参数资料
型号: MIC5021YN
厂商: Micrel Inc
文件页数: 7/10页
文件大小: 0K
描述: IC DRIVER MOSFET HI SIDE HS 8DIP
标准包装: 50
配置: 高端
输入类型: 非反相
延迟时间: 500ns
配置数: 1
输出数: 1
电源电压: 12 V ~ 36 V
工作温度: -40°C ~ 85°C
安装类型: 通孔
封装/外壳: 8-DIP(0.300",7.62mm)
供应商设备封装: 8-PDIP
包装: 管件
产品目录页面: 1110 (CN2011-ZH PDF)
其它名称: 576-1240
1 8
10μF
N-Channel
TTL Input
Power MOSFET
0.01
MIC5021
μF
10μF
2 7
3
6
(IRF540)
MIC5021
Circuits Without Current Sensing
V+
MIC5021
V DD V BOOST
2 7
Input Gate
3 6
C T Sense-
4 5 μF
Gnd Sense+
Load
Figure 4a. Connecting Sense to Source
V+
Micrel, Inc.
The diode should have a peak forward current rating greater
than the load current. This is because the current through
the diode is the same as the load current at the instant the
MOSFET is turned off.
+20V to +36V
(+24V)
0.01
1 8
V DD V BOOST
TTL Input Input Gate N-Channel
Power MOSFET
C T Sense-
4 5
Gnd Sense+
R S E N S E
(< 0.08 ?)
10μF
TTL Input
1
2
3
4
MIC5021
V DD V BOOST
Input Gate
C T Sense-
Gnd Sense+
8
7
6
5
0.01
μF
N-Channel
Power MOSFET
Solenoid
(24V, 47 ?)
Figure 5. Solenoid Driver
with Current Sensing
Schottky
Diode
(1N5822)
Input Gate
3
6
C T
4
5
Load
Figure 4b. Connecting Sense to Supply
Current sensing may be omitted by connecting the SENSE +
and SENSE – pins to the source of the MOSFET or to the sup-
ply. Connecting the SENSE pins to the supply is preferred for
inductive loads. Do not connect the SENSE pins to ground.
Inductive Load Precautions
Circuits controlling inductive loads, such as solenoids (Figure
5) and motors, require precautions when controlled by the
MIC5021. Wire wound resistors, which are sometimes used
to simulate other loads, can also show signi?cant inductive
properties.
An inductive load releases stored energy when its current
?ow is interrupted (when the MOSFET is switched off). The
voltage across the inductor reverses and the inductor at-
tempts to force current ?ow. Since the circuit appears open
(the MOSFET appears as a very high resistance) a very large
negative voltage occurs across the inductor.
Limiting Inductive Spikes
The voltage across the inductor can be limited by connect-
ing a Schottky diode across the load. The diode is forward
biased only when the load is switched off. The Schottky diode
clamps negative transients to a few volts. This protects the
MOSFET from drain-to-source breakdown and prevents the
transient from damaging the charge pump by way of the boost
capacitor. Also see Sense Pin Considerations below.
Sense Pin Considerations
The sense pins of the MIC5021 are sensitive to negative volt-
ages. Forcing the sense pins much below –0.5V effectively
reverses the supply voltage on portions of the driver resulting
in unpredictable operation or damage.
MIC5021
1 8
V DD
2 7
M OS FE T
Turnoff
~V DD
0V
Negative
Spike
Forward drop across diodes
allows leads to go negative. Inductive
Load
Current flows from ground (0V)
through the diodes to the load
during negative transcients.
Figure 6. Inductive Load Turnoff
Figure 6 shows current ?owing out of the sense leads of an
MIC5021 during a negative transient (inductive kick). Internal
Schottky diodes attempt to limit the negative transient by
maintaining a low forward drop.
Although the internal Schottky diodes can protect the driver
in low-current resistive applications, they are inadequate for
inductive loads or the lead inductance in high-current resis-
tive loads. Because of their small size, the diodes’ forward
voltage drop quickly exceeds 0.5V as current increases.
July 2005
7
MIC5021
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