Datasheet PHP7N40E Datasheet (Philips)

Page 1
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
FEATURES SYMBOL QUICK REFERENCE DATA
• Repetitive Avalanche Rated
• Fast switching V
d
= 400 V
DSS
• High thermal cycling performance I
• Low thermal resistance
g
s
= 7.2 A
D
R
DS(ON)
1
GENERAL DESCRIPTION
N-channel,enhancementmodefield-effect power transistor, intendedforusein off-line switched mode powersupplies, T.V.andcomputer monitor powersupplies, d.c. to d.c.converters, motor controlcircuitsand general purpose switching applications.
The PHP7N40E is supplied in the SOT78 (TO220AB) conventional leaded package. The PHB7N40E is supplied in the SOT404 surface mounting package.
PINNING SOT78 (TO220AB) SOT404
PIN DESCRIPTION
1 gate 2 drain
1
3 source
tab drain
tab
123
tab
2
13
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134)
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
V
DSS
V
DGR
V
GS
I
D
I
DM
P
D
Tj, T
December 1998 1 Rev 1.200
Drain-source voltage Tj = 25 ˚C to 150˚C - 400 V Drain-gate voltage Tj = 25 ˚C to 150˚C; RGS = 20 k - 400 V Gate-source voltage - ± 30 V Continuous drain current Tmb = 25 ˚C; VGS = 10 V - 7.2 A
Tmb = 100 ˚C; VGS = 10 V - 4.6 A Pulsed drain current Tmb = 25 ˚C - 29 A Total dissipation Tmb = 25 ˚C - 125 W Operating junction and - 55 150 ˚C
stg
storage temperature range
Page 2
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
AVALANCHE ENERGY LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134)
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
E
AS
E
AR
IAS, I
THERMAL RESISTANCES
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
R
th j-mb
R
th j-a
Non-repetitive avalanche Unclamped inductive load, IAS = 4.8 A; - 290 mJ energy tp = 0.23 ms; Tj prior to avalanche = 25˚C;
VDD 50 V; RGS = 50 ; VGS = 10 V; refer
to fig:17 Repetitive avalanche energy1IAR = 7.2 A; tp = 2.5 µs; Tj prior to - 9.4 mJ
avalanche = 25˚C; RGS = 50 ; VGS = 10 V;
refer to fig:18 Repetitive and non-repetitive - 7.2 A
AR
avalanche current
Thermal resistance junction - - 1 K/W to mounting base Thermal resistance junction SOT78 package, in free air - 60 - K/W to ambient SOT404 package, pcb mounted, minimum - 50 - K/W
footprint
1 pulse width and repetition rate limited by Tj max.
December 1998 2 Rev 1.200
Page 3
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
ELECTRICAL CHARACTERISTICS
Tj = 25 ˚C unless otherwise specified
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
V
(BR)DSS
VT
R
DS(ON)
V
GS(TO)
g
fs
I
DSS
I
GSS
Q
g(tot)
Q
gs
Q
gd
t
d(on)
t
r
t
d(off)
t
f
L
d
L
d
L
s
C
iss
C
oss
C
rss
(BR)DSS
j
Drain-source breakdown VGS = 0 V; ID = 0.25 mA 400 - - V voltage
/ Drain-source breakdown VDS = VGS; ID = 0.25 mA - 0.1 - %/K
voltage temperature coefficient Drain-source on resistance VGS = 10 V; ID = 3.6 A - 0.7 1 Gate threshold voltage VDS = VGS; ID = 0.25 mA 2.0 3.0 4.0 V Forward transconductance VDS = 30 V; ID = 3.6 A 2 4 - S Drain-source leakage current VDS = 400 V; VGS = 0 V - 1 25 µA
VDS = 320 V; VGS = 0 V; Tj = 125 ˚C - 30 250 µA Gate-source leakage current VGS = ±30 V; VDS = 0 V - 10 200 nA
Total gate charge ID = 7.2 A; V
= 320 V; VGS = 10 V - 52 62 nC
DD
Gate-source charge - 3 5 nC Gate-drain (Miller) charge - 26 30 nC
Turn-on delay time VDD = 200 V; RD = 27 ; - 12 - ns Turn-on rise time RG = 12 -33-ns Turn-off delay time - 93 - ns Turn-off fall time - 42 - ns
Internal drain inductance Measured from tab to centre of die - 3.5 - nH Internal drain inductance Measured from drain lead to centre of die - 4.5 - nH
(SOT78 package only) Internal source inductance Measured from source lead to source - 7.5 - nH
bond pad Input capacitance VGS = 0 V; VDS = 25 V; f = 1 MHz - 620 - pF
Output capacitance - 108 - pF Feedback capacitance - 63 - pF
SOURCE-DRAIN DIODE RATINGS AND CHARACTERISTICS
Tj = 25 ˚C unless otherwise specified
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
I
S
I
SM
V
SD
t
rr
Q
rr
Continuous source current Tmb = 25˚C - - 7.2 A (body diode) Pulsed source current (body Tmb = 25˚C - - 29 A diode) Diode forward voltage IS = 7.2 A; VGS = 0 V - - 1.2 V
Reverse recovery time IS = 7.2 A; VGS = 0 V; dI/dt = 100 A/µs - 270 - ns Reverse recovery charge - 3.3 - µC
December 1998 3 Rev 1.200
Page 4
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
PD%
120 110 100
90 80 70 60 50 40 30 20 10
0
0 20 40 60 80 100 120 140
Normalised Power Derating
Tmb / C
Fig.1. Normalised power dissipation.
