|Category||Interface and Interconnect|
|Description||High Speed Differential Line Drivers And Receivers|
|Company||ST Microelectronics, Inc.|
|Datasheet||Download STLVDS051B datasheet
|HIGH SPEED DIFFERENTIAL LINE DRIVERS AND RECEIVERS
MEETS OR EXCEED THE REQUIREMENTS OF ANSI EIA/TIA-644-1995 STANDARD SIGNALING RATES TO 400Mbit/s BUS TERMINAL ESD EXCEEDS 6KV OPERATES FROM A SINGLE 3.3V SUPPLY LOW-VOLTAGE DIFFERENTIAL SIGNALING WITH TYPICAL OUTPUT VOLTAGE OF 350mV AND A 100 LOAD PROPAGATION DELAY TIMES: DRIVER: 2ns (TYP) RECEIVER: 3ns (TYP) POWER DISSIPATION AT 200MHz: DRIVER: 25mW (TYP) RECEIVER: 60mW (TYP) LVTTL INPUT LEVELS ARE 5V TOLERANT RECEIVER HAS OPEN-CIRUIT FAIL-SAFE
DESCRIPTION The STLVDS051 is differential line drivers and receivers that use low-voltage differential signaling (LVDS) to achieve signaling rate as high as 400Mbps. The EIA/TIA-644 standard compliant electrical interface provides a minimum differential output voltage magnitude 247 mV into a 100 load and receipt 100 mV signals with V of ORDERING CODES
ground potential difference between a transmitter and receiver. The intended application of this device an signaling technique is for point-to-point baseband data transmission over controlled impedance media of approximately 100 characteristic impedance. The transmission media may be printed-circuit board traces, backplanes, or cables. (Note: The ultimate rate and distance of data transfer is dependent upon the attenuation characteristics of the media, the noise coupling to the environment, and other application specific characteristics).Package SO-16 (Tube) SO-16 (Tape & Reel) TSSOP16 (Tape & Reel)
Comments 50 parts per tube / 20 tube per box 2500 parts per reel 2500 parts per reel
PlN N° SYMBOL NAME AND FUNCTION Receiver Inputs Receiver Outputs Driver Enable Driver Inputs Driver Outputs Ground Supply VoltageL=Low level, H=High Level, X=Don't care, Z= High Impedance
Symbol VCC VI ESD Tstg Supply Voltage Range ESD Protection Voltage (HBM) Storage Temperature Range A, B, and GND All Pins Parameter Value 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.
Symbol VCC VIH VIL |VID| VIC TA Supply Voltage HIGH Level Input Voltage LOW Level Input Voltage Magnitude Of Differential Input Voltage Common Mode Input Voltage Operating Temperature Range |VID|/2 -40 Parameter Min. 85 °C Typ. 3.3 Max. 3.6 UnitELECTRICAL CHARACTERISTICS (Typical values are = 25°C, VCC to 85°C unless otherwise specified)
Symbol ICC Parameter Supply Current Test Conditions Drivers enabled, No Receivers load, Driver RL=100 Drivers Disabled, No load Min. Typ. 12 4 Max. 20 6 Unit mA
DRIVER ELECTRICAL CHARACTERISTICS (Typical values are = 25°C, VCC to 85°C unless otherwise specified)
Symbol |VOD| VOC(SS) Parameter Differential Output Voltage Magnitude Change in Differential Output Voltage Magnitude Between Logic States Change in Steady-state Common Mode Output Voltage Between Logic States Steady-state Common Mode Output Voltage Peak to Peak Common mode Output Voltage High Level Input Current Low Level Input Current = 100 Test Conditions Min. 247 -50 Typ. 340 Max. 454 50 Unit mV
Short Circuit Output Current VO(Y) or VO(Z) = 0V VOD = 0 High Impedance Output Current Power OFF Output Current Input Capacitance 0V or VCC = 3.6V
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