NCE N-Channel Enhancement Mode Power MOSFET

Pb Free Product
NCE01P13K
http://www.ncepower.com
NCE P-Channel Enhancement Mode Power MOSFET
Description
The NCE01P13K uses advanced trench technology and
design to provide excellent RDS(ON) with low gate charge. It can
be used in a wide variety of applications. It is ESD protested.
General Features
● VDS =-100V,ID =-13A
Schematic diagram
RDS(ON) <200mΩ @ VGS=-10V (Typ:170mΩ)
● Super high dense cell design
● Advanced trench process technology
● Reliable and rugged
● High density celldesign for ultra low on-resistance
Application
● Power switch
Marking and pin assignment
● DC/DC converters
100% UIS TESTED!
100% ∆Vds TESTED!
TO-252 -2Ltop view
Package Marking and Ordering Information
Device Marking
Device
Device Package
Reel Size
Tape width
Quantity
NCE01P13K
NCE01P13K
TO-252-2L
-
-
-
Absolute Maximum Ratings (TC=25℃unless otherwise noted)
Parameter
Symbol
Drain-Source Voltage
VDS
Gate-Source Voltage
VGS
Limit
Unit
-100
V
±20
V
ID
-13
A
ID (100℃)
-9.2
A
Pulsed Drain Current
IDM
-30
A
Maximum Power Dissipation
PD
40
W
0.32
W/℃
EAS
110
mJ
TJ,TSTG
-55 To 150
℃
Drain Current-Continuous
Drain Current-Continuous(TC=100℃)
Derating factor
Single pulse avalanche energy
(Note 5)
Operating Junction and Storage Temperature Range
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Thermal Characteristic
Thermal Resistance,Junction-to-Case (Note 2)
RθJc
Electrical Characteristics (TC=25℃unless otherwise noted)
Parameter
Symbol
Condition
3.13
℃/W
Min
Typ
Max
Unit
Off Characteristics
Drain-Source Breakdown Voltage
BVDSS
VGS=0V ID=-250μA
-100
-
-
V
Zero Gate Voltage Drain Current
IDSS
VDS=-100V,VGS=0V
-
-
1
μA
Gate-Body Leakage Current
IGSS
VGS=±20V,VDS=0V
-
-
±10
μA
Gate Threshold Voltage
VGS(th)
VDS=VGS,ID=-250μA
-1
-1.9
-3
V
Drain-Source On-State Resistance
RDS(ON)
VGS=-10V, ID=-16A
-
170
200
mΩ
gFS
VDS=-15V,ID=-5A
12
-
-
S
-
1055
-
PF
-
65
-
PF
-
41
-
PF
-
14
-
nS
On Characteristics
(Note 3)
Forward Transconductance
Dynamic Characteristics
(Note4)
Input Capacitance
Clss
Output Capacitance
Coss
Reverse Transfer Capacitance
Switching Characteristics
VDS=-25V,VGS=0V,
F=1.0MHz
Crss
(Note 4)
Turn-on Delay Time
td(on)
Turn-on Rise Time
tr
VDD=-50V,ID=-10A
-
18
-
nS
td(off)
VGS=-10V,RGEN=9.1Ω
-
50
-
nS
-
18
-
nS
-
25
-
nC
-
5
-
nC
-
7
-
nC
Turn-Off Delay Time
Turn-Off Fall Time
tf
Total Gate Charge
Qg
Gate-Source Charge
Qgs
Gate-Drain Charge
Qgd
VDS=-50V,ID=-10A,
VGS=-10V
Drain-Source Diode Characteristics
Diode Forward Voltage (Note 3)
Diode Forward Current
(Note 2)
Reverse Recovery Time
VSD
VGS=0V,IS=-10A
-
-
-1.2
V
IS
-
-
-
-13
A
trr
TJ = 25°C, IF =-10A
-
35
-
nS
(Note3)
-
46
-
nC
Reverse Recovery Charge
Qrr
Forward Turn-On Time
ton
di/dt = 100A/μs
Intrinsic turn-on time is negligible (turn-on is dominated by LS+LD)
Notes:
