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  Microsemi Electronic Components Datasheet  

UPF1N50 Datasheet

SURFACE MOUNT N CHANNEL MOSFET

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WATERTOWN DIVISION
UPF1N50
SURFACE MOUNT N CHANNEL MOSFET
PRELIMINARY
DESCRIPTION
Power MOSFET in ultra low profile patented Powermite 3(TM) package
provides the designer with the best combination of fast Switching,
ruggedized device design, low on-resistance, cost effectiveness in the
industry's smallest high power surface mount package.
The UPF1N50 is ideal for ultra small motor control and switch mode power
supply applications.
The Powermite 3 is designed for surface mounting using vapor phase,
infrared, or wave soldering techniques. With power dissipation levels up to
1.8 Watts, the Powermite 3 offers similar power handling capability to device
4 times its size by using a patented full metal wrap around bottom.
IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com
KEY FEATURES
!"POWERMITE 3 Surface Mount
Package
!"Low On-State Resistance
!"High Frequency Switching
!"Ultra Low Leakage current
!"Integral Heat Sink / Locking
Tabs
!"Supplied in 16mm Tape and
Reel – 6000 units/reel
!"Superior Low Thermal And
Electrical capability
APPLICATIONS/BENEFITS
Motor Control
Switch Mode Power Supplies
MECHANICAL CHARACTERISTICS
POWERMITE 3 Surface Mount Package
Footprint Area of 16.51 mm2
Case: Molded Epoxy
Meets UL94VO at 1/8 inch
Weight: 72 milligrams
Lead and Mounting Temperatures: 260 0C max for 10 seconds
MAXIMUM RATINGS
PARAMETER
Drain-to-Source Voltage
Drain-to-Source Voltage
Continuous Drain Current @ TC = 25ºC
Continuous Drain Current @ TC = 100ºC
Operating & Storage Junction Temperature Range
Total Power Dissipation
SYMBOL
VALUE
UNIT
VDSS
VGS
ID1
ID2
TJ, TSTG
PD (1)
500
+/-20
1.0
0.8
- 40 to + 125
1.8
Volts
Volts
Amps
Amps
ºC
Watts
THERMAL CHARACTERISTICS
STEADY-STATE THERMAL RESISTANCE:
Junction-to-Tab
(1) Junction-to-ambient
(2) Junction-to-ambient
SYMBOL
RθJ-TAB
RθJA (1)
RθJA (2)
VALUE
2.0
55
120
UNIT
°C/Watts
°C/Watts
°C/Watts
(1) Mounted on 2” square by 0.06’ thick FR4 board with a 1”× 1”square 2-ounce copper pattern.
(2) Mounted on 0.06’ thick FR4 board, using recommended footprint.
Copyright 2000
MSC1541.PDF 2000-08-08
Microsemi
Watertown Division
580 Pleasant Street, Watertown, MA. 02472, 617-926-0404, Fax: 617-924-1235
Page 1


  Microsemi Electronic Components Datasheet  

UPF1N50 Datasheet

SURFACE MOUNT N CHANNEL MOSFET

No Preview Available !

WATERTOWN DIVISION
UPF1N50
SURFACE MOUNT N CHANNEL MOSFET
PRELIMINARY
SYMBOL
BVDSS
VGS(TH)2
VGS(TH)1
RDS(ON)1
IDSS1
IDSS2
IGSS1
STATIC ELECTRICAL CHARACTERISTICS
CHARACTERISTICS / TEST CONDITIONS
UPF1N50
Min Typ Max
Drain to Source Breakdown Voltage
(VGS=0V, ID=0.25mA)
500
Gate Threshold Voltage
(VDSVGS, ID=1mA, TJ=37°C ) 2.0 3.4
4.0
Gate Threshold Voltage
(VDSVGS, ID=1mA, TJ=25°C )
3.5
Drain to Source ON-State Resistance
(VGS=10V, ID=1.0A , TJ=25°C )
2.7 3.5
Zero Gate Voltage-Drain Current
(VDS=400V,VGS=0V,TJ= 25°C )
2
Zero Gate Voltage-Drain Current
(VDS=400V,VGS=0V,TJ=125°C )
250
Gate to Source Leakage Current
(VGS= ±20V, VDS=0V, TJ = 25°C )
±100
Units
Volts
Volts
Volts
Ohms
uA
uA
nA
SYMBOL
Ciss
Coss
Crss
Qg
Qgs
Qgd
td (on)
tr
td
tf
VSD
trr
Qrr
STATIC ELECTRICAL CHARACTERISTICS
CHARACTERISTIC
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Total Gate Charge
Gate to Source Charge
Gate to Drain Charge
TEST CONDITIONS
VGS= 0 V
VDS= 50 V
f = 1MHZ
VGS= 10 V
VDS= 0.5 VDSS
ID= 10 mA
Turn-ON Delay Time
Rise Time
Turn-OFF Delay Time
Fall Time
Diode Forward Voltage
Reverse Recovery Time
Reverse Recovery Charge
Resistive Switching (25°C)
VGS= 10 V, VDS= 0.5 BVDSS
ID = 20 mA
Rg = 1.6
VGS= 0 V, IS = 1 A, TJ = 25°C
IS = 1 A, dIs/dt = 100 A/us
IS = 1 A, dIs/dt = 100 A/us
Min Typ Max UNIT
200 250
30 50
15 20
20
1.0
10
pF
pF
pF
nC
nC
nC
20
10
30
30
0.85 1.2
150
0.8
ns
ns
ns
us
V
ns
uC
Copyright 2000
MSC1541.PDF 2000-08-08
Microsemi
Watertown Division
580 Pleasant Street, Watertown, MA. 02472, 617-926-0404, Fax: 617-924-1235
Page 2


Part Number UPF1N50
Description SURFACE MOUNT N CHANNEL MOSFET
Maker Microsemi Corporation
Total Page 3 Pages
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