Details, datasheet, quote on part number: STLVDS32BDR
PartSTLVDS32BDR
CategoryCommunication and Interfaces => IC Interfaces => IC Interfaces => 7838412
TitleQUAD LINE RECEIVER, PDSO16
Description
CompanyST Microelectronics, Inc.
DatasheetDownload STLVDS32BDR datasheet
Cross ref.Similar parts: DS90LV032ATM/NOPB, DS90LV048ATM/NOPB, SN65LVDS32D, SN65LVDS32BD, SN65LVDS3486D, SN65LVDS3486BD, AM26C31, AM26C31-EP, AM26C31M, AM26C32
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Specifications 
TechnologyEIA-644; TIA-644
Device TypeReceiver
Supply Voltage3.3V
Operating Temperature-55 to 125 C (-67 to 257 F)
Package TypeSOP, SOP-16
Pins16

 

Features, Applications

MEETS OR EXCEEDS THE REQUIREMENTS OF ANSI TIA/EIA-644 STANDARD OPERATES WITH A SINGLE 3.3V SUPPLY DESIGNED FOR SIGNALING RATE TO 400Mbps DIFFERENTIAL INPUT THRESHOLDS 100mV MAX TYPICAL PROPAGATION DELAY TIME OF 2.5ns POWER DISSIPATION 60mW TYPICAL PER RECEIVER AT 200MHz LOW VOLATGE TTL (LVTTL) LOGIC OUTPUT LEVELS PIN COMPATIBLE WITH THE SN65LVD32, MC3486 AND SN65LVD3486 OPEN CIRCUIT FAIL SAFE 7KV BUS PIN ESD PROTECTION 3KV ALL PINS VS GND

DESCRIPTION The STLVDS32 is differential line receivers that implement the electrical characteristics of low voltage differential signaling (LVDS). This signaling technique lower the output voltage levels of 5V differential standard levels (such as TIA/ EIA-422B) to reduce the power, increase the switching speeds and allows operations with a 3.3V supply rail. Any of the four differential receivers provides a valid logical output state with ORDERING CODES

a 3.3V supply rail. Any of the four differential receivers provides a valid logical output state with a 100mV differential input voltage within the input common mode voltage range. The input common mode voltage allows 1V of ground potential difference between two LVDS nodes. The intended application of this device and signalling technique is both point-to-point and multidrop data transmission over controlled impedance media approximately 100. The transmission media may be printed circuit board traces, backplanes or cables. The ultimate rate and distance of data transfer is dependent upon the attenuation characteristics of the media and noise coupling to the enviroment. The STLVDS32, "B" version are characterized for operation from to 85C, the "A" version from to 125C.

Package SO-16 (Tube) SO-16 (Tape & Reel) TSSOP16 (Tape & Reel) SO-16 (Tube) SO-16 (Tape & Reel) TSSOP16 (Tape & Reel)

Comments 50parts per tube / 20tube per box 2500 parts per reel 2500 parts per reel 50parts per tube / 20tube per box 2500 parts per reel 2500 parts per reel

PlN N SYMBOL 4Y G GND VCC NAME AND FUNCTION Receiver Inputs Negated Receiver Inputs Receiver Outputs Enable Ground Supply Voltage

L=Low level, H=High Level, X=Don't care, Z= High Impedance, ?=Indeterminate

Symbol CC VI ESD Tstg Supply Voltage (Note 1) Input Voltage Input Voltage or B inputs) Human Body Model Storage Temperature Range BUS Terminal All Pins vs GND Parameter Value -0.5 to (VCC to +150 Unit KV C

Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these condition is not implied. Note 1: All voltages except differential I/O bus voltage, are with respect to the network ground terminal.

Symbol V CC VIH VIL |V ID| VIc Supply Voltage HIGH Level Input Voltage (ENABLE) LOW Level Input Voltage (ENABLE) Magnitude of Differential Input Voltage Common Mode Input Voltage 0.1 0.5|VID| Parameter Min. I D| VCC 0.8 TA Operating Temperature Range "A" Version "B" Version C Typ. 3.3 Max. 3.6 Unit

ELECTRICAL CHARACTERISTICS (Over recommended operating conditions unless otherwise noted. All typical values are = 25C, and VCC = 3.3V)

Symbol VITH+ VITHV OH VOL ICC II II(OFF) IIH IIL IOZ Parameter Positive Going Differential Input Voltage Threshold Negative Going Differential Input Voltage Threshold High Level Output Voltage Low Level Output Voltage Supply Current FIg. 1 -100 IOH = -8mA IOH = -4mA IOH 8mA A Enabled, No Load Disabled Input Current or B inputs) = 2.4V Power off Input Current or B inputs) High Level Input Current (EN, G or Inputs) Low Level Input Current (EN, G or Inputs) High Impedance Output Current VCC = 0 VIH = 2V VIL 0 or VCC mA A Test Conditions Min. Typ. Max. 100 Unit mV V


 

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