Code Monkey home page Code Monkey logo

cc1101-x2d-heaters's People

Contributors

sixk avatar

Stargazers

 avatar  avatar  avatar  avatar  avatar  avatar  avatar  avatar  avatar  avatar

Watchers

 avatar  avatar  avatar  avatar  avatar  avatar  avatar

cc1101-x2d-heaters's Issues

HandlePlanning.py - Probably hitting a bug for times between 23:30 and 0:00

Hi,

When current time is between 23.30 & 0.00, the PyDeltia Cron Task is crashing ...

Traceback (most recent call last):
File "/home/osmc/Conde_Home_Automation/presence_automation.py", line 464, in
heater_control.UpdateHeatersStates()
File "/home/osmc/Conde_Home_Automation/heater_control.py", line 55, in UpdateHeatersStates
stat1=stateNames[zone1.getStatus(dayName, timeStr)]
File "/home/osmc/Conde_Home_Automation/HandlePlanning.py", line 59, in getStatus
hPos=self.getTimeHoraire(time)
File "/home/osmc/Conde_Home_Automation/HandlePlanning.py", line 50, in getTimeHoraire
if horaire <= time and self._horaireList[x+1] >time :
IndexError: list index out of range

Guillaume.

RTL_433 command is outdated

Hello,

Please can you update the readme because the command line to launch RTL_433 didn't work anymore.

Also, I used a Windows build of RTL_433 with this below command line but I don't get what is expected in your readme. What is wrong ?
rtl_433-rtlsdr -d 0 -A -f 868338000

Screen ouptut for this command:
rtl_433 version 22.11 branch at 202211191645 inputs file rtl_tcp RTL-SDR
Use -h for usage help and see https://triq.org/ for documentation.
Trying conf file at "C:\Users\sdragmsgsafnhvda\Downloads\rtl_433-win-msvc-x64-22.11\rtl_433.conf"...
Trying conf file at "C:\Users\sdragmsgsafnhvda\AppData\Local\rtl_433\rtl_433.conf"...
Trying conf file at "C:\ProgramData\rtl_433\rtl_433.conf"...

New defaults active, use "-Y classic -s 250k" for the old defaults!

