Features: ·Industrial Temperature Range -40°C to +85°C·Optimized for DSS to DVHS interface link·Compatible IEEE 1394 signaling voltage levels·Operates above 100 Mbps·Bi-directional transceivers·14-lead SOIC and TSSOP packages·Ultra low power dissipation·±100 mV receiver sensitivity·Low differentia...
DS36C200I: Features: ·Industrial Temperature Range -40°C to +85°C·Optimized for DSS to DVHS interface link·Compatible IEEE 1394 signaling voltage levels·Operates above 100 Mbps·Bi-directional transceivers·14-l...
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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
Enable Input Voltage
(DE, RE*)............. −0.3V to (VCC + 0.3V)
Voltage (DI/RO) .............−0.3V to +5.9V
Voltage (DO/RI±) ............−0.3V to +5.9V
Package Thermal Resistance Ratings (Note 8)
M14A ( J-A) ..................105°C/W
M14A ( J-C)...................25°C/W
MTC14 ( J-A)..................135°C/W
MTC14 ( J-C).................. 35°C/W
Storage Temperature Range .....−65°C to +150°C
Lead Temperature Range
(Soldering, 4 sec.)................+260°C
ESD Rating (Note 4)
(HBM, 1.5 k, 100 pF).............. 3.5 kV
(EIAJ, 0 , 200 pF)................ 300V
The DS36C200I is a dual transceiver device optimized for high data rate and low power applications. This device provides a single chip solution for a dual high speed bidirectional interface. Also, both control pins may be routed together for single bit control of datastreams. Both control pins are adjacent to each other for ease of routing them together. The DS36C200I is compatible with IEEE 1394 physical layer and may be used as an economical solution with some considerations. Please reference the application information on 1394 for more information. The device is in a 14-lead small outline package. The differential driver outputs provides low EMI with its low output swings typically 210 mV. The receiver offers ±100 mV threshold sensitivity, in addition to common-mode noise protection.