DS90C402
DS90C402 is Dual Low Voltage Differential Signaling Receiver manufactured by National Semiconductor.
Description
The DS90C402 is a dual receiver device optimized for high data rate and low power applications. This device along with the DS90C401 provides a pair chip solution for a dual high speed point-to-point interface. The device is in a PCB space saving 8 lead small outline package. The receiver offers ± 100 m V threshold sensitivity, in addition to mon-mode noise protection.
Features n n n n n n Ultra Low Power Dissipation Operates above 155.5 Mbps Standard TIA/EIA-644 8 Lead SOIC Package saves PCB space VCM ± 1V center around 1.2V ± 100 m V Receiver Sensitivity
Connection Diagram
DS100006-1
Order Number DS90C402M See NS Package Number M08A
Functional Diagram
DS100006-2
TRI-STATE ® is a registered trademark of National Semiconductor Corporation.
© 1998 National Semiconductor Corporation
DS100006
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Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage (VCC)
- 0.3V to +6V
- 0.3V to (VCC + 0.3V) Input Voltage (RIN+, RIN- )
- 0.3V to (VCC + 0.3V) Output Voltage (ROUT) Maximum Package Power Dissipation @ +25˚C M Package 1025 m W Derate M Package 8.2 m W/˚C above +25˚C Storage Temperature Range
- 65˚C to +150˚C Lead Temperature Range Soldering (4 sec.) +260˚C
Maximum Junction Temperature ESD Rating (Note 4) (HBM, 1.5 kΩ, 100 p F) (EIAJ, 0 Ω, 200 p F)
+150˚C ≥ 3,500V ≥ 250V
Remended Operating Conditions
Supply Voltage (VCC) Receiver Input Voltage Operating Free Air Temperature (TA) Min +4.5 GND
- 40 Typ +5.0 Max +5.5 2.4 +85 Units V V ˚C
+25
Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified. (Note 2) Symbol VTH VTL IIN VOH Parameter Differential Input High Threshold Differential Input Low Threshold Input Current Output High Voltage VIN = +2.4V VIN = 0V IOH =
- 0.4 m A, VID = +200 m V IOH =
- 0.4m A, Inputs terminated IOH =
- 0.4m A, Inputs Open IOH =
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