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PDF K3798 Data sheet ( Hoja de datos )

Número de pieza K3798
Descripción MOSFET ( Transistor ) - 2SK3798
Fabricantes Toshiba Semiconductor 
Logotipo Toshiba Semiconductor Logotipo



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No Preview Available ! K3798 Hoja de datos, Descripción, Manual

2SK3798
TOSHIBA Field Effect Transistor Silicon N Channel MOS Type (π-MOSIV)
www.DataSheet4U.com
2SK3798
Switching Regulator Applications
Unit: mm
Low drain-source ON resistance: RDS (ON) = 2.5Ω (ty p.)
High forward transfer admittance: |Yfs| = 2.8 S (typ.)
Low leakage current: IDSS = 100 μA (VDS = 720 V)
Enhancement-mode: Vth = 2.0~4.0 V (VDS = 10 V, ID = 1 mA)
Maximum Ratings (Ta = 25°C)
Characteristics Sy
Drain-source voltage
Drain-gate voltage (RGS = 20 k)
Gate-source voltage
Drain current
DC ( Note 1)
Pulse (t = 1 ms)
( Note 1)
Drain power dissipation (Tc = 25°C)
Single pulse avalanche energy
(Note 2)
Avalanche current
Repetitive avalanche energy (Note 3)
Channel temperature
Storage temperature range
mbol
VDSS
VDGR
VGSS
ID
IDP
PD
EAS
IAR
EAR
Tch
Tstg
Thermal Characteristics
Rating
900
900
±30
4
12
40 W
345
4
4.0
150
-55~150 °
Unit
V
V
V
A
mJ
A
mJ
°C
C
1: Gate
2: Drain
3: Source
JEDEC
JEITA SC-
67
TOSHIBA
2-10U1B
Weight : 1.7 g (typ.)
Characteristics Sy
mbol
Max Unit
Thermal resistance, channel to case
Thermal resistance, channel to ambient
Rth (ch-c)
Rth (ch-a) 62.
3.125
5
°C/W
°C/W
Note 1: Please use devices on conditions that the channel temperature is below 150°C.
Note 2: VDD = 90 V, Tch = 25°C, L = 39.6 mH, IAR = 4.0 A, RG = 25
Note 3: Repetitive rating: Pulse width limited by maximum channel temperature
This transistor is an electrostatic sensitive device. Please handle with caution.
1
2
3
1 2005-01-26
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K3798 pdf
2SK3798
www.DataSheet4U.com
10
rth – tw
1 Duty=0.5
0.2
0.1
0.1 0.05
0.02
0.01
0.01
0.001
10μ
100μ 1
PDM
SINGLE PULSE
t
T
Duty = t/T
Rth (ch-c) = 3.125°C/W
10
100
1 10
PULSE WIDTH tw (s )
SAFE OPERATING AREA
100
ID max (PULSED) *
10
ID max (CONTINUOUS) *
1
DC OPERATION
Tc = 25°C
100 µs *
1 ms *
0.1
SINGLE NONREPETITIVE PULSE Tc=25
CURVES MUST BE DERATED LINEARLY WITH
INCREASE IN TEMPERATURE.
0.01
1 10 100
DRAIN-SOURCE VOLTAGE VDS
1000
( V)
EAS – Tch
400
300
200
100
0
25
50
75
100 125
150
CHANNEL TEMPERATURE (INITIAL)
Tch (°C)
15 V
15 V
BVDSS
IAR
VDD
VDS
TEST CIRCUIT
WAVE FORM
RG = 25
VDD = 90 V, L = 39.6mH
ΕAS
=
1
2
L
I2
⎜⎜⎝⎛
BVDSS
BVDSS VDD
⎟⎟⎠⎞
5 2005-01-26

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