MAX1480BEPI+ Maxim Integrated Products, MAX1480BEPI+ Datasheet - Page 16

IC RS485/RS422 DATA INTRFC 28DIP

MAX1480BEPI+

Manufacturer Part Number
MAX1480BEPI+
Description
IC RS485/RS422 DATA INTRFC 28DIP
Manufacturer
Maxim Integrated Products
Type
Transceiverr
Datasheet

Specifications of MAX1480BEPI+

Number Of Drivers/receivers
1/1
Protocol
RS422, RS485
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Through Hole
Package / Case
28-DIP (0.600", 15.24mm)
Package
28PDIP
Data Transmission Topology
Multidrop|Multipoint
Data Rate
0.25(Min) Mbps
Function
Line Transceiver
Number Of Transmitters
1
Transmitter Signal Type
Differential
Transmitter Communication Type
RS-422|RS-485
Driving Mode
3-State
Typical Single Supply Voltage
5 V
Number Of Channels Per Chip
1
Supply Voltage (max)
5.5 V
Supply Voltage (min)
4.5 V
Maximum Operating Temperature
+ 85 C
Mounting Style
Through Hole
Interface
RS-485, RS-422
Maximum Power Dissipation
727 mW
Minimum Operating Temperature
- 40 C
Supply Current
95 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The MAX1480B/MAX1480C/MAX1490B are slew-rate-
limited, minimizing EMI and reducing reflections
caused by improperly terminated cables. Figure 11
shows both the driver output waveform of a
MAX1480A/MAX1490A transmitting a 150kHz signal
and the Fourier analysis of that waveform. High-fre-
quency harmonics with large amplitudes are evident.
Figure 12 shows the same information for the slew-rate-
limited MAX1480B/MAX1480C/MAX1490B transmitting
the same signal. The high-frequency harmonics have
much lower amplitudes, and therefore the potential for
EMI is significantly reduced.
Complete, Isolated RS-485/RS-422
Data Interface
Figure 11. Driver Output Waveform and FFT Plot of
MAX1480A/MAX1490A Transmitting a 150kHz Signal
Figure 12. Driver Output Waveform and FFT Plot of
MAX1480B/MAX1480C/MAX1490B Transmitting a 150kHz
Signal
16
______________________________________________________________________________________
10dB/div
10dB/div
0Hz
0Hz
MAX1480B/MAX1480C/MAX1490B:
Reduced EMI and Reflections
500kHz/div
500kHz/div
5MHz
5MHz
_____________________Function Tables
Table 3. Transmitting
X = Don’t care
High-Z = High impedance
Table 4. Receiving
Table 5. Transmitting
* For DE´ and DI´ pin descriptions, see Detailed Block Diagram
and Typical Application Circuit (Figure 1 for MAX1480A/B/C,
Figure 2 for MAX1490A/B).
Table 6. Receiving
DE
INPUT
1
1
0
(DI
´
DE
1
0
0
0
0
´
INPUTS*
(MAX1480A/MAX1480B/MAX1480C)
(V
´
)
≥ +0.2V
≤ -0.2V
INPUT
*
Open
A
- V
INPUTS*
B
)
DI
1
0
X
´
V
≥ +0.2V
(MAX1490A/MAX1490B)
≤ -0.2V
Open
A
Z
0
1
- V
Half-Duplex Devices
Full-Duplex Devices
B
High-Z
OUTPUTS
B
0
1
OUTPUTS
OUTPUT
(RO)
1
0
1
OUTPUT
(RO)
High-Z
Y
1
0
0
1
0
A
1
0

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