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SNJ55LVDS32W PDF预览

SNJ55LVDS32W

更新时间: 2024-11-15 21:53:51
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德州仪器 - TI /
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描述
HIGH-SPEED DIFFERENTIAL LINE RECEIVERS

SNJ55LVDS32W 数据手册

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ꢀ ꢁꢂꢂ ꢃꢄꢅ ꢀꢆ ꢇ ꢈ ꢀꢁ ꢉꢂ ꢃꢄꢅ ꢀꢆ ꢇ ꢈ ꢀꢁ ꢉꢂ ꢃꢄꢅ ꢀꢆ ꢊ ꢋ ꢉ ꢈ ꢀꢁ ꢉꢂ ꢃꢄ ꢅꢀ ꢌꢉ ꢆꢍ  
ꢎꢏ ꢐꢎ ꢑꢀꢒꢓ ꢓꢅ ꢅꢏ ꢔꢔ ꢓꢕ ꢓꢁꢖ ꢏꢗ ꢃ ꢃ ꢏꢁꢓ ꢕꢓꢘ ꢓ ꢏꢄ ꢓ ꢕꢀ  
SLLS262N − JULY 1997 − REVISED MARCH 2004  
SN55LVDS32 . . . J OR W  
SN65LVDS32 . . . D OR PW  
(Marked as LVDS32 or 65LVDS32)  
D
Meet or Exceed the Requirements of ANSI  
TIA/EIA-644 Standard  
D
Operate With a Single 3.3-V Supply  
(TOP VIEW)  
D
Designed for Signaling Rate of up to  
400 Mbps  
1B  
1A  
V
CC  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
4B  
4A  
4Y  
G
D
D
D
Differential Input Thresholds 100 mV Max  
Typical Propagation Delay Time of 2.1 ns  
1Y  
G
2Y  
Power Dissipation 60 mW Typical Per  
Receiver at 200 MHz  
2A  
11 3Y  
10 3A  
2B  
D
Bus-Terminal ESD Protection Exceeds 8 kV  
GND  
9
3B  
D
Low-Voltage TTL (LVTTL) Logic Output  
Levels  
SN55LVDS32FK  
(TOP VIEW)  
D
D
Pin Compatible With AM26LS32, MC3486,  
and µA9637  
Open-Circuit Fail-Safe  
3
4
2
1
20 19  
description  
1Y  
4A  
4Y  
NC  
G
18  
17  
16  
15  
14  
The  
SN55LVDS32,  
SN65LVDS32,  
G
NC  
2Y  
2A  
5
6
7
SN65LVDS3486, and SN65LVDS9637 are  
differential line receivers that implement the  
electrical characteristics of low-voltage differential  
signaling (LVDS). This signaling technique lowers  
the output voltage levels of 5-V differential  
standard levels (such as EIA/TIA-422B) to reduce  
the power, increase the switching speeds, and  
allow operation with a 3.3-V supply rail. Any of the  
four differential receivers provides a valid logical  
output state with a 100-mV differential input  
voltage within the input common-mode voltage  
range. The input common-mode voltage range  
