參數(shù)資料
型號: CL-PS6700
廠商: Cirrus Logic, Inc.
英文描述: Low-Power PC Card Controller for the CL-PS7111
中文描述: 低功耗PC卡控制器的CL - PS7111
文件頁數(shù): 34/48頁
文件大?。?/td> 562K
代理商: CL-PS6700
PRELIMINARY DATA BOOK v1.0
November 1997
34
ELECTRICAL SPECIFICATIONS
C
I R R U S
L
O G I C
C
O N F I D E N T I A L
, N D A R
E Q U I R E D
CL-PS6700
Low-Power PC Card Controller
a
Can be run at 4.5 to 5.5 V for higher performance, but at a cost of increased power consumption (tbd).
b
As low as 2.7 V.
c
This is system-design dependent, since it supplies power to the pads only.
Table 5-2.
DC Specifications
Symbol
Parameter
MIN
Typical
MAX
Unit
Conditions
V
CC
5V
V
CC
3V
V
ILC
V
IHC
I
OL6
I
OL12
IOH6
IOH12
VOL
V
OH
I
L
I
LPD
I
PU
C
IN
C
OUT
Power supply voltage
Power supply voltage
Input low voltage CMOS
Input high voltage CMOS
Output low current – 2mA type
Output low current – 8mA type
Output high current – 2mA type
Output high current – 8mA type
Output low voltage
Output high voltage
Input leakage
Input leakage – power down type
Internal pull-up current
Input capacitance
Output capacitance
Power supply current,
Active mode – V3V_CORE
Power supply current,
Idle mode – V3V_CORE
Power supply current,
Active mode – V3V_O
Power supply current,
Idle mode – V3V_O
Power supply current,
Standby mode – V3V_O
Power supply current,
operating (Run) – V5V_O
Power supply current,
Idle mode – V5V_O
Power supply current,
Standby mode – V5V_O
Power supply current,
Active mode – V3V_CORE
Power supply current,
Suspend (Idle) – V3V_CORE
Power supply current,
suspend (Idle) – V3V_O
5.5
3.6
V
V
V
V
Normal operation
Normal operation
a
Normal operation
Normal operation
Normal operation: V
CC
3V = MIN
Normal operation: V
CC
3V = MIN
Normal operation: V
CC
3V = MIN
Normal operation: V
CC
3V = MIN
Normal operation: at rated I
OL
Normal operation: at rated I
OH
Normal operation: 0 < V
IN
< V
CC
Pad power-down active
Normal operation
Normal operation
Normal operation
3.0
0.2 V
CC
0.7 V
CC
2
8
1
4
0.5
mA
mA
mA
mA
V
V
μ
A
μ
A
μ
A
pF
pF
V
CC
0.5
10
1
30
10
1
300
10
10
I
CCtot1
15
<25
mA
V
CC
3V = 3.3 V, PCLK = 18 MHz
I
CCtot2
3
<6
mA
V
CC
3V = 3.3 V, PCLK = DC
b
I
CCtot4
YMMV
c
mA
V
CC
3V = 3.3 V, PCLK = 18 MHz
I
CCtot5
<20
μ
A
V
CC
3V = 3.3 V, PCLK = DC
I
CCtot6
<20
μ
A
V
CC
3V = Lithium backup V
PCLK = DC (stopped)
I
CCtot7
YMMV
c
mA
V
CC
5V = 5.0 V, PCLK = 18 MHz
I
CCtot8
<20
μ
A
V
CC
5V = 5.0 V, PCLK = DC
I
CCtot9
0
μ
A
V
CC
5V = 0 V
PCLK = DC
I
CCtot10
20
<35
mA
V
CC
3V = 5.0 V, PCL = 18 MHz
I
CCtot11
6
<12
mA
V
CC
3V = 5.0 V, PCLK = DC
I
CCtot13
<20
μ
A
V
CC
3V = 5.0 V, PCLK = DC
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