CPC7524
IXYS
213.89kb
Analog switch array. The CPC7524 Quad High Voltage (HV) isolated Analog Switch Array builds upon our high voltage design and fabrication expertise for off
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CPC7524B - Analog Switch Array
(IXYS)
INTEGRATED CIRCUITS DIVISION
CPC7524
Quad High Voltage Isolated Analog Switch Array
Features
• Switch Voltage up to 600V • 110dB Switch-to-Switch Is.
CPC7524BTR - Analog Switch Array
(IXYS)
INTEGRATED CIRCUITS DIVISION
CPC7524
Quad High Voltage Isolated Analog Switch Array
Features
• Switch Voltage up to 600V • 110dB Switch-to-Switch Is.
CPC75282 - Line Card Access Switch
(IXYS)
CPC75282
INTEGRATED CIRCUITS DIVISION
PRELIMINARY
Line Card Access Switch
Features
• Improved Switch dV/dt Immunity of 1500V/s • Smart logic for .
CPC75282 - Line Card Access Switch
(Clare)
CPC75282
Line Card Access Switch
Features
• Improved Switch dV/dt Immunity of 1500V/μs • Smart logic for power-up/hot-plug state control • Small 44-p.
CPC75282KA - Line Card Access Switch
(IXYS)
CPC75282
INTEGRATED CIRCUITS DIVISION
PRELIMINARY
Line Card Access Switch
Features
• Improved Switch dV/dt Immunity of 1500V/s • Smart logic for .
CPC75282KATR - Line Card Access Switch
(IXYS)
CPC75282
INTEGRATED CIRCUITS DIVISION
PRELIMINARY
Line Card Access Switch
Features
• Improved Switch dV/dt Immunity of 1500V/s • Smart logic for .
CPC7508 - Line Card Access Switch
(IXYS)
INTEGRATED CIRCUITS DIVISION
CPC7508
Line Card Access Switch
Features
• TTL logic level inputs for 3.3V logic interfaces • Smart logic for power up .
CPC7508B - Line Card Access Switch
(IXYS)
INTEGRATED CIRCUITS DIVISION
CPC7508
Line Card Access Switch
Features
• TTL logic level inputs for 3.3V logic interfaces • Smart logic for power up .
CPC7508BTR - Line Card Access Switch
(IXYS)
INTEGRATED CIRCUITS DIVISION
CPC7508
Line Card Access Switch
Features
• TTL logic level inputs for 3.3V logic interfaces • Smart logic for power up .
CPC750J - Disc Ceramic Capacitors
(Mallory)
EIA Class 1 Temperature Compensating Disc Ceramic Capacitors
{ { { { Temperature Compensating Ideal For Use in Timing and Oscillating Circuits Conform.