PD% = 100⋅PD/P
ID%
120 110 100
90 80 70 60 50 40 30 20 10
0
0 20 40 60 80 100 120 140
Tmb / C
= f(Tmb)
D 25 ˚C
Normalised Current Derating
Fig.2. Normalised continuous drain current.
ID% = 100⋅ID/I
= f(Tmb); conditions: VGS ≥ 10 V
D 25 ˚C
Zth j-mb, Transient thermal impedance (K/W)
1
D = 0.5
0.2
0.1
0.1
0.05
0.02
0.01 single pulse
0.001 1us
10us 100us
1ms 1s
tp, pulse width (s)
P
D
10ms 100ms
PHP3N60
t
D =
p
T
t
t
p
T
Fig.4. Transient thermal impedance.
Z
= f(t); parameter D = tp/T
th j-mb
ID, Drain current (Amps)
20
Tj = 25 C
15
10
5
0
0 5 10 15 20 25 30
VDS, Drain-Source voltage (Volts)
PHP5N40 10 V
VGS = 4.5 V
Fig.5. Typical output characteristics
ID = f(VDS); parameter V
GS
7 V
6.5 V
6 V
5.5 V 5 V
.
7 V
GS
PHP5N40
10 V
.
ID, Drain current (Amps)
100
10
RDS(ON) = VDS/ID
1
DC
0.1 10 100 1000 10000
VDS, Drain-source voltage (Volts)
tp = 10 us
100 us
1 ms
10 ms
PHP3N50
Fig.3. Safe operating area. Tmb = 25 ˚C
ID & IDM = f(VDS); IDM single pulse; parameter t
RDS(on), Drain-Source on resistance (Ohms)
2.5
4.5 V
2
1.5
1
0.5
0
0 5 10 15 20
5.5 V
5 V
ID, Drain current (Amps)
VGS = 6 V Tj = 25 C
6.5 V
Fig.6. Typical on-state resistance
R
p
= f(ID); parameter V
DS(ON)
December 1998 4 Rev 1.200
Page 5
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
ID, Drain current (Amps)
20
VDS > ID x RDS(on)max
15
10
5
0
0246810
VGS, Gate-Source voltage (Volts)
Tj = 25 C
PHP5N40
Tj = 150 C
Fig.7. Typical transfer characteristics.
ID = f(VGS); parameter T
gfs, Transconductance (S)
7
VDS > ID x RDS(on)max
6
5
4
3
Tj = 25 C
150 C
j
PHP5N40
VGS(TO) / V
4
3
2
1
0
-60 -40 -20 0 20 40 60 80 100 120 140
max.
typ.
min.
Tj / C
Fig.10. Gate threshold voltage
V
= f(Tj); conditions: ID = 0.25 mA; VDS = V
GS(TO)
1E-01
1E-02
1E-03
1E-04
ID / A
SUB-THRESHOLD CONDUCTION
2 %
typ
.
GS
98 %
2
1
0
0 5 10 15 20
Fig.8. Typical transconductance
a
2
1
0
-60 -40 -20 0 20 40 60 80 100 120 140
ID, Drain current (A)
gfs = f(ID); parameter T
Normalised RDS(ON) = f(Tj)
Tj / C
.
j
Fig.9. Normalised drain-source on-state resistance.
a = R
DS(ON)/RDS(ON)25 ˚C
= f(Tj); ID = 3.6 A; VGS = 10 V
1E-05
1E-06
0 1 2 3 4
VGS / V
Fig.11. Sub-threshold drain current.
ID = f(V
Junction capacitances (pF)
1000
100
10
1 10 100 1000
Fig.12. Typical capacitances, C
C = f(VDS); conditions: VGS = 0 V; f = 1 MHz
; conditions: Tj = 25 ˚C; VDS = V
GS)
Ciss
Coss
Crss
VDS, Drain-Source voltage (Volts)
, C
iss
PHP5N40
oss
, C
GS
rss
.