Registered 191 out of 223 device decoding protocols [ 1-4 8 11-12 15-17 19-23 25-26 29-36 38-60 63 67-71 73-100 102-105 108-116 119 121 124-128 130-149 151-161 163-168 170-175 177-197 199 201-215 217-223 ]
Found Fitipower FC0012 tuner
Exact sample rate is: 1000000.026491 Hz
Sample rate set to 1000000 S/s.
Tuner gain set to Auto.
Tuned to 868.338MHz.
Allocating 15 (non-zero-copy) user-space buffers
baseband_demod_FM: low pass filter for 1000000 Hz at cutoff 200000 Hz, 5.0 us
Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 382, width: 3.88 ms ( 3884 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 70, width: 5 us [5;8] ( 5 S)
[ 2] count: 41, width: 2 us [2;2] ( 2 S)
[ 3] count: 42, width: 16 us [13;22] ( 16 S)
[ 4] count: 59, width: 4 us [4;4] ( 4 S)
[ 5] count: 46, width: 3 us [3;3] ( 3 S)
[ 6] count: 33, width: 10 us [9;12] ( 10 S)
[ 7] count: 9, width: 25 us [22;32] ( 25 S)
[ 8] count: 6, width: 38 us [33;44] ( 38 S)
[ 9] count: 29, width: 7 us [7;8] ( 7 S)
[10] count: 45, width: 1 us [1;1] ( 1 S)
[11] count: 1, width: 50 us [50;50] ( 50 S)
Gap width distribution:
[ 0] count: 107, width: 2 us [2;2] ( 2 S)
[ 1] count: 38, width: 5 us [5;6] ( 5 S)
[ 2] count: 15, width: 7 us [7;9] ( 7 S)
[ 3] count: 76, width: 3 us [3;3] ( 3 S)
[ 4] count: 83, width: 1 us [1;1] ( 1 S)
[ 5] count: 47, width: 4 us [4;4] ( 4 S)
[ 6] count: 2, width: 19 us [18;20] ( 19 S)
[ 7] count: 8, width: 10 us [9;12] ( 10 S)
[ 8] count: 3, width: 14 us [13;15] ( 14 S)
[ 9] count: 2, width: 30 us [28;32] ( 30 S)
Pulse period distribution:
[ 0] count: 8, width: 2 us [2;2] ( 2 S)
[ 1] count: 91, width: 10 us [9;14] ( 10 S)
[ 2] count: 121, width: 6 us [5;8] ( 6 S)
[ 3] count: 42, width: 17 us [15;22] ( 17 S)
[ 4] count: 39, width: 8 us [8;9] ( 8 S)
[ 5] count: 21, width: 13 us [13;15] ( 13 S)
[ 6] count: 16, width: 27 us [22;36] ( 27 S)
[ 7] count: 5, width: 44 us [39;51] ( 44 S)
[ 8] count: 14, width: 3 us [3;3] ( 3 S)
[ 9] count: 23, width: 4 us [4;4] ( 4 S)
[10] count: 1, width: 34 us [34;34] ( 34 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 108, width: 5 us [5;8] ( 5 S)
[ 2] count: 148, width: 2 us [2;2] ( 2 S)
[ 3] count: 46, width: 16 us [13;22] ( 16 S)
[ 4] count: 106, width: 4 us [4;4] ( 4 S)
[ 5] count: 123, width: 3 us [3;3] ( 3 S)
[ 6] count: 42, width: 10 us [9;12] ( 10 S)
[ 7] count: 11, width: 26 us [22;32] ( 26 S)
[ 8] count: 6, width: 38 us [33;44] ( 38 S)
[ 9] count: 43, width: 7 us [7;8] ( 7 S)
[10] count: 128, width: 1 us [1;1] ( 1 S)
[11] count: 1, width: 50 us [50;50] ( 50 S)
[12] count: 1, width: 20 us [20;20] ( 20 S)
Level estimates [high, low]: 1000, 3
RSSI: -12.1 dB SNR: 25.2 dB Noise: -37.4 dB
Frequency offsets [F1, F2]: -62, 347 (-0.9 kHz, +5.3 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {3887} 3f c1 f8 07 c7 ec 7f ff f3 f8 79 87 e3 f7 0f fe 1f f8 ff ff b9 ff be 7e 3f 8f ff ff fe 3f ff ff ff fe 7f ff ef 8f ff fe 7f f7 f9 ff ff ff ff ff 7f f3 ff ff ff ff 3f ff ff e7 bf ff fb f3 cf ff bf fd ff ff f8 ff ff 7f ff f7 f9 ff ff ff ff fe 7f df ff e7 ff f9 ff f8 f1 c3 ff fc 79 e1 e1 e3 f9 e1 ff 07 cf 3e 7e 7f 3e 7f 1f fc fb ff f1 20 e7 f1 e0 e1 c1 ce 6e 3f e3 e7 fe f0 79 ce 75 9e 9e 3c 1f ff ff ff e7 ff 3c 7f 1b fc 76 7e 67 ff f8 7c 3f bf 0e 7e f0 71 b3 8f 03 c7 c4 38 f0 20 7f e0 1f 7c 70 fe 7f 3f ff cf 83 c0 f8 f8 70 78 00 00 71 80 0e 00 c0 20 30 02 3c 40 c8 18 00 e3 8f 87 8f df ff ff f7 ff df b8 f8 ff ef ff bf 7f fe 1f f7 ff ff fc ff fb ff f9 cf 7f 9f ff fe 3f ff 9f ff fc 3f ff ff bd ff 7f e1 ff ff f9 ff ff 98 1f cc 7b cf fb dc 79 e7 fe 1e 78 3f 8c f7 f8 7f c7 bf 2f ff e1 ff 1d fe fe 7f ff fe 1e 7e 3f cf d7 ff ff 9b e0 cc 73 f8 fb de 3e 3e 7e 03 9e 07 f3 11 e8 60 1e 1f fe 0c ff c5 c7 cf c7 19 c0 7e 43 ff f3 c7 fc bf fe 7f 3f 83 fe 0f e3 c3 f8 07 02 3f c0 6f b1 80 1f 87 87 9e 1f 0f 0f ff 39 f2 0f f0 fc 72 3e 04 04 42 03 1f f3 ff fb fb fe 7f ff ef ff e7 f3 ff ef ef ff 9e 7d ff df ff ff ff ff ff fb ef 87 e7 fb ff ff 0f ff f9 ff ef 8f ff f3 8f ff fb f9 3c f0 47 80 00 80 00 12 00 0b 00 08 00 00 00 40 3c 3f f9 e7 ff f0 f9 9f c7 f7 f0 70 37 84 02 1c 41 18 71 c6 33 61 78 00 70 4c 13 83 0c 01 00 00 00 00 80 00 84 7c 07 e7 0d f8 83 c1 c3 c0 10 60 71 ff 81 f3 ff fb cf e3 ef 87 ff ee fb e7 ff fe ff ff ff ff ff f1 ff ff ff ff 7f f7 ff ff ff f0

