SW-641, SW65-0003, SW65-0014 Selling Leads, Datasheet
MFG:3266 Package Cooled:N/A D/C:N/A
SW-641, SW65-0003, SW65-0014 Datasheet download
Part Number: SW-641
MFG: 3266
Package Cooled: N/A
D/C: N/A
MFG:3266 Package Cooled:N/A D/C:N/A
SW-641, SW65-0003, SW65-0014 Datasheet download
MFG: 3266
Package Cooled: N/A
D/C: N/A
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PDF/DataSheet Download
Datasheet: SW-01
File Size: 266849 KB
Manufacturer:
Download : Click here to Download
PDF/DataSheet Download
Datasheet: SW65-0003
File Size: 284327 KB
Manufacturer: MACOM [Tyco Electronics]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: SW65-0014
File Size: 217320 KB
Manufacturer: MACOM [Tyco Electronics]
Download : Click here to Download
M/A-COM's SW65-0003 is a GaAs MMIC SP8T reflective switch in a SMT plastic package. The switch has a low loss growth port, J9, that allows for cascading the device into larger multi-throw switches. It can be configured for common arm, J0, match when all the output ports are in isolation. The switch offers excellent broadband performance and repeatability from DC to 2.5 GHz, while maintaining low DC power dissipation. The SW65-0003 is ideally suited for switch matrix and high volume wireless infrastructure and applications.
Parameter | Absolute Maximum |
Input Power | +34 dBm |
Control Voltage | -8.5 volts |
Storage Temperature | -60°C to +125°C |
Operating Temperature | -40°C to +85°C |
M/A-COM's SW65-0014 is a GaAs MMIC absorptive SPST switch with an integral silicon ASIC driver. This device is in a 24-lead plastic package. This switch offers excellent broadband performance and repeatability from DC to 3 GHz, while maintaining low DC power dissipation. The SW65-0014 is ideally suited for wireless infrastructure applications. Also available in ceramic package with improved performance
Parameter | Absolute Maximum |
Max. Input Power 0.05 GHz 0.5 - 3.0 GHz |
+27 dBm +34 dBm |
Bias Voltages VEE VCC Control Voltage 4 |
-8.5V +5.5V -0.5V to VCC +0.5V |
Operating Temperature | -40°C to +85°C |
Storage Temperature | -65°C to +125°C |
4. Standard CMOS TTL interface, latch-up will occur if logic signal is applied prior to power supply.