December 1998 5 Rev 1.200
Page 6
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
VGS, Gate-Source voltage (Volts)
15
ID = 7.2 A
Tj = 25 C
10
5
0
0 1020304050607080
Qg, Gate charge (nC)
240 V
80 V
PHP5N40
VDD = 320 V
Fig.13. Typical turn-on gate-charge characteristics.
V
= f(QG); parameter V
GS
Switching times (ns)
1000
VDD = 200 V
VGS = 10 V RD = 27 Ohms Tj = 25 C
100
td(off)
tf tr
td(on)
10
0 102030405060
RG, Gate resistance (Ohms)
Fig.14. Typical switching times; t
d(on)
DS
, tr, t
PHP5N40
, tf = f(RG)
d(off)
IF, Source-Drain diode current (Amps)
20
VGS = 0 V
15
10
150 C
5
0
0 0.2 0.4 0.6 0.8 1 1.2 1.4
VSDS, Source-Drain voltage (Volts)
Tj = 25 C
PHP5N40
Fig.16. Source-Drain diode characteristic.
IF = f(V
Non-repetitive Avalanche current, IAS (A)
10
Tj prior to avalanche = 125 C
1
VDS
tp
ID
0.1 1E-06 1E-05 1E-04 1E-03 1E-02
); parameter T
SDS
Avalanche time, tp (s)
j
25 C
PHP7N40E
Fig.17. Maximum permissible non-repetitive
avalanche current (IAS) versus avalanche time (tp);
unclamped inductive load
Normalised Drain-source breakdown voltage
1.15
V(BR)DSS @ Tj V(BR)DSS @ 25 C
1.1
1.05
1
0.95
0.9
0.85
-100 -50 0 50 100 150 Tj, Junction temperature (C)
Fig.15. Normalised drain-source breakdown voltage
V
(BR)DSS/V(BR)DSS 25 ˚C
= f(Tj)
;
Maximum Repetitive Avalanche Current, IAR (A)
10
Tj prior to avalanche = 25 C
1
0.1
0.01 1E-06 1E-05 1E-04 1E-03 1E-02
125 C
PHP7N40E
Avalanche time, tp (s)
Fig.18. Maximum permissible repetitive avalanche
current (IAR) versus avalanche time (tp)
December 1998 6 Rev 1.200
Page 7
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
MECHANICAL DATA
Dimensions in mm Net Mass: 2 g
10,3 max
1,3
3,7
4,5 max
3,0 max
not tinned
1,3
max
(2x)
123
2,54 2,54
2,8
3,0
13,5
min
0,9 max (3x)
5,9
min
15,8
max
0,6
2,4
Fig.19. SOT78 (TO220AB); pin 2 connected to mounting base.
Notes
1. Observe the general handling precautions for electrostatic-discharge sensitive devices (ESDs) to prevent damage to MOS gate oxide.
2. Refer to mounting instructions for SOT78 (TO220) envelopes.
3. Epoxy meets UL94 V0 at 1/8".
December 1998 7 Rev 1.200
Page 8
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
MECHANICAL DATA
Dimensions in mm Net Mass: 1.4 g
2.54 (x2)
MOUNTING INSTRUCTIONS
Dimensions in mm
10.3 max
11 max
15.4
0.85 max (x2)
4.5 max
1.4 max
0.5
Fig.20. SOT404 : centre pin connected to mounting base.
11.5
2.5
9.0
17.5
2.0
3.8
5.08
Fig.21. SOT404 : soldering pattern for surface mounting
.
Notes
1. Observe the general handling precautions for electrostatic-discharge sensitive devices (ESDs) to prevent damage to MOS gate oxide.
2. Epoxy meets UL94 V0 at 1/8".
December 1998 8 Rev 1.200
Page 9
Philips Semiconductors Product specification
PowerMOS transistors PHP7N40E, PHB7N40E Avalanche energy rated
DEFINITIONS
Data sheet status
Objective specification This data sheet contains target or goal specifications for product development. Preliminary specification This data sheet contains preliminary data; supplementary data may be published later. Product specification This data sheet contains final product specifications.
Limiting values
Limiting values are given in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the Characteristics sections of this specification is not implied. Exposure to limiting values for extended periods may affect device reliability.
Application information
Where application information is given, it is advisory and does not form part of the specification.
Philips Electronics N.V. 1998
All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner.
The information presented in this document does not form part of any quotation or contract, it is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license under patent or other industrial or intellectual property rights.
LIFE SUPPORT APPLICATIONS
These products are not designed for use in life support appliances, devices or systems where malfunction of these products can be reasonably expected to result in personal injury. Philips customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such improper use or sale.
December 1998 9 Rev 1.200
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