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PDF FDY4000CZ Data sheet ( Hoja de datos )

Número de pieza FDY4000CZ
Descripción Complementary N & P-Channel PowerTrench MOSFET
Fabricantes Fairchild Semiconductor 
Logotipo Fairchild Semiconductor Logotipo



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No Preview Available ! FDY4000CZ Hoja de datos, Descripción, Manual

August 2006
FDY4000CZ
Complementary N & P-Channel PowerTrench®
MOSFET
tm
Features
Q1: N-Channel
„ Max rDS(on) = 0.7at VGS = 4.5V, ID = 600mA
„ Max rDS(on) = 0.85at VGS = 2.5V, ID = 500mA
„ Max rDS(on) = 1.25at VGS = 1.8V, ID =150 mA
Q2: P-Channel
„ Max rDS(on) = 1.2at VGS = -4.5V, ID = -350mA
„ Max rDS(on) = 1.6at VGS = -2.5V, ID = -300mA
„ Max rDS(on) = 2.7at VGS = -1.8V, ID = -150mA
„ ESD protection diode (note 3)
„ RoHS Compliant
General Description
This Complementary N & P-Channel MOSFET has been
designed using Fairchild Semiconductor’s advanced Power
Trench® process to optimize the rDS(ON) @ VGS= 2.5V and
specify the rDS(ON) @ VGS = 1.8V.
Applications
„ Level shifting
„ Power Supply Converter Circuits
„ Load/Power Switching Cell Phones, Pagers
6
5
4
www.DataSheet4U.com
S2 4
G2 5
3 D2
2 G1
1
2
3
D1 6
MOSFET Maximum Ratings TC = 25°C unless otherwise noted
Symbol
VDS
VGS
ID
PD
Parameter
Drain to Source Voltage
Gate to Source Voltage
Drain Current -Continuous
-Pulsed
Power Dissipation (Steady State)
TJ, TSTG
Operating and Storage Jaunting Temperature Range
Thermal Characteristics
(Note 1a)
(Note 1a)
(Note 1b)
RθJA
Thermal Resistance, Junction to Ambient
RθJA
Thermal Resistance, Junction to Ambient
Package Marking and Ordering Information
(Note 1a)
(Note 1b)
Device Marking
E
Device
FDY4000CZ
Package
SC89-6
Reel Size
7”
1 S1
Q1 Q2
20 -20
±12 ±8
600 -350
1000
-1000
625
446
-55 to 150
Units
V
V
mA
mW
°C
200 °C/W
280
Tape Width
8mm
Quantity
3000units
©2006 Fairchild Semiconductor Corporation
FDY4000CZ Rev. B
1
www.fairchildsemi.com

1 page




FDY4000CZ pdf
Typical Characteristics Q1 (N-Channel)
5
ID = 600mA
4
3
2
VDS = 5V
10V
15V
1
0
0 0.2 0.4 0.6 0.8
Qg, GATE CHARGE (nC)
Figure 7. Gate Charge Characteristics
1
10
1 RDS(ON) LIMIT
1ms
10ms
0.1 VGS = 4.5V
SINGLE PULSE
RθJA = 280oC/W
TA = 25oC
0.01
0.1
1
100ms
10s
1s
DC
10
VDS, DRAIN-SOURCE VOLTAGE (V)
Figure 9. Maximum Safe Operating Area
100
100
90 f = 1MHz
VGS = 0 V
80
70 Ciss
60
50
40
30 Coss
20
10
Crss
0
0
4
8 12 16 20
VDS, DRAIN TO SOURCE VOLTAGE (V)
Figure 8. Capacitance vs. Drain to source
voltage
30
SINGLE PULSE
25 RθJA = 280°C/W
TA = 25°C
20
15
10
5
0
0.0001 0.001 0.01 0.1 1 10 100 1000
t1, TIME (sec)
Figure 10. Single Pulse Maximum Power
Dissipation
1
D=0.5
0.2
0.1
0.05
0.02
0.01
0.1
0.01
0.0001
SINGLE PULSE
0.001
0.01
0.1
t1, TIME (sec)
1
RθJA(t) = r(t) * RθJA
RθJA =280 °C/W
P(pk)
t1
t2
TJ - TA = P * RθJA(t)
Duty Cycle, D = t1 / t2
10 100 1000
Figure 11. Transient Thermal Response Curve
Thermal characterization performed using the conditions described in Note 1b.
Transient thermal response will change depending on the circuit board design.
FDY4000CZ Rev. B
5 www.fairchildsemi.com

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