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CMPWR025 数据表(PDF) 7 Page - ON Semiconductor

部件名 CMPWR025
功能描述  Dual Input Smart Power Switch
PDF  8 Pages
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制造商  ONSEMI [ON Semiconductor]
网页  http://www.onsemi.com
标志 ONSEMI - ON Semiconductor

CMPWR025 数据表(HTML) 7 Page - ON Semiconductor

  CMPWR025 Datasheet HTML 1Page - ON Semiconductor CMPWR025 Datasheet HTML 2Page - ON Semiconductor CMPWR025 Datasheet HTML 3Page - ON Semiconductor CMPWR025 Datasheet HTML 4Page - ON Semiconductor CMPWR025 Datasheet HTML 5Page - ON Semiconductor CMPWR025 Datasheet HTML 6Page - ON Semiconductor CMPWR025 Datasheet HTML 7Page - ON Semiconductor CMPWR025 Datasheet HTML 8Page - ON Semiconductor  
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CMPWR025
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7
turned off, due to power supply inductance. This has no
effect on the output voltage.
Figure 7. VCC1 Rising form 0 V to 5 V, VCC2 = 5 V.
Ch1 and Ch2: VCC1 and VCC2, offset = 5 V.
Ch3: VOUT, offset = 5 V.
VCC1 Falling from 5 V to 0 V (VCC2 = 5 V). Figure 8
shows the primary supply VCC1 becoming deselected during
a 5 V to 0 V transition. The test conditions are the same as
in Figure 7. Channel 2 switch is turned on as soon as VCC2
and VCC1 are about 200 mV. A negative glitch appears on
VCC2, when channel 2 is turned on. This has no effect on the
output voltage.
Figure 8. VCC1 Falling form 0 V to 5 V (VCC2 = 5 V).
Ch1 and Ch2: VCC1 and VCC2, offset = 5 V.
Ch3: VOUT, offset = 5 V.
VCC1 Rising (VCC2 = 5 V). Figure 9 is a bad test set−up
that shows what may happen if either power supply source
resistance RS1 or RS2 is too large. In this example, RS2 is
increased to 0.3
W.
Figure 9. VCC1 Rising (VCC2@ = 5 V).
Ch1 and Ch2: VCC1 and VCC2@, offset = 5 V.
Ch3: VOUT, offset = 3.3 V.
The oscillation during the power transition is caused by
the cumulative voltage change across RS1 and RS2 being
greater than the hysteresis. The behavior is exacerbated by:
a high load current,
too many parasitics on power lines, and
noisy power sources.
To avoid such behavior, the solution is to reduce the load
or parasitic capacitance on power supply and layout, or use
a more stable power supply.
Parallel Operation
Two CMPWR025 devices may be symmetrically ganged
in parallel to increase total current capacity. Careful
attention must be paid to minimizing series resistance and
PCB parasitics during layout, both between the dual
CMPWR025’s inputs and also between the supplies and the
devices, as described above.
In a well designed layout, a pair of CMPWR025’s can
provide an output approaching twice that of a single device.
See Application Note AP−211 for more information.



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