參數(shù)資料
型號(hào): SP791EN
英文描述: Low Power Microprocessor Supervisory with Battery Switch-Over
中文描述: 低功耗微處理器監(jiān)控與電池開(kāi)關(guān)過(guò)
文件頁(yè)數(shù): 11/19頁(yè)
文件大小: 202K
代理商: SP791EN
11
SP791DS/08 SP791 Low Power Microprocessor Supervisory with Battery Switch-Over
Copyright 2000 Sipex Corporation
The 10ns maximum CE propagation from CE
IN
to CE
OUT
enables the
SP791
to be used with
most
μ
Ps.
CHIP-ENABLE INPUT
CE
IN
is high impedance (disabled mode) while
RESET is asserted.
During a power-down sequence where V
CC
falls
below 4.65V, CE IN assumes a high impedance
state when the voltage at CE
IN
goes high or
15
μ
s after RESET is asserted, whichever
occurs first, (
Figure 7
).
During a power-up sequence, CE
IN
remains
high impedance until RESET is deasserted.
In the high-impedance mode, the leakage
currents into this input are less than 1
μ
A over
temperature. In the low-impedance mode, the
impedance of CE
IN
appears as a 65
resistor
in series with the load at CE
OUT
.
The propagation delay through the CE
transmission gate depends on both the source
impedance of the drive to CE
IN
and the
capacitive loading on CE
OUT
(see the Chip-
Enable Propagation Delay vs. CE
OUT
Load
Capacitance graph in the
Typical Operating
Characteristics).
The CE propagation delay is
defined from the 50% point on CE
IN
to the 50%
point on CE
OUT
using a 50
driver with 50pF
load capacitance as in
Figure 8
. For minimum
propagation delay, minimize the capacitive load
at CE
OUT
and use a low output-impedance
driver.
CHIP-ENABLE OUTPUT
In the enabled mode, the impedance of CE
OUT
is equivalent to 65
in series with the source
driving CE
IN
. In the disabled mode, the 65
transmission gate is off and CE
OUT
is actively
pulled to V
OUT
. This source turns off when the
transmission gate is enabled.
Figure 8. CE Propagation Delay Test Circuit
Figure 7. Reset and Chip-Enable Timing
+5V
Vcc
50
Driver
GND
CE
IN
CE
OUT
50pF
C
LOAD
C orporation
Vcc
RESET
CE
IN
CE
OUT
RESET
15
μ
s
100
μ
s
100
μ
s
THRESHOLD
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