Convert to QSD

This commit is contained in:
Jan Hamal Dvořák 2024-08-04 17:32:14 +02:00
parent 1fe4633601
commit c9da22afec
4 changed files with 504 additions and 362 deletions

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@ -4,11 +4,7 @@ Using RP2040 / Raspberry Pi Pico as a software-defined radio receiver.
See the [blog post](https://blog.porucha.net/2024/pico-sdr/) for more information. Older code the article is mostly referring to can be found in the branch `old` and a more up-to-date approach in the branch `master`. See the [blog post](https://blog.porucha.net/2024/pico-sdr/) for more information. Older code the article is mostly referring to can be found in the branch `old` and a more up-to-date approach in the branch `master`.
This branch contains code to use RP2040 and some passives as a superheterodyne receiver. It is still very much work in progress. This branch contains code to use RP2040 with a 1:4 multiplexer and some passives as a quadrature sampling decoder receiver. It is still very much work in progress.
## Circuit
Please refer to [the simulation](https://www.falstad.com/circuit/circuitjs.html?ctz=CQAgjCBMB0CsCmBaMAGEAOW0AsLboHYA2SWSIsWMIkAtFaFFCWNBZMAKEoE5wV06ENiE8ekYULZpUTOfM4BzfoMnhU2NfU4AlED2ybERTeh41jmmfpHyZ0IrHAOn9OJ0goC4AMyQhiOa+RGiBNE4AkgBi3ESihiBh-LiJQehgBlAgPtA+INp6BkZ+NprUwiBOPnZy2bn5DQywnABOtGSJGRIEHUkydpwA7smhXSOpNCicAMaVIRMgjhZBMkjeyA7YYjzoXiGwPuJGYC6cADaLsMs0PRJ9+Yzy288vz4k5B8REPGAi2HSQHzoNb5GbtO5BW6NcBIIQnEzbIgmMCQOiwWDEZyOJTghpQ8raYZQpLoEQLKbDUkBIJFcmtbJxBbYEzkypTTwQVEQmiQSBGFY2ELySS1BhPV4SsTgcRyTgRcbIcSlTpK6w5HxDOahIJXNBkqYANygBG5DOpk3AGHQnmF9Ea7jaGm1NDAYB81warBxbv8DR9cItU1m-oWIbtYFhiTFzDi4lYkDA1oIQJQVnO4EBppD92jcklkqjj2YifQPhN5BIBgIgm8FOViokVJVEjrTYbuPbUwARhgiOs+TJsK79LXOAAPXtORCkPgGPjTq4VPkgHQABU8uHHtBNiU8eWtRhtFXKAHFVxEAPIAHQAzs0J8R56gaNaIMgUHkyjQz5fb+hNU6iQsoBJR1mIEhkrqWhbgQBAQIcGCAsIEHgN+57XjePCalBSTMvykycD2GRvpQEDMnkiBAqCE7ugE1A0ORnREJ+UCaAAggAdgALvAHEcQAhmCrruqGmasrmTAQPCQJXL8sDiD4PhuhiWLNAA9tklQon6PiwNgPhWHAZZIjsyImO6PCuEWEBoBIeQakAA).
## Software ## Software
@ -34,4 +30,4 @@ Please refer to [the simulation](https://www.falstad.com/circuit/circuitjs.html?
4. Open `grc/PicoSDR-WBFM.grc` in GNU Radio Companion, adjust carrier frequency to match your favorite FM radio station and press `F6`. 4. Open `grc/PicoSDR-WBFM.grc` in GNU Radio Companion, adjust carrier frequency to match your favorite FM radio station and press `F6`.
5. Alternatively [gqrx](https://www.gqrx.dk/) works fine with `rtl_tcp` input mode. Maximum sample rate seem to be 400 ksps, above that the samples are dropped. Make sure to set LNA gain to 0, gain control is digital and does not provide any benefits unless you lower your sampling rate significantly. 5. Alternatively [gqrx](https://www.gqrx.dk/) works fine with `rtl_tcp` input mode. Maximum sample rate seem to be 400 ksps, above that the samples are dropped. Make sure to experiment with LNA gain. It might be digital, but it's supposed to be somewhere north of 12 dB.

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@ -37,7 +37,7 @@ blocks:
id: variable id: variable
parameters: parameters:
comment: '' comment: ''
value: '88_200_000' value: '94_600_000'
states: states:
bus_sink: false bus_sink: false
bus_source: false bus_source: false
@ -49,7 +49,7 @@ blocks:
id: variable id: variable
parameters: parameters:
comment: '' comment: ''
value: '192_000' value: '200_000'
states: states:
bus_sink: false bus_sink: false
bus_source: false bus_source: false
@ -374,7 +374,7 @@ blocks:
freq7: 100e6 freq7: 100e6
freq8: 100e6 freq8: 100e6
freq9: 100e6 freq9: 100e6
gain0: '30' gain0: '6'
gain1: '10' gain1: '10'
gain10: '10' gain10: '10'
gain11: '10' gain11: '10'

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@ -62,6 +62,10 @@ def bridge(frequency, device):
print("Begin") print("Begin")
header = fp.read(12)
if header:
peer.send(header)
try: try:
cmd = b"" cmd = b""