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ADM3491AN 参数 Datasheet PDF下载

ADM3491AN图片预览
型号: ADM3491AN
PDF下载: 下载PDF文件 查看货源
内容描述: [LINE TRANSCEIVER, PDIP14, PLASTIC, MO-095AB, DIP-14]
分类和应用: 驱动信息通信管理光电二极管接口集成电路驱动器
文件页数/大小: 17 页 / 1402 K
品牌: ROCHESTER [ Rochester Electronics ]
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ADM3491  
APPLICATIONS INFORMATION  
As with any transmission line, it is important that reflections be  
minimized. This can be achieved by terminating the extreme  
ends of the line using resistors equal to the characteristic  
impedance of the line. Stub lengths of the main line should also  
be kept as short as possible. A properly terminated transmission  
line appears purely resistive to the driver.  
DIFFERENTIAL DATA TRANSMISSION  
Differential data transmission is used to reliably transmit data at  
high rates over long distances and through noisy environments.  
Differential transmission nullifies the effects of ground shifts  
and noise signals, which appear as common-mode voltages on  
the line.  
RECEIVER OPEN-CIRCUIT FAIL-SAFE FEATURE  
The two main standards approved by the Electronics Industries  
Association (EIA) specify the electrical characteristics of  
transceivers used in differential data transmission:  
The receiver input includes a fail-safe feature that guarantees a  
logic high on the receiver when the inputs are open circuit or  
floating.  
RS-422 standard specifies data rates up to 10 MBaud and  
line lengths up to 4000 ft. A single driver can drive a  
transmission line with up to 10 receivers.  
3.3V  
3.3V  
0.1µF  
0.1µF  
V
DE  
DI  
V
RS-485 standard was defined to cater to true multipoint  
communications. This standard meets or exceeds all the  
requirements of RS-422, but also allows multiple drivers and  
receivers to be connected to a single bus. An extended  
common-mode range of −7 V to +12 V is defined.  
CC  
CC  
RE  
RO  
A
Y
Z
D
R
B
RS-485/RS-422 LINK  
ADM3491  
ADM3491  
Z
Y
B
A
RO  
DI  
D
R
The most significant differentiator of the RS-485 standard is  
that the drivers can be disabled, thereby allowing more than one  
to be connected to a single line. Only one driver should be  
enabled at a time, but the RS-485 standard contains additional  
specifications to guarantee device safety in the event of line  
contention.  
RE  
DE  
GND  
GND  
Figure 26. ADM3491 Full-Duplex Data Link  
Table 6. Comparison of RS-422 and RS-485 Interface  
Standards  
Table 7. Transmitting Truth Table  
Transmitting  
Specification  
RS-422  
RS-485  
Inputs  
Outputs  
Transmission Type  
Differential  
Differential  
RE  
DE  
1
DI  
1
0
X
X
Z
Y
1
0
Hi-Z  
Hi-Z  
Maximum Cable Length  
Minimum Driver Output Voltage  
Driver Load Impedance  
Receiver Input Resistance  
Receiver Input Sensitivity  
Receiver Input Voltage Range  
4000 ft.  
2 V  
100 Ω  
4 kΩ min  
200 mV  
−7 V to +7 V −7 V to +12 V  
4000 ft.  
1.5 V  
54 Ω  
12 kΩ min  
200 mV  
X
X
0
1
0
1
Hi-Z  
Hi-Z  
1
0
0
Table 8. Receiving Truth Table  
Receiving  
Inputs  
CABLE AND DATA RATE  
Outputs  
RO  
The transmission line of choice for RS-485 communications is a  
twisted pair. Twisted pair cable tends to cancel common-mode  
noise and also causes cancellation of the magnetic fields gener-  
ated by the current flowing through each wire, thereby reducing  
the effective inductance of the pair.  
RE  
DE  
X
A–B  
0
0
0
1
> +0.2 V  
< −0.2 V  
Inputs O/C  
X
0
0
1
Hi-Z  
X
X
X
The ADM3491 is designed for bidirectional data communica-  
tions on multipoint transmission lines. A typical application  
showing a multipoint transmission network is illustrated in  
Figure 26. Only one driver can transmit at a particular time, but  
multiple receivers can be enabled simultaneously.  
Rev. A | Page 11 of 16  
 
 
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