Details
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Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|---|
Frequency Range | f | 2.7 | 3.8 | GHz | ||
Output Power | Pout | Vdd = 28V, Ta = 25°C | 60 | W | ||
Drain Efficiency | ηd | Pout = 60W, Vdd = 28V, Ta = 25°C | 60 | % | ||
Gain | G | Pout = 60W, Vdd = 28V, Ta = 25°C | 14 | dB | ||
Input Return Loss | RLin | Pout = 60W, Vdd = 28V, Ta = 25°C | -15 | dB | ||
Output Return Loss | RLoad | Pout = 60W, Vdd = 28V, Ta = 25°C | -18 | dB | ||
Operating Voltage | Vdd | 24 | 28 | V | ||
Quiescent Current | Iq | Vdd = 28V, Ta = 25°C | 2.5 | A | ||
Thermal Resistance | Rth | Junction to Case | 0.5 | °C/W |
Instructions for Use:
Power Supply:
- Ensure the operating voltage (Vdd) is within the specified range of 24V to 28V.
- Use appropriate decoupling capacitors close to the power supply pins to minimize noise.
Heat Management:
- Given the thermal resistance (Rth), ensure adequate heat sinking to maintain junction temperature within safe limits, especially under full load conditions.
Biasing:
- Set the quiescent current (Iq) around 2.5A for optimal performance. Adjust as necessary based on specific application requirements.
Matching Networks:
- Design input and output matching networks to achieve the desired gain and impedance matching. Aim for an input return loss (RLin) of at least -15dB and an output return loss (RLoad) of at least -18dB.
Operating Frequency:
- The device is optimized for operation between 2.7GHz and 3.8GHz. Verify that your application operates within this frequency band for best performance.
Output Power Handling:
- Do not exceed the maximum output power (Pout) of 60W to prevent damage or degradation of performance.
Environmental Conditions:
- Maintain ambient temperature (Ta) around 25°C for optimal efficiency and reliability. Consider environmental controls if operating in extreme conditions.
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