MIC4452BM Micrel Inc, MIC4452BM Datasheet - Page 11

IC DRIVER MOSF 12A LO SIDE 8SOIC

MIC4452BM

Manufacturer Part Number
MIC4452BM
Description
IC DRIVER MOSF 12A LO SIDE 8SOIC
Manufacturer
Micrel Inc
Datasheets

Specifications of MIC4452BM

Rise Time
20ns
Mounting Type
Surface Mount
Configuration
Low-Side
Input Type
Non-Inverting
Delay Time
15ns
Current - Peak
12A
Number Of Configurations
1
Number Of Outputs
1
Voltage - Supply
4.5 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Package / Case
8-SOIC (3.9mm Width)
Device Type
MOSFET
Driver Case Style
SOIC
No. Of Pins
8
Peak Output High Current, Ioh
12A
Supply Voltage Min
4.5V
Peak Reflow Compatible (260 C)
No
Number Of Drivers
1
Driver Configuration
Non-Inverting
Driver Type
Low Side
Input Logic Level
CMOS/TTL
Fall Time
50ns
Propagation Delay Time
60ns
Operating Supply Voltage (max)
18V
Peak Output Current
12mA
Power Dissipation
1.04W
Output Resistance
0.8Ohm
Operating Supply Voltage (min)
4.5V
Turn Off Delay Time
80fs
Turn On Delay Time (max)
40ps
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
8
Package Type
SOIC
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
High Side Voltage - Max (bootstrap)
-
Lead Free Status / RoHS Status
Not Compliant, Contains lead / RoHS non-compliant
Transition Power Dissipation
Transition power is dissipated in the driver each time its
output changes state, because during the transition, for
a very brief interval, both the N- and P-channel
MOSFETs
simultaneously, and a current is conducted through them
from V
approximately:
where (A × s) is a time-current factor derived from the
typical characteristic curve “Crossover Energy vs.
Supply Voltage.” Total power (P
described is:
Definitions
C
D = Duty Cycle expressed as the fraction of time the
input to the driver is high.
f = Operating Frequency of the driver in Hertz
I
inputs are high and neither output is loaded.
I
inputs are low and neither output is loaded.
I
P
P
load in Watts.
P
P
changes states (“shoot-through current”) in Watts.
NOTE: The “shoot-through” current from a dual
transition (once up, once down) for both drivers is
stated in Figure 7 in ampere-nanoseconds. This
figure must be multiplied by the number of
repetitions per second (frequency) to find Watts.
R
V
H
L
D
Micrel Inc.
January 2011
D
L
Q
T
S
L
O
= Power supply current drawn by a driver when both
= Output current from a driver in Amps.
= Power supply current drawn by a driver when both
= Load Capacitance in Farads.
= Power supply voltage to the IC in Volts.
= Total power dissipated in a driver in Watts.
= Power dissipated in the driver due to the driver’s
= Power dissipated in a quiescent driver in Watts.
= Output resistance of a driver in Ohms.
= Power dissipated in a driver when the output
S
P
P
to ground. The transition power dissipation is
T
D
= 2 f V
= P
in
L
+ P
S
the
(A × s)
Q
+ P
output
T
totem-pole
D
) then, as previously
are
ON
11
MIC4451/4452
M9999-011811

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