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 39, width: 0.31 ms ( 312 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 11, width: 3 us [3;3] ( 3 S)
[ 2] count: 1, width: 16 us [16;16] ( 16 S)
[ 3] count: 8, width: 5 us [5;6] ( 5 S)
[ 4] count: 8, width: 2 us [2;2] ( 2 S)
[ 5] count: 5, width: 4 us [4;4] ( 4 S)
[ 6] count: 2, width: 1 us [1;1] ( 1 S)
[ 7] count: 2, width: 7 us [7;8] ( 7 S)
[ 8] count: 1, width: 9 us [9;9] ( 9 S)
Gap width distribution:
[ 0] count: 6, width: 2 us [2;2] ( 2 S)
[ 1] count: 11, width: 3 us [3;3] ( 3 S)
[ 2] count: 7, width: 4 us [4;4] ( 4 S)
[ 3] count: 7, width: 5 us [5;7] ( 5 S)
[ 4] count: 2, width: 10 us [10;11] ( 10 S)
[ 5] count: 4, width: 1 us [1;1] ( 1 S)
[ 6] count: 1, width: 17 us [17;17] ( 17 S)
Pulse period distribution:
[ 0] count: 1, width: 2 us [2;2] ( 2 S)
[ 1] count: 11, width: 5 us [5;6] ( 5 S)
[ 2] count: 2, width: 19 us [19;19] ( 19 S)
[ 3] count: 11, width: 7 us [7;9] ( 7 S)
[ 4] count: 6, width: 9 us [9;11] ( 9 S)
[ 5] count: 3, width: 14 us [14;15] ( 14 S)
[ 6] count: 2, width: 3 us [3;3] ( 3 S)
[ 7] count: 2, width: 4 us [4;4] ( 4 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 22, width: 3 us [3;3] ( 3 S)
[ 2] count: 2, width: 16 us [16;17] ( 16 S)
[ 3] count: 13, width: 5 us [5;6] ( 5 S)
[ 4] count: 14, width: 2 us [2;2] ( 2 S)
[ 5] count: 13, width: 4 us [4;4] ( 4 S)
[ 6] count: 6, width: 1 us [1;1] ( 1 S)
[ 7] count: 4, width: 7 us [7;8] ( 7 S)
[ 8] count: 3, width: 10 us [9;11] ( 10 S)
Level estimates [high, low]: 1000, 28
RSSI: -12.1 dB SNR: 15.5 dB Noise: -27.7 dB
Frequency offsets [F1, F2]: -57, 492 (-0.9 kHz, +7.5 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {316} 38 ff ff 1f 8f cc 7e 1c 07 88 78 01 e0 03 08 36 00 00 c1 81 c0 e0 ce 1c 7c 3f 38 f0 e3 f8 0f 8e 71 f8 77 bf e7 c6 ff 00

