Features: Gain: 15 dBP1dB Output Power: +15 dBmStable Gain Over Temperature50 Ohm I/O'sSmall Size: 0.38 mm x 0.58 mm x 0.1 mmApplicationAn excellent cascadable 50 OhmGain Block or LO Driver for:• Microwave & VSAT Radios• Test Equipment• Military EW, ECM, C3I• Space Tele...
HMC397: Features: Gain: 15 dBP1dB Output Power: +15 dBmStable Gain Over Temperature50 Ohm I/O'sSmall Size: 0.38 mm x 0.58 mm x 0.1 mmApplicationAn excellent cascadable 50 OhmGain Block or LO Driver for:R...
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DescriptionThe HMC304MS8(E) is a passive high IP3 mixer in 8 lead plastic surface mount Mini Small...
Collector Bias Voltage (Vcc) | +7.0 Vdc |
RF Input Power (RFin)(Vs = +5.0 Vdc) | +10 dBm |
Junction Temperature | 150 °C |
Continuous Pdiss (T = 85 °C) (derate 16 mW/°C above 85 °C) |
0.339 W |
Thermal Resistance (junction to ground paddle) |
192 °C/W |
Storage Temperature | -65 to +150 °C |
Operating Temperature | -55 to +85 °C |
The HMC397 die is a GaAs InGaP Heterojunction Bipolar Transistor (HBT) Gain Block MMIC DC to 10 GHz amplifier. This amplifier can be used as either a cascadable 50 Ohm gain stage or to drive the LO of HMC mixers with up to +16 dBm output power. The HMC397 offers 15 dB of gain and an output IP3 of +32 dBm while requiring only 56 mA from a +5V supply.
The Darlington feedback pair used results in reduced sensitivity to normal process variations and yields excellent gain stability over temperature while requiring a minimal number of external bias components. The HMC397 can easily be integrated into Multi- Chip-Modules (MCMs) due to its small (0.22mm²) size. All data is with the chip in a 50 Ohm test fixture connected via 0.025mm (1 mil) diameter wire bonds of minimal length 0.5mm (20 mils).