MIC4451YN Micrel Inc, MIC4451YN Datasheet - Page 8

IC DRIVER MOSF 12A LO SIDE 8DIP

MIC4451YN

Manufacturer Part Number
MIC4451YN
Description
IC DRIVER MOSF 12A LO SIDE 8DIP
Manufacturer
Micrel Inc
Datasheet

Specifications of MIC4451YN

Configuration
Low-Side
Input Type
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
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Device Type
Low Side
Module Configuration
Low Side
Peak Output Current
12A
Output Resistance
0.8ohm
Input Delay
15ns
Output Delay
35ns
Supply Voltage Range
4.5V To 18V
Driver Case Style
DIP
Number Of Drivers
1
Driver Configuration
Inverting
Driver Type
Low Side
Input Logic Level
CMOS/TTL
Rise Time
40ns
Fall Time
50ns
Propagation Delay Time
60ns
Operating Supply Voltage (max)
18V
Power Dissipation
960mW
Operating Supply Voltage (min)
4.5V
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Through Hole
Pin Count
8
Package Type
PDIP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
High Side Voltage - Max (bootstrap)
-
Lead Free Status / Rohs Status
Compliant
Other names
576-1209

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MIC4451YN
Manufacturer:
ATMEL
Quantity:
4 188
Part Number:
MIC4451YN
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Applications Information
Supply Bypassing
Charging and discharging large capacitive loads quickly
requires large currents. For example, changing a
10,000pF load to 18V in 50ns requires 3.6A.
The MIC4451/4452 has double bonding on the supply
pins, the ground pins and output pins. This reduces
parasitic lead inductance. Low inductance enables large
currents to be switched rapidly. It also reduces internal
ringing that can cause voltage breakdown when the
driver is operated at or near the maximum rated voltage.
Internal ringing can also cause output oscillation due to
feedback. This feedback is added to the input signal
since it is referenced to the same ground.
CONT ROL 1 80° T O 3 60 °
Micrel Inc.
January 2011
C ONT R OL 0° TO 180°
CONDUCTION ANGLE
CONDUCTION ANGLE
φ 1 D R I V E S I G N A L
0.1µF
50V
0.1µF
WIMA
M KS2
2
+15
MIC4451
1
4
Figure 3. Direct Motor Drive
8
5
D R I V E
LOGIC
+
(x2) 1N4448
6, 7
U NI TE D CH EM CO N S X E
1µF
50V
MKS2
5.6 kΩ
560 Ω
MIC4451
MIC4452
V DD
V DD
560µF 50V
PHASE 1 OF 3 PHASE MOTOR
D R I VER U SI N G M I C 44 51 / 44 52
1 µ F
1 µ F
φ
+
1
100µF 50V
Figure 4. Self Contained Voltage Doubler
BYV 10 (x 2)
M
φ
2
V DD
V DD
+
φ
3
8
To guarantee low supply impedance over a wide
frequency range, a parallel capacitor combination is
recommended for supply bypassing. Low inductance
ceramic disk capacitors with short lead lengths (< 0.5
inch) should be used. A 1µF low ESR film capacitor in
parallel with two 0.1µF low ESR ceramic capacitors,
(such as AVX RAM GUARD
bypassing. Connect one ceramic capacitor directly
between pins 1 and 4. Connect the second ceramic
capacitor directly between pins 8 and 5.
Grounding
The high current capability of the MIC4451/4452
demands careful PC board layout for best performance.
Since the MIC4451 is an inverting driver, any ground
lead impedance will appear as negative feedback which
can degrade switching speed. Feedback is especially
noticeable with slow-rise time inputs. The MIC4451 input
structure includes 200mV of hysteresis to ensure clean
transitions and freedom from oscillation, but attention to
layout is still recommended.
Figure 5 shows the feedback effect in detail. As the
MIC4451 input begins to go positive, the output goes
negative and several amperes of current flow in the
ground lead. As little as 0.05Ω of PC trace resistance
can produce hundreds of millivolts at the MIC4451
ground pins. If the driving logic is referenced to power
ground, the effective logic input level is reduced and
oscillation may result.
To insure optimum performance, separate ground traces
should be provided for the logic and power connections.
Connecting the logic ground directly to the MIC4451
GND pins will ensure full logic drive to the input and
ensure fast output switching. Both of the MIC4451 GND
pins should, however, still be connected to power
ground.
®
), provides adequate
MIC4451/4452
M9999-011811

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