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 43, width: 0.31 ms ( 314 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 12, width: 3 us [3;3] ( 3 S)
[ 2] count: 11, width: 6 us [5;8] ( 6 S)
[ 3] count: 1, width: 14 us [14;14] ( 14 S)
[ 4] count: 7, width: 4 us [4;4] ( 4 S)
[ 5] count: 1, width: 11 us [11;11] ( 11 S)
[ 6] count: 6, width: 2 us [2;2] ( 2 S)
[ 7] count: 3, width: 1 us [1;1] ( 1 S)
[ 8] count: 1, width: 28 us [28;28] ( 28 S)
Gap width distribution:
[ 0] count: 12, width: 2 us [2;2] ( 2 S)
[ 1] count: 5, width: 5 us [5;5] ( 5 S)
[ 2] count: 9, width: 1 us [1;1] ( 1 S)
[ 3] count: 1, width: 7 us [7;7] ( 7 S)
[ 4] count: 9, width: 3 us [3;3] ( 3 S)
[ 5] count: 6, width: 4 us [4;4] ( 4 S)
Pulse period distribution:
[ 0] count: 1, width: 2 us [2;2] ( 2 S)
[ 1] count: 9, width: 5 us [5;6] ( 5 S)
[ 2] count: 4, width: 12 us [11;14] ( 12 S)
[ 3] count: 8, width: 4 us [4;4] ( 4 S)
[ 4] count: 15, width: 8 us [7;10] ( 8 S)
[ 5] count: 1, width: 17 us [17;17] ( 17 S)
[ 6] count: 3, width: 3 us [3;3] ( 3 S)
[ 7] count: 1, width: 29 us [29;29] ( 29 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 21, width: 3 us [3;3] ( 3 S)
[ 2] count: 17, width: 5 us [5;8] ( 5 S)
[ 3] count: 1, width: 14 us [14;14] ( 14 S)
[ 4] count: 13, width: 4 us [4;4] ( 4 S)
[ 5] count: 1, width: 11 us [11;11] ( 11 S)
[ 6] count: 18, width: 2 us [2;2] ( 2 S)
[ 7] count: 13, width: 1 us [1;1] ( 1 S)
[ 8] count: 1, width: 28 us [28;28] ( 28 S)
Level estimates [high, low]: 1000, 62
RSSI: -12.1 dB SNR: 12.1 dB Noise: -24.2 dB
Frequency offsets [F1, F2]: -39, 399 (-0.6 kHz, +6.1 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {315} 39 fe 0f bb 80 ff fc 79 ff c7 e3 be 7e e6 fc e3 3e 1f 82 70 70 fe 0e cd e2 33 c7 e3 a1 c1 e7 e3 c3 cc 3c 3f ff ff fd c0

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 42, width: 0.33 ms ( 328 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 13, width: 2 us [2;2] ( 2 S)
[ 2] count: 5, width: 4 us [4;4] ( 4 S)
[ 3] count: 10, width: 3 us [3;3] ( 3 S)
[ 4] count: 5, width: 1 us [1;1] ( 1 S)
[ 5] count: 8, width: 5 us [5;6] ( 5 S)
Gap width distribution:
[ 0] count: 12, width: 3 us [3;3] ( 3 S)
[ 1] count: 5, width: 2 us [2;2] ( 2 S)
[ 2] count: 11, width: 5 us [5;7] ( 5 S)
[ 3] count: 2, width: 20 us [19;22] ( 20 S)
[ 4] count: 1, width: 14 us [14;14] ( 14 S)
[ 5] count: 3, width: 9 us [9;10] ( 9 S)
[ 6] count: 3, width: 4 us [4;4] ( 4 S)
[ 7] count: 4, width: 1 us [1;1] ( 1 S)
Pulse period distribution:
[ 0] count: 3, width: 3 us [3;3] ( 3 S)
[ 1] count: 4, width: 4 us [4;4] ( 4 S)
[ 2] count: 8, width: 10 us [9;11] ( 10 S)
[ 3] count: 11, width: 5 us [5;6] ( 5 S)
[ 4] count: 2, width: 23 us [22;24] ( 23 S)
[ 5] count: 2, width: 14 us [14;15] ( 14 S)
[ 6] count: 11, width: 7 us [7;8] ( 7 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 18, width: 2 us [2;2] ( 2 S)
[ 2] count: 8, width: 4 us [4;4] ( 4 S)
[ 3] count: 22, width: 3 us [3;3] ( 3 S)
[ 4] count: 9, width: 1 us [1;1] ( 1 S)
[ 5] count: 19, width: 5 us [5;6] ( 5 S)
[ 6] count: 1, width: 7 us [7;7] ( 7 S)
[ 7] count: 2, width: 20 us [19;22] ( 20 S)
[ 8] count: 1, width: 14 us [14;14] ( 14 S)
[ 9] count: 3, width: 9 us [9;10] ( 9 S)
Level estimates [high, low]: 1000, 51
RSSI: -12.1 dB SNR: 12.9 dB Noise: -25.1 dB
Frequency offsets [F1, F2]: -3, 486 (-0.0 kHz, +7.4 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {334} 19 e0 39 80 00 01 00 03 e0 0f 03 e0 61 c1 18 88 01 c0 00 07 18 26 07 b0 30 06 0f 8d f0 7b 18 39 c7 1e 0f 87 c7 e7 0c 7c 77 00

