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65LVDM31 Series

Quad LVDM driver

Manufacturer: Texas Instruments

Catalog(3 parts)

PartMounting TypePackage / CasePackage / CaseTypeOperating TemperatureOperating TemperatureSupplier Device PackageVoltage - SupplyVoltage - SupplyNumber of Drivers/ReceiversNumber of Drivers/Receivers
Texas Instruments
SN65LVDM31DG4
4/0 Driver 16-SOIC
Surface Mount
16-SOIC
0.003911599982529879 m, 3.900000095367432 ul
Driver
-40 °C
85 °C
16-SOIC
3.5999999046325684 V
3 V
0 ul
4 ul
Texas Instruments
SN65LVDM31DR
4/0 Driver 16-SOIC
Surface Mount
16-SOIC
0.003911599982529879 m, 3.900000095367432 ul
Driver
-40 °C
85 °C
16-SOIC
3.5999999046325684 V
3 V
0 ul
4 ul
Texas Instruments
SN65LVDM31D
4/0 Driver 16-SOIC
Surface Mount
16-SOIC
0.003911599982529879 m, 3.900000095367432 ul
Driver
-40 °C
85 °C
16-SOIC
3.5999999046325684 V
3 V
0 ul
4 ul

Key Features

Designed for Signaling RatesUp to 150 MbpsLow-Voltage Differential Signaling With Typical Output Voltage of 700 mV and a 100-LoadPropagation Delay Time of 2.3 ns, TypicalSingle 3.3-V Supply OperationOne Driver's Power Dissipation at 75 MHz, 50 mW, TypicalHigh-Impedance Outputs When Disabled or With VCC< 1.5 VBus-Pin ESD Protection Exceeds 12 kVLow-Voltage CMOS (LVCMOS) Logic Input Levels Are 5-V TolerantThe signaling rate is the number of voltage transitions that can be made per second.Designed for Signaling RatesUp to 150 MbpsLow-Voltage Differential Signaling With Typical Output Voltage of 700 mV and a 100-LoadPropagation Delay Time of 2.3 ns, TypicalSingle 3.3-V Supply OperationOne Driver's Power Dissipation at 75 MHz, 50 mW, TypicalHigh-Impedance Outputs When Disabled or With VCC< 1.5 VBus-Pin ESD Protection Exceeds 12 kVLow-Voltage CMOS (LVCMOS) Logic Input Levels Are 5-V TolerantThe signaling rate is the number of voltage transitions that can be made per second.

Description

AI
The SN65LVDM31 incorporates four differential line drivers that implement the electrical characteristics of low-voltage differential signaling. This product offers a low-power alternative to 5-V PECL drivers with similar signal levels. Any of the four current-mode drivers will deliver a minimum differential output voltage magnitude of 540 mV into a 100-load when enabled by either an active-low or active-high enable input. The intended application of this device and signaling technique is for both point-to-point and multiplexed baseband 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 is dependent upon the attenuation characteristics of the media and the noise coupling to the environment. The SN65LVDM31 is characterized for operation from -40°C to 85°C. The SN65LVDM31 incorporates four differential line drivers that implement the electrical characteristics of low-voltage differential signaling. This product offers a low-power alternative to 5-V PECL drivers with similar signal levels. Any of the four current-mode drivers will deliver a minimum differential output voltage magnitude of 540 mV into a 100-load when enabled by either an active-low or active-high enable input. The intended application of this device and signaling technique is for both point-to-point and multiplexed baseband 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 is dependent upon the attenuation characteristics of the media and the noise coupling to the environment. The SN65LVDM31 is characterized for operation from -40°C to 85°C.