MIC4103YM Micrel Inc, MIC4103YM Datasheet - Page 14

IC MOSFET DRIVER 100V CMOS 8SOIC

MIC4103YM

Manufacturer Part Number
MIC4103YM
Description
IC MOSFET DRIVER 100V CMOS 8SOIC
Manufacturer
Micrel Inc
Datasheets

Specifications of MIC4103YM

Configuration
Half Bridge
Input Type
Non-Inverting
Delay Time
24ns
Current - Peak
2A
Number Of Configurations
1
Number Of Outputs
2
High Side Voltage - Max (bootstrap)
118V
Voltage - Supply
9 V ~ 16 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Device Type
MOSFET
Module Configuration
Half Bridge
Peak Output Current
3A
Output Resistance
2.5ohm
Input Delay
24ns
Output Delay
24ns
Supply Voltage Range
9V To 16V
Driver Case
RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
576-1589
in and around the MIC4103 and MIC4104 drivers require
proper placement and trace routing of all components.
Improper placement may cause degraded noise immunity,
false switching, excessive ringing or circuit latch-up.
Figure 9 shows the critical current paths when the driver
outputs go high and turn on the external MOSFETs. It also
helps demonstrate the need for a low impedance ground
plane. Charge needed to turn-on the MOSFET gates
comes from the decoupling capacitors C
Current in the low-side gate driver flows from C
the internal driver, into the MOSFET gate and out the
Source. The return connection back to the decoupling
capacitor is made through the ground plane. Any
inductance or resistance in the ground return path causes
a voltage spike or ringing to appear on the source of the
MOSFET. This voltage works against the gate drive
voltage and can either slow down or turn off the MOSFET
during the period where it should be turned on.
Current in the high-side driver is sourced from capacitor C
and flows into the HB pin and out the HO pin, into the gate
of the high side MOSFET. The return path for the current
is from the source of the MOSFET and back to capacitor
C
a low impedance ground plane so the trace connections in
this critical path should be short and wide to minimize
parasitic
impedance between the MOSFET source and the
decoupling capacitor causes negative voltage feedback
which fights the turn-on of the MOSFET.
It is important to note that capacitor CB must be placed
close to the HB and HS pins. This capacitor not only
provides all the energy for turn-on but it must also keep HB
pin noise and ripple low for proper operation of the high-
side drive circuitry.
Figure 10 shows the critical current paths when the driver
outputs go low and turn off the external MOSFETs. Short,
Micrel
October 2007
B
. The high-side circuit return path usually does not have
High-side drive turn-on
inductance.
current path
plane
Figure 9. Turn-On Current Paths
gnd
Low -side drive turn-on
current path
C
Vdd
C
B
As
Vdd
HB
HO
HS
with
Level
shift
the
Vss
LO
LO
LI
HI
low-side
VDD
VDD
plane
gnd
and C
through
circuit,
B
B
.
14
low impedance connections are important during turn-off
for the same reasons given in the turn-on explanation.
Remember that during turn-off current flowing through the
internal diode replenishes charge in the bootstrap
capacitor, CB.
The following circuit guidelines should be adhered to for
optimum circuit performance:
1. The V
2. A ground plane should be used to minimize
3. Trace out the high di/dt and dv/dt paths, as shown
placed close to the supply and ground pins. It is
critical that the trace length between the high side
decoupling capacitor (C
be minimized to reduce trace inductance.
parasitic inductance and impedance of the return
paths. The MIC4103 is capable of greater than 2A
peak currents and any impedance between the
MIC4103, the decoupling capacitors, and the
external MOSFET will degrade the performance of
the driver.
in Figures 9 and 10 and minimize trace length and
loop area for these connections. Minimizing these
parameters decreases the parasitic inductance
and the radiated EMI generated by fast rise and
fall times.
Figure 10. Turn-Off Current Paths
DD
and HB bypass capacitors must be
B
) and the HB & HS pins
M9999-100107-B
MIC4103/4104

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