DS2480B+T&R Maxim Integrated Products, DS2480B+T&R Datasheet - Page 15

IC LINE DRVR W/SENSOR 1-W 8-SOIC

DS2480B+T&R

Manufacturer Part Number
DS2480B+T&R
Description
IC LINE DRVR W/SENSOR 1-W 8-SOIC
Manufacturer
Maxim Integrated Products
Type
Line Driver, Transmitterr
Datasheet

Specifications of DS2480B+T&R

Number Of Drivers/receivers
1/0
Protocol
RS232
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
DS2480B
Falling Edges (DS2480B-initiated)
Whenever the DS2480B begins pulling the 1-Wire bus low to initiate a time slot, for example, it first
turns off the weak pullup current I
. Then, at standard and Overdrive speeds it will generate a
WEAKPU
falling edge at a slew rate of typically 15V/s. This value is acceptable for short 1-Wire busses and
adequate for communication at Overdrive speed. For 1-Wire networks of more than roughly 30m length
one should always use flexible speed. One of the parameters that is adjustable at flexible speed is the slew
rate of DS2480B-initiated falling edges. The effect of the slew rate control is shown in Figure 5.
Figure 5. SLEW RATE CONTROL
As extensive tests have shown, 1-Wire networks at a length of up to 300m will perform best if the fall
is in the range of 4 0.5s. This translates into a slew rate of approximately 1V/s. This slew rate
time t
F
is typically achieved by setting the configuration parameter 001 (Pulldown Slew Rate Control) to a value
of 100 (see Table 4). If the actual measured fall time is longer than the target value, one should use a
value code of 011 or lower. If the fall time is shorter, one should use a value code of 101 or higher.
Once determined, the value code for the Pulldown Slew Rate Control parameter should be stored in the
host and always be loaded into the DS2480B after a power-on or master reset cycle.
TIMING DIAGRAMS
This section explains the waveforms generated by the DS2480B on the 1-Wire bus in detail. First the
communication waveforms such as the Reset/Presence Detect Sequence and the time slots are discussed.
After that follows a detailed description of the pulse function under various conditions.
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