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Search result: DS90LV028A

Rows: 7
Manufacturer Part name Description File
National Semiconductor DS90LV028A 3V LVDS Dual CMOS Differential Line Receiver 250.07Kb, 10 pg.
DS90LV028ATM 3V LVDS Dual CMOS Differential Line Receiver 250.07Kb, 10 pg.
DS90LV028ATLD 3V LVDS Dual CMOS Differential Line Receiver, Package: Llp, Pin Nb=8 322.31Kb, 10 pg.
DS90LV028ATMX 3V LVDS Dual CMOS Differential Line Receiver, Package: Llp, Pin Nb=8 322.31Kb, 10 pg.
DS90LV028AH High Temperature 3V LVDS Dual CMOS Differential Line Receiver The DS90LV028AH isA dual CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to support data rates in excess of 400 Mbps (200 MHz) utilizing Low Voltage Differential Signaling (LVDS) technology. The DS90LV028AH accepts low voltage (350 mV typical) differential input signals and translates them to 3V CMOS output levels. The DS90LV028AH hasA flow-th 649.94Kb, 8 pg.
DS90LV028AHM High Temperature 3V LVDS Dual CMOS Differential Line Receiver The DS90LV028AH isA dual CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to support data rates in excess of 400 Mbps (200 MHz) utilizing Low Voltage Differential Signaling (LVDS) technology. The DS90LV028AH accepts low voltage (350 mV typical) differential input signals and translates them to 3V CMOS output levels. The DS90LV028AH hasA flow-th 649.94Kb, 8 pg.
DS90LV028AHMX High Temperature 3V LVDS Dual CMOS Differential Line Receiver The DS90LV028AH isA dual CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to support data rates in excess of 400 Mbps (200 MHz) utilizing Low Voltage Differential Signaling (LVDS) technology. The DS90LV028AH accepts low voltage (350 mV typical) differential input signals and translates them to 3V CMOS output levels. The DS90LV028AH hasA flow-th 649.94Kb, 8 pg.