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projekte:6cmtrv:start [2025/12/16 01:22] – [Small 6 cm Transverter] ycprojekte:6cmtrv:start [2025/12/16 01:35] (aktuell) yc
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 ===== Implementation ===== ===== Implementation =====
-Like in previous projects ([[..:lofourx:start|10 GHz Multiplier]], [[..:3cmbeacon:start|10 GHz Beacon]]) CPWG transmission lines on a four-layer stackup are used. The RF design is based on the well-characterized coaxial/PCB transition and uses a complete coplanar transmission design to interface to all QFN components with a GND-signal-GND for simple continuous impedance control. As all components are internally matched no additional on-board matching is required.+Like in previous projects ([[..:lofourx:start|10 GHz Multiplier]], [[..:3cmbeacon:start|10 GHz Beacon]]) CPWG transmission lines on a four-layer stackup are used. The RF design is based on the well-characterized coaxial/PCB transition and uses a complete coplanar transmission design to interface to all QFN components in GND-signal-GND style for continuous impedance behavior. For the large pads of the bandpass filters an individual footprint was designed and simulated for proper 50 Ohm interfacing on the thin substrate used. As all other components are internally matched no further on-board matching is required. 
  
 {{:projekte:6cmtrv:6cmtrv_pcb.jpg?400|}} {{:projekte:6cmtrv:6cmtrv_pcb.jpg?400|}}
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 {{:projekte:6cmtrv:6cmtrv_front.jpg?400|}} {{:projekte:6cmtrv:6cmtrv_back.jpg?400|}} {{:projekte:6cmtrv:6cmtrv_front.jpg?400|}} {{:projekte:6cmtrv:6cmtrv_back.jpg?400|}}
  
-Front and back panels are low-cost PCBs with black solder mask and white silk screen. LEDs are on the back panel to show the current state: heating, receiving, transmitting. The LEDs have different meaning depending on the transceiver'state.+Front and back panels are low-cost PCBs with black solder mask and white silk screen. LEDs are placed on the back panel to show the current state state.
  
 ^ State ^ RX ^ TX ^ HT ^ PWR ^  ^ State ^ RX ^ TX ^ HT ^ PWR ^ 
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 ===== Testing ===== ===== Testing =====
-The first prototype was characterized after final assembly. The maximum output power is 29 dBm and with 100 mW input power and a noise figure of 3.1 dB is achieved. With 1 dB of switch loss and additional transmission line attenuation the results seem reasonable but noise figure needs some investigation, 1.6 dB was intended.+The first prototype was characterized after final assembly. The maximum output power is 29 dBm with 100 mW input power and a noise figure of 3.1 dB is achieved. With 1 dB of switch loss and additional transmission line attenuation the results seem reasonable but noise figure needs some investigation, 1.6 dB was intended.
  
-The phase noise in transmit mode is very surprisingly good without any optimization:+The phase noise in transmit mode is surprisingly good without any optimization:
  
 {{:projekte:6cmtrv:6cmtrv_pn.png|}} {{:projekte:6cmtrv:6cmtrv_pn.png|}}
projekte/6cmtrv/start.1765848129.txt.gz · Zuletzt geändert: von yc

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