistive load Figure 4. Test circuit for diode recovery times 10/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Doc ID 7393 Rev 8 ...

Page 11

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 5. Unclamped inductive load test circuits Figure 7. Input charge test circuit Figure 6. Unclamped inductive waveforms Doc ID 7393 Rev 8 Protection features 11/31 ...

Page 12

Protection features Figure 8. Source-drain diode forward characteristics Figure 10. Derating curve Figure 12. Static drain-source on resistance vs. input voltage (part 2/2) 12/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 9. Static drain source on resistance Figure 11. Static drain-source on ...

Page 13

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 14. Static drain-source on resistance vs. id Figure 16. Turn-on current slope (part 1/2) Figure 18. Input voltage vs. input charge Figure 15. Transfer characteristics Figure 17. Turn-on current slope (part 2/2) Figure 19. Turn-off ...

Page 14

Protection features Figure 20. Turn-off drain source voltage slope (part 2/2) Figure 22. Switching time resistive load (part 1/2) Figure 24. Output characteristics 14/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 21. Capacitance variations Figure 23. Switching time resistive load (part 2/2) ...

Page 15

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 26. Normalized input threshold voltage vs. temperature Figure 28. Step response current limit Figure 27. Current limit vs. junction temperatures Doc ID 7393 Rev 8 Protection features 15/31 ...

Page 16

Protection features Figure 29. DPAK maximum turn-off current versus load inductance Legend: A= Single pulse at T Jstart B= Repetitive pulse Repetitive pulse at T Conditions: V =13 Values are generated with R In case ...

Page 17

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 2 Figure 31. D PAK maximum turn-off current versus load inductance Legend: A= Single pulse at T Jstart B= Repetitive pulse Repetitive pulse at T Conditions: V =13 Values are generated ...

Page 18

Package thermal data 4 Package thermal data 4.1 DPAK thermal data Figure 33. DPAK PC board 1. Layout condition thickness=35 µm, Copper areas: from minimum pad lay-out Figure 34. DPAK R 18/31 VNB14NV04, VND14NV04, ...

Page 19

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Figure 35. DPAK thermal impedance junction ambient single pulse Figure 36. Thermal fitting model of an OMNIFET II in DPAK Pulse calculation formula δ ⋅ THδ TH δ T ⁄ where t = ...

Page 20

Package thermal data Table 5. DPAK thermal parameter (continued) Area/island(cm C4 (W.s/°C) C5 (W.s/°C) C6 (W.s/°C) 4.2 SO-8 thermal data Figure 37. SO-8 PC board 1. Layout condition thickness=35 µm, Copper areas: 0.14 cm Figure 38. SO-8 ...

Page 21

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 2 4.3 D PAK thermal data 2 Figure 39. D PAK PC board 1. Layout condition thickness=35 µm, Copper areas: from minimum pad lay-out Figure 40. D PAK R ...

Page 22

Package thermal data 2 Figure 41. D PAK thermal impedance junction ambient single pulse Figure 42. Thermal fitting model of an OMNIFET Pulse calculation formula δ ⋅ THδ TH δ T ⁄ where = ...

Page 23

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 2 Table 6. D PAK thermal parameter (continued) Area/island(cm C3 (W.s/°C) C4 (W.s/°C) C5 (W.s/°C) C6 (W.s/° Footprint 8.00E-02 0. Doc ID 7393 Rev 8 Package thermal data 6 5 23/31 ...

Page 24

Package information 5 Package information ® 5.1 ECOPACK In order to meet environmental requirements, ST offers these devices in different grades of ® ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product status are ...

Page 25

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Table 7. TO-251 (IPAK) mechanical data (continued) Dim 5.3 D PAK mechanical data 2 Figure 44. D PAK package dimension Millimeters Min. Typ. ...

Page 26

Package information 2 Table 8. D PAK mechanical data Dim 26/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Millimeters Min. Typ. 4.4 2.49 0.03 0.7 ...

Page 27

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 5.4 TO-252 (DPAK) mechanical data Figure 45. TO-252 (DPAK) package dimension Table 9. TO-252 (DPAK) mechanical data Dim Millimeters Min. Typ. ...

Page 28

Package information Table 9. TO-252 (DPAK) mechanical data (continued) Dim Package weight 5.5 SO-8 mechanical data Figure 46. SO-8 package dimension Table 10. SO-8 mechanical data Dim 28/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 ...

Page 29

VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Table 10. SO-8 mechanical data (continued) Dim Millimeters Min. Typ. 0 6.2 1.27 3.81 4 1.27 0.6 Doc ID 7393 Rev 8 Package information ...

Page 30

Revision history 6 Revision history Table 11. Document revision history Date 21-Jun-2004 03-Apr-2009 06-Apr-2010 30/31 VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Revision 6 Initial release. Document reformatted. 7 Added Table 1: Device summary on page Updated Section 5: Package information on page ...

Page 31

... VNB14NV04, VND14NV04, VND14NV04-1, VNS14NV04 Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST’s terms and conditions of sale. ...

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