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DS80C400 Network Microcontroller
23 of 96
OWSTP
PIN TIMING CHARACTERISTICS (Note 1)
(V
CC3
= 3.0V to 3.6V, V
CC1
= 1.8V ±10%, T
A
= -40°C to +85°C.)
STANDARD OVERDRIVE
PARAMETER SYMBOL
MIN MAX MIN MAX
UNITS
Active Time for Presence Detect
t
ON1
6.4 8
0.8
1
m
s
Active Time for Presence Detect Recovery
t
ON2
8 10 8 10
m
s
Active Time for Write 1 Recovery (Notes 2, 3)
t
ON3
51.2 64
7.2 9
m
s
Active Time for Write 0 Recovery (Notes 2, 3)
t
ON4
6.4 8
0.8
1
m
s
Delay Time for Presence Detect
t
DLY1
0.8 1
0.8
1
m
s
Delay Time for Presence Detect Recovery (Note 4)
t
DLY2
399.2 499
31.2
39
m
s
Delay Time for Write 1/Write 0 Recovery
t
DLY3
0.8 1
0.8
1
m
s
Turn-Off Time for 1-Wire Reset
t
OFF1
1.6 2
1.6
2
m
s
Turn-Off Time for Write 1/Write 0 (Note 5)
t
OFF2
0.8 1
0.8
1
m
s
Note 1:
Specifications to -40
°
C are guaranteed by design and not production tested.
Note 2:
There is no
OWSTP
timing difference for sending out and receiving bits within a byte. The difference comes when the last bit of the byte
has been completely sent. At this point, the signal is either enabled continuously until the next reset or time slot begins, or enabled only
for active time write 1 or write 0.
Note 3:
When performing a read versus a write time slot, the master provides the same active time for write 1 and write 0. However, the
Schmitt-triggered input from the OW line is sensed every 1
m
s for a high value. If OW is high, the
OWSTP
signal is enabled. If the OW
line is low, the
OWSTP
signal remains disabled until a high state is sensed. In all write time slots, a high is sensed immediately.
Note 4:
This parameter is the time delay until the master begins to monitor the OW pin level. If the line is already high, then
OWSTP
is enabled.
If not, it waits to enable
OWSTP
until the next state machine clock (1
m
s or 50ns) after the OW line recovers.
Note 5:
The very first bit in a byte has an extended turn-off time of 4
m
s because of the order of states that the 1-Wire master state machine
must go through.
OWSTP PIN TIMING
Содержание DS80C400
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