MAX13444EASA/V+ Maxim Integrated, MAX13444EASA/V+ Datasheet - Page 15

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MAX13444EASA/V+

Manufacturer Part Number
MAX13444EASA/V+
Description
RS-485 Interface IC +/-80V Fault Protected RS-485 Half-Duplex Transceiver with Foldback Current Limit
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX13444EASA/V+

Data Rate
10 Mbps
Operating Supply Voltage
5 V
Supply Current
30 mA
Operating Temperature Range
- 40 C to + 125 C
Mounting Style
SMD/SMT
Package / Case
SO-8
Function
Transceiver
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Number Of Drivers
1
Number Of Receivers
1
Propagation Delay Time Ns
50 ns
Shutdown
Yes
The MAX13442E/MAX13443E/MAX13444E transceivers
1/4-unit-load receiver input impedance (48kΩ) allows
up to 128 transceivers connected in parallel on one
communication line. Connect any combination of these
devices, and/or other RS-485 devices, for a maximum
of 32-unit loads to the line.
The MAX13442E/MAX13444E are slew-rate limited,
minimizing EMI and reducing reflections caused by
improperly terminated cables. Figure 11 shows the dri-
ver output waveform and its Fourier analysis of a
125kHz signal transmitted by a MAX13443E. High-fre-
quency harmonic components with large amplitudes
are evident.
Figure 12 shows the same signal displayed for the
MAX13442E transmitting under the same conditions.
Figure 12’s high-frequency harmonic components are
much lower in amplitude, compared with Figure 11’s,
and the potential for EMI is significantly reduced.
Figure 11. Driver Output Waveform and FFT Plot of the
MAX13443E Transmitting a 125kHz Signal
±15kV ESD-Protected, ±80V Fault-Protected,
0
Applications Information
Reduced EMI and Reflections
______________________________________________________________________________________
128 Transceivers on the Bus
500kHz/div
Fail-Safe RS-485/J1708 Transceivers
5.00MHz
20dB/div
2V/div
In general, a transmitter’s rise time relates directly to
the length of an unterminated stub, which can be driven
with only minor waveform reflections. The following
equation expresses this relationship conservatively:
where t
For example, the MAX13442E’s rise time is typically
800ns, which results in excellent waveforms with a stub
length up to 53ft. A system can work well with longer
unterminated stubs, even with severe reflections, if the
waveform settles out before the UART samples them.
The MAX13442E/MAX13443E/MAX13444E transceivers
provide bidirectional data communications on multi-
point bus transmission lines. Figure 13 shows a typical
network application circuit. The RS-485 standard cov-
ers line lengths up to 4000ft. To minimize reflections
and reduce data errors, terminate the signal line at both
ends in its characteristic impedance, and keep stub
lengths off the main line as short as possible.
Figure 12. Driver Output Waveform and FFT Plot of the
MAX13442E Transmitting a 125kHz Signal
RISE
0
is the transmitter’s rise time.
length = t
RISE
500kHz/div
/ (10 x 1.5ns/ft)
RS-485 Applications
5.00MHz
20dB/div
2V/div
15

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