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What is PHT11N06?

This electronic component, produced by the manufacturer "NXP Semiconductors", performs the same function as "TrenchMOS transistor Standard level FET".


PHT11N06 Datasheet PDF - NXP Semiconductors

Part Number PHT11N06
Description TrenchMOS transistor Standard level FET
Manufacturers NXP Semiconductors 
Logo NXP Semiconductors Logo 


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Philips Semiconductors
TrenchMOStransistor
Logic level FET
Product specification
PHT11N06LT
GENERAL DESCRIPTION
N-channel enhancement mode
logic level field-effect power
transistor in a plastic envelope
suitable for surface mounting.
The device features very low
on-state resistance and has
integral zener diodes giving
ESD protection. It is intended for
use in DC-DC converters and
general purpose switching
applications.
QUICK REFERENCE DATA
SYMBOL PARAMETER
VDS
ID
Ptot
Tj
RDS(ON)
Drain-source voltage
Drain current (DC) Tsp = 25 ˚C
Drain current (DC) Tamb = 25 ˚C
Total power dissipation
Junction temperature
Drain-source on-state
resistance
VGS = 5 V
MAX.
55
10.7
4.9
8.3
150
40
PINNING - SOT223
PIN DESCRIPTION
1 gate
2 drain
3 source
4 drain (tab)
PIN CONFIGURATION
4
123
SYMBOL
d
g
s
UNIT
V
A
A
W
˚C
m
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134)
SYMBOL PARAMETER
CONDITIONS
VDS
VDGR
±VGS
ID
ID
IDM
Ptot
Tstg, Tj
Drain-source voltage
Drain-gate voltage
Gate-source voltage
Drain current (DC)
Drain current (DC)
Drain current (pulse peak value)
Total power dissipation
Storage & operating temperature
-
RGS = 20 k
-
Tsp = 25 ˚C
Tamb = 25 ˚C
Tsp = 100 ˚C
Tamb = 100 ˚C
Tsp = 25 ˚C
Tamb = 25 ˚C
Tsp = 25 ˚C
Tamb = 25 ˚C
-
ESD LIMITING VALUE
SYMBOL
VC
PARAMETER
Electrostatic discharge capacitor
voltage
CONDITIONS
Human body model
(100 pF, 1.5 k)
MIN.
-
-
-
-
-
-
-
-
-
-
-
- 55
MAX.
55
55
13
10.7
4.9
7.5
3.4
42
19
8.3
1.8
150
UNIT
V
V
V
A
A
A
A
A
A
W
W
˚C
MIN.
-
MAX.
2
UNIT
kV
January 1998
1
Rev 1.100

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PHT11N06 equivalent
Philips Semiconductors
TrenchMOStransistor
Logic level FET
Product specification
PHT11N06LT
20
ID/A
15
10
Tj/C =
150
25
5
0
0 1 2 VGS/V 3 4
Fig.7. Typical transfer characteristics.
ID = f(VGS) ; conditions: VDS = 25 V; parameter Tj
Transconductance, gfs (S)
25
20
15
10
5 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
Drain current, ID (A)
Fig.8. Typical transconductance, Tj = 25 ˚C.
gfs = f(ID); conditions: VDS = 25 V
2.5 a
BUK98XX-55
Rds(on) normalised to 25degC
2
1.5
1
0.5
-100
-50
0 50 100 150 200
Tmb / degC
Fig.9. Normalised drain-source on-state resistance.
a = RDS(ON)/RDS(ON)25 ˚C = f(Tj); ID = 5 A; VGS = 5 V
VGS(TO) / V
2.5
max.
2
typ.
1.5
min.
1
BUK98xx-55
0.5
0
-100
-50
0 50
Tj / C
100 150 200
Fig.10. Gate threshold voltage.
VGS(TO) = f(Tj); conditions: ID = 1 mA; VDS = VGS
1E-01
Sub-Threshold Conduction
1E-02
1E-03
2% typ 98%
1E-04
1E-05
1E-05
0 0.5 1 1.5 2 2.5
Fig.11. Sub-threshold drain current.
ID = f(VGS); conditions: Tj = 25 ˚C; VDS = VGS
3
2.5
2.0
1.5
1.0 Ciss
0.5
0
0.01 0.1
1 VDS/V 10
Coss
Crss
100
Fig.12. Typical capacitances, Ciss, Coss, Crss.
C = f(VDS); conditions: VGS = 0 V; f = 1 MHz
January 1998
5
Rev 1.100


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Part Details

On this page, you can learn information such as the schematic, equivalent, pinout, replacement, circuit, and manual for PHT11N06 electronic component.


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