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 46, width: 0.32 ms ( 320 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 9, width: 1 us [1;1] ( 1 S)
[ 2] count: 8, width: 5 us [5;6] ( 5 S)
[ 3] count: 5, width: 2 us [2;2] ( 2 S)
[ 4] count: 11, width: 4 us [4;4] ( 4 S)
[ 5] count: 1, width: 8 us [8;8] ( 8 S)
[ 6] count: 10, width: 3 us [3;3] ( 3 S)
[ 7] count: 1, width: 11 us [11;11] ( 11 S)
Gap width distribution:
[ 0] count: 6, width: 2 us [2;2] ( 2 S)
[ 1] count: 16, width: 3 us [3;3] ( 3 S)
[ 2] count: 8, width: 4 us [4;4] ( 4 S)
[ 3] count: 8, width: 6 us [5;8] ( 6 S)
[ 4] count: 5, width: 1 us [1;1] ( 1 S)
[ 5] count: 2, width: 9 us [9;9] ( 9 S)
Pulse period distribution:
[ 0] count: 2, width: 2 us [2;2] ( 2 S)
[ 1] count: 3, width: 4 us [4;4] ( 4 S)
[ 2] count: 18, width: 7 us [7;11] ( 7 S)
[ 3] count: 13, width: 5 us [5;6] ( 5 S)
[ 4] count: 5, width: 12 us [10;14] ( 12 S)
[ 5] count: 3, width: 3 us [3;3] ( 3 S)
[ 6] count: 1, width: 15 us [15;15] ( 15 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 14, width: 1 us [1;1] ( 1 S)
[ 2] count: 13, width: 5 us [5;6] ( 5 S)
[ 3] count: 12, width: 2 us [2;2] ( 2 S)
[ 4] count: 19, width: 4 us [4;4] ( 4 S)
[ 5] count: 4, width: 7 us [7;8] ( 7 S)
[ 6] count: 26, width: 3 us [3;3] ( 3 S)
[ 7] count: 3, width: 9 us [9;11] ( 9 S)
Level estimates [high, low]: 1000, 38
RSSI: -12.1 dB SNR: 14.2 dB Noise: -26.3 dB
Frequency offsets [F1, F2]: 17, 432 (+0.3 kHz, +6.6 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
view at https://triq.org/pdv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
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {322} 23 e1 0c 3c 07 87 8f f7 38 78 07 07 e4 71 b8 3c 7f f1 e2 1b 3e 35 f8 1e 3f 10 f1 07 1c 7c 07 e0 0e 20 78 80 38 f8 79 e7 00

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 17, width: 0.14 ms ( 135 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 2, width: 3 us [3;3] ( 3 S)
[ 2] count: 1, width: 25 us [25;25] ( 25 S)
[ 3] count: 4, width: 4 us [4;4] ( 4 S)
[ 4] count: 2, width: 5 us [5;5] ( 5 S)
[ 5] count: 4, width: 2 us [2;2] ( 2 S)
[ 6] count: 1, width: 9 us [9;9] ( 9 S)
[ 7] count: 1, width: 1 us [1;1] ( 1 S)
[ 8] count: 1, width: 7 us [7;7] ( 7 S)
Gap width distribution:
[ 0] count: 9, width: 2 us [2;2] ( 2 S)
[ 1] count: 1, width: 4 us [4;4] ( 4 S)
[ 2] count: 3, width: 6 us [5;7] ( 6 S)
[ 3] count: 1, width: 1 us [1;1] ( 1 S)
[ 4] count: 1, width: 3 us [3;3] ( 3 S)
[ 5] count: 1, width: 9 us [9;9] ( 9 S)
Pulse period distribution:
[ 0] count: 1, width: 2 us [2;2] ( 2 S)
[ 1] count: 8, width: 6 us [5;7] ( 6 S)
[ 2] count: 1, width: 31 us [31;31] ( 31 S)
[ 3] count: 2, width: 4 us [4;4] ( 4 S)
[ 4] count: 1, width: 16 us [16;16] ( 16 S)
[ 5] count: 1, width: 3 us [3;3] ( 3 S)
[ 6] count: 2, width: 10 us [9;11] ( 10 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 3, width: 3 us [3;3] ( 3 S)
[ 2] count: 1, width: 25 us [25;25] ( 25 S)
[ 3] count: 5, width: 4 us [4;4] ( 4 S)
[ 4] count: 4, width: 5 us [5;6] ( 5 S)
[ 5] count: 14, width: 2 us [2;2] ( 2 S)
[ 6] count: 2, width: 9 us [9;9] ( 9 S)
[ 7] count: 2, width: 1 us [1;1] ( 1 S)
[ 8] count: 2, width: 7 us [7;7] ( 7 S)
Level estimates [high, low]: 1000, 65
RSSI: -12.1 dB SNR: 11.9 dB Noise: -24.0 dB
Frequency offsets [F1, F2]: 11, 485 (+0.2 kHz, +7.4 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {137} 38 7f ff ff c0 f3 e7 cf 67 fc 07 3c 4c 1f cc c0 1e 00

