Part Number | RA35H1516M |
Manufacturer | Mitsubishi Electric Semiconductor |
Title | 154-162MHz 40W 12.5V MOBILE RADIO |
Description | The RA35H1516M is a 40-watt RF MOSFET Amplifier Module for 12.5-volt mobile radios that operate in the 154- to 162-MHz range. The battery can be c... |
Features |
• Enhancement-Mode MOSFET Transistors (IDD≅0 @ VDD=12.5V, VGG=0V) • Pout40W, ηT50% @ VDD=12.5V, VGG=5V, Pin=50mW • Low-Power Control Current IGG=1mA (typ) at VGG=5V • Module Size: 66 x 21 x 9.88 mm • Linear operation is possible by setting the quiescent drain current with the gate voltage and cont... |
File Size | 75.86KB |
Datasheet |
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RA35H1516M-01 : The RA35H1516M is a 40-watt RF MOSFET Amplifier Module for 12.5-volt mobile radios that operate in the 154- to 162-MHz range. The battery can be connected directly to the drain of the enhancement-mode MOSFET transistors. Without the gate voltage (VGG=0V), only a small leakage current flows into the drain and the RF input signal attenuates up to 60 dB. The output power and drain current increase as the gate voltage increases. With a gate voltage around 4V (minimum), output power and drain current increases substantially. The nominal output power becomes available at 4.5V (typical) and 5V (maximum). At VGG=5V, the typical gate current is 1 mA. This module is designed for non-linear FM modulati.
RA35H1516M-E01 : The RA35H1516M is a 40-watt RF MOSFET Amplifier Module for 12.5-volt mobile radios that operate in the 154- to 162-MHz range. The battery can be connected directly to the drain of the enhancement-mode MOSFET transistors. Without the gate voltage (VGG=0V), only a small leakage current flows into the drain and the RF input signal attenuates up to 60 dB. The output power and drain current increase as the gate voltage increases. With a gate voltage around 4V (minimum), output power and drain current increases substantially. The nominal output power becomes available at 4.5V (typical) and 5V (maximum). At VGG=5V, the typical gate current is 1 mA. This module is designed for non-linear FM modulati.