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MIC2563A-1BSM Datasheet(PDF) 4 Page - Micrel Semiconductor

Part # MIC2563A-1BSM
Description  Dual-Slot PCMCIA/CardBus Power Controller
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Manufacturer  MICREL [Micrel Semiconductor]
Direct Link  http://www.micrel.com
Logo MICREL - Micrel Semiconductor

MIC2563A-1BSM Datasheet(HTML) 4 Page - Micrel Semiconductor

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MIC2563A
Micrel
M9999-110503
4
March 2004
Symbol
Parameter
Condition
Min
Typ
Max
Units
VPP Switching Time (See Figure 1) continued
t14
Output Turn-Off Delay Time(4, 5)
VPP OUT = 3.3V to Hi-Z
200
1000
ns
t15
VPP OUT = 5V to Hi-Z
200
1000
ns
t16
VPP OUT = 12V to Hi-Z
200
1000
ns
t11
Output Turn-Off Fall Time(4)
VPP OUT = 90% to 10% of 3.3V
50
1000
ns
t12
VPP OUT = 90% to 10% of 5V
50
1000
ns
t13
VPP OUT = 90% to 10% of 12V
300
2000
ns
VCC Output
ICCSC
Short Circuit Current Limit
VCC OUT = 0
1
1.5
A
RO
Switch Resistance
Select VCC OUT = 3.3V
100
150
m
ICC OUT = –1A (Sourcing)
Select VCC OUT = 5V
70
100
m
ICC OUT = –1A (Sourcing)
Select VCC OUT = clamped to ground
500
3900
ICC OUT = 0.1mA (Sinking)
VCC Switching Time (See Figure 2)
t1
Output Turn-On Delay Time(6)
VCC OUT = 0V to 10% of 3.3V
300
1500
µs
t2
VCC OUT = 0V to 10% of 5.0V
750
3000
µs
t3
Output Rise Time(6)
VCC OUT = 10% to 90% of 3.3V
200
700
2500
µs
t4
VCC OUT = 10% to 90% of 5V
200
1500
6000
µs
t7
Output Turn-Off Delay(6, 7)
VCC OUT = 3.3V
2.4
8
ms
t8
VCC OUT = 5V
2.8
8
ms
t5
Output Fall Time(6)
VCC OUT = 90% to 10% of 3.3V
100
240
1000
µs
t6
VCC OUT = 90% to 10% of 5.0V
100
600
2000
µs
Power Supply
ICC5
VCC5 IN Supply Current (5V)
VCC OUT = 5V or 3.3V, ICC OUT = 0
8
50
µA
VCC OUT = 0V (Sleep Mode)
0.2
10
µA
ICC3
VCC3 IN Supply Current (3.3V)
(8)
VCC OUT = 5V or 3.3V, ICC OUT = 0
40
100
µA
VCC OUT = 0V (Sleep Mode)
0.1
10
µA
IPP IN
VPP IN Supply Current (12V)
(9)
VPP OUT = 3.3V or 5V, IPP OUT = 0
0.3
4
µA
VPP OUT = Hi-Z, 0 or VPP
0.3
4
µA
VCC5
Operating Input Voltage (5V)
VCC5 IN not required for operation
5.0
6
V
VCC3
Operating Input Voltage (3.3V)(8)
3.0
3.3
6
V
VPP IN
Operating Input Voltage (12V)
VPP IN not required for operation
(10)
12.0
14.5
V
Thermal Shutdown
TSD
Thermal Shutdown Temperature
130
°C
Notes:
4. RL = 100Ω connected to ground.
5. Delay from commanding Hi-Z or 0V to beginning slope. Does not apply to current limit or overtemperature shutdown conditions.
6. RL = 10Ω connected to ground.
7. Delay from commanding Hi-Z or 0V to beginning slope. Does not apply to current limit or overtemperature shutdown conditions.
8. The MIC2563A uses VCC3 IN for operation. For single 5V supply systems, connect 5V to both VCC3 IN and VCC5 IN. See “Applications Information”
section for further details.
9. VPP IN is not required for operation.
10. VPP IN must be either high impedance or greater than or approximately equal to the highest voltage VCC in the system. For example, if both 3.3V
and 5V are connected to the MIC2563A, VPP IN must be either 5V, 12V, or high impedance.


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