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 17, width: 0.12 ms ( 115 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 2, width: 3 us [3;3] ( 3 S)
[ 2] count: 4, width: 2 us [2;2] ( 2 S)
[ 3] count: 4, width: 5 us [5;5] ( 5 S)
[ 4] count: 2, width: 7 us [7;8] ( 7 S)
[ 5] count: 2, width: 11 us [11;12] ( 11 S)
[ 6] count: 1, width: 1 us [1;1] ( 1 S)
[ 7] count: 1, width: 4 us [4;4] ( 4 S)
Gap width distribution:
[ 0] count: 4, width: 2 us [2;2] ( 2 S)
[ 1] count: 7, width: 1 us [1;1] ( 1 S)
[ 2] count: 2, width: 4 us [4;4] ( 4 S)
[ 3] count: 1, width: 5 us [5;5] ( 5 S)
[ 4] count: 1, width: 3 us [3;3] ( 3 S)
[ 5] count: 1, width: 7 us [7;7] ( 7 S)
Pulse period distribution:
[ 0] count: 1, width: 2 us [2;2] ( 2 S)
[ 1] count: 1, width: 4 us [4;4] ( 4 S)
[ 2] count: 7, width: 6 us [5;7] ( 6 S)
[ 3] count: 3, width: 3 us [3;3] ( 3 S)
[ 4] count: 2, width: 10 us [9;11] ( 10 S)
[ 5] count: 1, width: 13 us [13;13] ( 13 S)
[ 6] count: 1, width: 19 us [19;19] ( 19 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 3, width: 3 us [3;3] ( 3 S)
[ 2] count: 9, width: 2 us [2;2] ( 2 S)
[ 3] count: 5, width: 5 us [5;5] ( 5 S)
[ 4] count: 3, width: 7 us [7;8] ( 7 S)
[ 5] count: 2, width: 11 us [11;12] ( 11 S)
[ 6] count: 8, width: 1 us [1;1] ( 1 S)
[ 7] count: 3, width: 4 us [4;4] ( 4 S)
Level estimates [high, low]: 1000, 154
RSSI: -12.1 dB SNR: 8.1 dB Noise: -20.3 dB
Frequency offsets [F1, F2]: -4, 441 (-0.1 kHz, +6.7 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
view at https://triq.org/pdv/#AAB015080100000003000200050007000B0001000482969755+AAB014080100000003000200050007000B00010004A6A355+AAB014080100000003000200050007000B00010004A6A755+AAB01A080100000003000200050007000B00010004B6C1C2D2E2B6F6D455+AAB014080100000003000200050007000B00010004B6B255
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {117} 3b 86 c1 b0 fb fc 7f 3f f9 3e f7 ff 80 fb e0

