Features: • Low-voltage operation• Full-range support: -3.3V -2.5V -1.8V• 1:10 fanout• Drives either a 50-Ohm or 75-Ohm load• Over voltage tolerant input hot swappable• Low-input capacitance• Low-output skew• Low-propagation delay• Typical (tpd...
CY2CC1910: Features: • Low-voltage operation• Full-range support: -3.3V -2.5V -1.8V• 1:10 fanout• Drives either a 50-Ohm or 75-Ohm load• Over voltage tolerant input hot swappable&...
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• Low-voltage operation
• Full-range support:
-3.3V
-2.5V
-1.8V
• 1:10 fanout
• Drives either a 50-Ohm or 75-Ohm load
• Over voltage tolerant input hot swappable
• Low-input capacitance
• Low-output skew
• Low-propagation delay
• Typical (tpd < 4 ns)
• High-speed operation:
-100 MHz@1.8V
-200 MHz@2.5V/3.3V
• Industrial versions available
• Available packages include: SOIC, SSOP
Storage Temperature: ..............................................................65°C to + 150°C
Ambient Temperature:..................................................................40°C to +85°C
Supply Voltage to Ground Potential VCC ......................................... 0.5V to 4.6V
Input ............................................................................................... 0.5V to 5.8V
Supply Voltage to Ground Potential (Outputs only) ................. 0.5V to VDD + 1V
DC Output Voltage.................................................................... 0.5V to VDD + 1V
Power Dissipation........................................................................................ 0.75W
The Cypress series of network circuits are produced using advanced 0.35-micron CMOS technology, achieving the industries fastest logic and buffers.
The Cypress CY2CC1910 fanout buffer features one input and ten outputs. Ideal for conversion from/to 3.3V/2.5V/1.8V.
Designed for data communications clock management applications, the large fanout from a single input reduces loading on the input clock.
Cypress employs unique AVCMOS-type outputs VOI™ (Variable Output Impedance) that dynamically adjust for variable impedance matching and eliminate the need for series damping resistors; they also reduce noise overall.