allows 1 V of ground potential difference between  
two LVDS nodes.  
3Y  
8
9
10 11 12 13  
SN65LVDS3486D (Marked as LVDS3486)  
(TOP VIEW)  
1B  
1A  
V
CC  
4B  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
1Y  
4A  
1,2EN  
2Y  
4Y  
3,4EN  
3Y  
The intended application of these devices and  
signaling technique is both point-to-point and  
multidrop (one driver and multiple receivers) data  
transmission over controlled impedance media of  
approximately 100 . The transmission media  
may be printed-circuit board traces, backplanes,  
or cables. The ultimate rate and distance of  
data transfer depends on the attenuation  
characteristics of the media and the noise  
coupling to the environment.  
2A  
2B  
10 3A  
3B  
GND  
9
SN65LVDS9637D (Marked as DK637 or LVDS37)  
SN65LVDS9637DGN (Marked as L37)  
SN65LVDS9637DGK (Marked as AXF)  
(TOP VIEW)  
V
1A  
1B  
2A  
2B  
1
2
3
4
8
7
6
5
CC  
1Y  
The SN65LVDS32, SN65LVDS3486, and  
SN65LVDS9637 are characterized for operation  
from 40°C to 85°C. The SN55LVDS32 is  
characterized for operation from 55°C to 125°C.  
2Y  
GND  
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of  
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.  
PowerPAD is a trademark of Texas Instruments.  
ꢒꢕ ꢚ ꢅꢛ ꢘ ꢖꢏ ꢚ ꢁ ꢅ ꢗꢖꢗ ꢜꢝ ꢞ ꢟꢠ ꢡ ꢢꢣ ꢜꢟꢝ ꢜꢤ ꢥꢦ ꢠ ꢠ ꢧꢝꢣ ꢢꢤ ꢟꢞ ꢨꢦꢩ ꢪꢜꢥ ꢢꢣ ꢜꢟꢝ ꢫꢢ ꢣꢧ ꢬ  
ꢒꢠ ꢟ ꢫꢦꢥ ꢣ ꢤ ꢥ ꢟꢝ ꢞꢟ ꢠ ꢡ ꢣ ꢟ ꢤ ꢨꢧ ꢥ ꢜꢞ ꢜꢥꢢ ꢣꢜ ꢟꢝꢤ ꢨꢧ ꢠ ꢣꢭ ꢧ ꢣꢧ ꢠ ꢡꢤ ꢟꢞ ꢖꢧꢮ ꢢꢤ ꢏꢝꢤ ꢣꢠ ꢦꢡ ꢧꢝꢣ ꢤ  
ꢤ ꢣ ꢢ ꢝꢫ ꢢ ꢠꢫ ꢯ ꢢ ꢠꢠ ꢢ ꢝ ꢣꢰꢬ ꢒꢠ ꢟ ꢫꢦꢥ ꢣꢜꢟꢝ ꢨꢠ ꢟꢥ ꢧꢤ ꢤꢜ ꢝꢱ ꢫꢟꢧ ꢤ ꢝꢟꢣ ꢝꢧ ꢥꢧ ꢤꢤ ꢢꢠ ꢜꢪ ꢰ ꢜꢝꢥ ꢪꢦꢫ ꢧ  
ꢣ ꢧ ꢤ ꢣꢜ ꢝꢱ ꢟꢞ ꢢ ꢪꢪ ꢨꢢ ꢠ ꢢ ꢡ ꢧ ꢣ ꢧ ꢠ ꢤ ꢬ  
Copyright 1997 − 2004, Texas Instruments Incorporated  
ꢚ ꢝ ꢨ ꢠ ꢟꢫ ꢦꢥ ꢣꢤ ꢥꢟ ꢡꢨ ꢪꢜ ꢢꢝ ꢣ ꢣꢟ ꢲꢏ ꢃꢑ ꢒꢕ ꢔ ꢑꢆꢋꢂ ꢆꢂꢈ ꢢꢪꢪ ꢨꢢ ꢠ ꢢ ꢡꢧ ꢣꢧꢠ ꢤ ꢢ ꢠ ꢧ ꢣꢧ ꢤꢣꢧ ꢫ  
ꢦ ꢝꢪ ꢧꢤꢤ ꢟ ꢣꢭꢧ ꢠ ꢯꢜ ꢤꢧ ꢝ ꢟꢣꢧ ꢫꢬ ꢚ ꢝ ꢢꢪ ꢪ ꢟ ꢣꢭꢧ ꢠ ꢨꢠ ꢟ ꢫꢦꢥ ꢣꢤ ꢈ ꢨꢠ ꢟ ꢫꢦꢥ ꢣꢜꢟ ꢝ  
ꢨ ꢠ ꢟꢥꢧ ꢤꢤꢜ ꢝꢱ ꢫ ꢟꢧꢤ ꢝ ꢟꢣ ꢝ ꢧꢥꢧꢤ ꢤꢢꢠ ꢜ ꢪꢰ ꢜ ꢝꢥꢪ ꢦ ꢫꢧ ꢣꢧꢤ ꢣꢜꢝ ꢱ ꢟꢞ ꢢ ꢪꢪ ꢨꢢ ꢠ ꢢ ꢡꢧ ꢣꢧꢠ ꢤ ꢬ  
1
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  

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