1. Repetitive Rating: Pulse width limited by maximum junction temperature.
2. Surface Mounted on FR4 Board, t ≤ 10 sec.
3. Pulse Test: Pulse Width ≤ 300μs, Duty Cycle ≤ 2%.
4. Guaranteed by design, not subject to production
5. EAS condition:Tj=25℃,VDD=-50V,VG=-10V,L=0.5mH,Rg=25Ω
Wuxi NCE Power Semiconductor Co., Ltd
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NCE01P13K
Test Circuit
1) EAS Test Circuit
2) Gate Charge Test Circuit
3) Switch Time Test Circuit
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NCE01P13K
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ID- Drain Current (A)
Normalized On-Resistance
Typical Electrical and Thermal Characteristics (Curves)
TJ-Junction Temperature(℃)
Vds Drain-Source Voltage (V)
Figure 4 Rdson-JunctionTemperature
ID- Drain Current (A)
Vgs Gate-Source Voltage (V)
Figure 1 Output Characteristics
Vgs Gate-Source Voltage (V)
Qg Gate Charge (nC)
Figure 5 Gate Charge
Rdson On-Resistance(Ω)
Is- Reverse Drain Current (A)
Figure 2 Transfer Characteristics
ID- Drain Current (A)
Vsd Source-Drain Voltage (V)
Figure 3 Rdson- Drain Current
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Figure 6 Source- Drain Diode Forward
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NCE01P13K
ID- Drain Current (A)
C Capacitance (nF)
http://www.ncepower.com
TC
Vds Drain-Source Voltage (V)
Figure 9 Drain Current vs Case Temperature
ID- Drain Current (A)
Power Dissipation (w)
Figure 7 Capacitance vs Vds
Case Temperature(℃)
TJ-Junction Temperature(℃)
Vds Drain-Source Voltage (V)
Safe Operation Area
Figure 10
Power De-rating
r(t),Normalized Effective
Transient Thermal Impedance
Figure 8
Square Wave Pluse Duration(sec)
Figure 11 Normalized Maximum Transient Thermal Impedance
Wuxi NCE Power Semiconductor Co., Ltd
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NCE01P13K
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TO-252 Package Information
Symbol
Dimensions In Millimeters
Dimensions In Inches
Min.
Max.
Min.
Max.
A
2.200
2.400
0.087
0.094
A1
0.000
0.127
0.000
0.005
b
0.660
0.860
0.026
0.034
c
0.460
0.580
0.018
0.023
D
6.500
6.700
0.256
0.264
D1
5.100
5.460
0.201
0.215
D2
0.483 TYP.
0.190 TYP.
E
6.000
6.200
0.236
0.244
e
2.186
2.386
0.086
0.094
L
9.800
10.400
0.386
0.409
L1
L2
2.900 TYP.
1.400
L3
0.114 TYP.
1.700
0.055
1.600 TYP.
0.067
0.063 TYP.
L4
0.600
1.000
0.024
0.039
Φ
1.100
1.300
0.043
0.051
θ
0°
8°
0°
8°
h
0.000
0.300
0.000
0.012
V
Wuxi NCE Power Semiconductor Co., Ltd
5.350 TYP.
Page 6
0.211 TYP.
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NCE01P13K
Attention:
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Any and all NCE power products described or contained herein do not have specifications that can handle applications that
require extremely high levels of reliability, such as life-support systems, aircraft's control systems, or other applications
whose failure can be reasonably expected to result in serious physical and/or material damage. Consult
with your NCE power representative nearest you before using any NCE power products described or contained herein in
such applications.
NCE power assumes no responsibility for equipment failures that result from using products at values
that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters)
listed in products specifications of any and all NCE power products described or contained herein.
Specifications of any and all NCE power products described or contained herein stipulate the performance, characteristics,
and functions of the described products in the independent state, and are not guarantees of the performance, characteristics,
and functions of the described products as mounted in the customer’s products or equipment. To verify symptoms and states
that cannot be evaluated in an independent device, the customer should always evaluate and test
devices mounted in the customer’s products or equipment.
NCE power Semiconductor CO.,LTD. strives to supply high-quality high-reliability products. However, any and all
semiconductor products fail with some probability. It is possible that these probabilistic failures could
give rise to accidents or events that could endanger human lives, that could give rise to smoke or fire, or that could
cause damage to other property. When designing equipment, adopt safety measures so that these kinds of accidents or
events cannot occur. Such measures include but are not limited to protective circuits and error prevention circuits for safe
design, redundant design, and structural design.
In the event that any or all NCE power products(including technical data, services) described or contained herein are
controlled under any of applicable local export control laws and regulations, such products must not be exported without
obtaining the export license from the authorities concerned in accordance with the above law.
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Information (including circuit diagrams and circuit parameters) herein is for example only ; it is not guaranteed for volume
production. NCE power believes information herein is accurate and reliable, but no guarantees are made or implied
regarding its use or any infringements of intellectual property rights or other rights of third parties.
Any and all information described or contained herein are subject to change without notice due to
product/technology improvement, etc. When designing equipment, refer to the "Delivery Specification" for the NCE power
product that you intend to use.
This catalog provides information as of Sep.2010. Specifications and information herein are subject to change without notice.
Wuxi NCE Power Semiconductor Co., Ltd
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