First, maybe I should clarify a couple of points to avoid confusion.
On my SD card #1: I installed the current Raspberry Pi OS (Debian bookworm), then followed instructions on the Radioberry Wiki to install the Radioberry and piHPSDR software. The result is:
piHPSDR build date 2022-01-25, v2.0.8-rc1, WDSP version 1.18.
On my SD card #2: I installed the current Raspberry Pi OS (Debian bookwork), then followed instructions on the Radioberry Wiki only through the step of installing the Radioberry software, stopping before the piHPSDR step. I instead installed piHPSDR from the DL1YCF github site. I used Linux installation instructions found in Appendices G and J of the DL1YCF piPHSDR manual, making sure to disable the GPIO option. The result is:
piHPSDR build date 2024-05-15, v2.3, WDSP version 1.24.
I am using a Raspberry Pi 4 B. The Radioberry Wiki website I used for installation instructions was: https://github.com/pa3gsb/Radioberry-2.x/wiki
Regarding the rest of the hardware, I’m using the QRP Labs “10W HF Linear PA” for QRP (no LPF yet), and a Pacific Antennas QRP Kit RF-activated “Easy TR Switch”. Following this I’ve added the Neptune 50W amp from the Ukrainian company 60dBm (RF-sensed auto LPF switching). I drive the Neptune PTT input using a secondary relay on the TR switch.
The above set of equipment has been assembled and seems to be fully functional. However – I’m not yet seeing the full expected RF output power and am working with a friend to diagnose the cause (he also has a Radioberry and QRP Labs amp).
On Jun 26, 2024, at 9:05 AM, pa3gsb <pa3...@gmail.com> wrote:
pihpsdr does nowadays not contain specific radioberry code; during the start there was a special radioberry protocol (nowadays i should use the soapy sdr protocol); the intention was to make a standalone solution no usage of the openhpsdr protocol. But introducing this protocol for the radioberry openend a world of different SDR programs... so it happened that the firmware implements the protocol.
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