IRFZ46ZLPBF International Rectifier, IRFZ46ZLPBF Datasheet - Page 7

MOSFET N-CH 55V 51A TO-262

IRFZ46ZLPBF

Manufacturer Part Number
IRFZ46ZLPBF
Description
MOSFET N-CH 55V 51A TO-262
Manufacturer
International Rectifier
Series
HEXFET®r
Datasheet

Specifications of IRFZ46ZLPBF

Fet Type
MOSFET N-Channel, Metal Oxide
Fet Feature
Standard
Rds On (max) @ Id, Vgs
13.6 mOhm @ 31A, 10V
Drain To Source Voltage (vdss)
55V
Current - Continuous Drain (id) @ 25° C
51A
Vgs(th) (max) @ Id
4V @ 250µA
Gate Charge (qg) @ Vgs
46nC @ 10V
Input Capacitance (ciss) @ Vds
1460pF @ 25V
Power - Max
82W
Mounting Type
Through Hole
Package / Case
TO-262-3 (Straight Leads)
Transistor Polarity
N-Channel
Drain-source Breakdown Voltage
55 V
Gate-source Breakdown Voltage
20 V
Continuous Drain Current
51 A
Power Dissipation
82 W
Mounting Style
Through Hole
Gate Charge Qg
31 nC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
*IRFZ46ZLPBF

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IRFZ46ZLPBF
Manufacturer:
INTERNATIONAL RECTIFIER
Quantity:
30 000
Part Number:
IRFZ46ZLPBF
Manufacturer:
IR
Quantity:
20 000
www.irf.com
1000
100
0.1
10
70
60
50
40
30
20
10
1.0E-06
1
0
Fig 16. Maximum Avalanche Energy
25
Starting T J , Junction Temperature (°C)
Duty Cycle = Single Pulse
50
0.01
0.05
0.10
vs. Temperature
TOP
BOTTOM 1% Duty Cycle
I D = 31A
75
1.0E-05
Fig 15. Typical Avalanche Current vs.Pulsewidth
100
Single Pulse
125
150
1.0E-04
175
tav (sec)
Notes on Repetitive Avalanche Curves , Figures 15, 16:
(For further info, see AN-1005 at www.irf.com)
1. Avalanche failures assumption:
2. Safe operation in Avalanche is allowed as long asT
3. Equation below based on circuit and waveforms shown in
4. P
5. BV = Rated breakdown voltage (1.3 factor accounts for
6. I
7. T
t
Purely a thermal phenomenon and failure occurs at a
temperature far in excess of T
every part type.
not exceeded.
Figures 12a, 12b.
avalanche pulse.
voltage increase during avalanche).
T
D = Duty cycle in avalanche = t
Z
av =
av
thJC
jmax
D (ave)
= Allowable avalanche current.
=
Average time in avalanche.
(D, t
Allowable rise in junction temperature, not to exceed
(assumed as 25°C in Figure 15, 16).
= Average power dissipation per single
av
1.0E-03
P
) = Transient thermal resistance, see figure 11)
D (ave)
= 1/2 ( 1.3·BV·I
I
E
Allowed avalanche Current vs
avalanche
assuming
avalanche losses
av
AS (AR)
= 2DT/ [1.3·BV·Z
= P
D (ave)
jmax
pulsewidth,
Tj = 25°C due to
1.0E-02
av
av
. This is validated for
·f
) = DT/ Z
·t
th
av
]
thJC
tav
jmax
1.0E-01
7
is

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