Detected OOK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 1200, width: 605.99 ms (605990 S)
Pulse width distribution:
[ 0] count: 726, width: 249 us [204;297] ( 249 S)
[ 1] count: 465, width: 471 us [431;516] ( 471 S)
[ 2] count: 7, width: 187 us [165;200] ( 187 S)
[ 3] count: 1, width: 33 us [33;33] ( 33 S)
[ 4] count: 1, width: 78 us [78;78] ( 78 S)
Gap width distribution:
[ 0] count: 565, width: 112 us [89;139] ( 112 S)
[ 1] count: 476, width: 269 us [217;337] ( 269 S)
[ 2] count: 94, width: 76 us [61;92] ( 76 S)
[ 3] count: 29, width: 55 us [46;66] ( 55 S)
[ 4] count: 20, width: 146 us [139;162] ( 146 S)
[ 5] count: 7, width: 42 us [37;46] ( 42 S)
[ 6] count: 2, width: 16 us [16;17] ( 16 S)
[ 7] count: 1, width: 339 us [339;339] ( 339 S)
[ 8] count: 2, width: 212 us [210;214] ( 212 S)
[ 9] count: 1, width: 25 us [25;25] ( 25 S)
[10] count: 1, width: 12 us [12;12] ( 12 S)
[11] count: 1, width: 20 us [20;20] ( 20 S)
Pulse period distribution:
[ 0] count: 575, width: 364 us [309;450] ( 364 S)
[ 1] count: 334, width: 729 us [703;756] ( 729 S)
[ 2] count: 270, width: 545 us [458;573] ( 545 S)
[ 3] count: 17, width: 270 us [238;292] ( 270 S)
[ 4] count: 1, width: 50 us [50;50] ( 50 S)
[ 5] count: 2, width: 183 us [181;185] ( 183 S)
Pulse timing distribution:
[ 0] count: 1190, width: 256 us [204;317] ( 256 S)
[ 1] count: 465, width: 471 us [431;516] ( 471 S)
[ 2] count: 610, width: 113 us [78;200] ( 113 S)
[ 3] count: 27, width: 49 us [33;58] ( 49 S)
[ 4] count: 86, width: 72 us [58;86] ( 72 S)
[ 5] count: 15, width: 322 us [315;339] ( 322 S)
[ 6] count: 2, width: 16 us [16;17] ( 16 S)
[ 7] count: 1, width: 25 us [25;25] ( 25 S)
[ 8] count: 2, width: 160 us [158;162] ( 160 S)
[ 9] count: 1, width: 12 us [12;12] ( 12 S)
[10] count: 1, width: 20 us [20;20] ( 20 S)
Level estimates [high, low]: 1000, 212
RSSI: -12.1 dB SNR: 6.7 dB Noise: -18.9 dB
Frequency offsets [F1, F2]: 235, 0 (+3.6 kHz, +0.0 kHz)
Guessing modulation: No clue...

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 43, width: 0.31 ms ( 306 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 15, width: 4 us [4;4] ( 4 S)
[ 2] count: 5, width: 5 us [5;6] ( 5 S)
[ 3] count: 5, width: 2 us [2;2] ( 2 S)
[ 4] count: 6, width: 8 us [7;9] ( 8 S)
[ 5] count: 3, width: 1 us [1;1] ( 1 S)
[ 6] count: 6, width: 3 us [3;3] ( 3 S)
[ 7] count: 1, width: 16 us [16;16] ( 16 S)
[ 8] count: 1, width: 12 us [12;12] ( 12 S)
Gap width distribution:
[ 0] count: 11, width: 2 us [2;2] ( 2 S)
[ 1] count: 10, width: 1 us [1;1] ( 1 S)
[ 2] count: 11, width: 4 us [4;4] ( 4 S)
[ 3] count: 7, width: 3 us [3;3] ( 3 S)
[ 4] count: 3, width: 5 us [5;5] ( 5 S)
Pulse period distribution:
[ 0] count: 2, width: 2 us [2;2] ( 2 S)
[ 1] count: 12, width: 5 us [5;6] ( 5 S)
[ 2] count: 5, width: 10 us [10;12] ( 10 S)
[ 3] count: 12, width: 7 us [7;8] ( 7 S)
[ 4] count: 4, width: 3 us [3;3] ( 3 S)
[ 5] count: 3, width: 13 us [13;15] ( 13 S)
[ 6] count: 3, width: 4 us [4;4] ( 4 S)
[ 7] count: 1, width: 17 us [17;17] ( 17 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 26, width: 4 us [4;4] ( 4 S)
[ 2] count: 8, width: 5 us [5;6] ( 5 S)
[ 3] count: 16, width: 2 us [2;2] ( 2 S)
[ 4] count: 6, width: 8 us [7;9] ( 8 S)
[ 5] count: 13, width: 1 us [1;1] ( 1 S)
[ 6] count: 14, width: 3 us [3;3] ( 3 S)
[ 7] count: 1, width: 16 us [16;16] ( 16 S)
[ 8] count: 1, width: 12 us [12;12] ( 12 S)
Level estimates [high, low]: 1000, 212
RSSI: -12.1 dB SNR: 6.7 dB Noise: -18.9 dB
Frequency offsets [F1, F2]: -54, 416 (-0.8 kHz, +6.3 kHz)
Guessing modulation: Non Return to Zero coding (Pulse Code)
Attempting demodulation... short_width: 1, long_width: 1, reset_limit: 1024, sync_width: 0
Use a flex decoder with -X 'n=name,m=FSK_PCM,s=1,l=1,r=1024'
pulse_slicer_pcm(): Analyzer Device
bitbuffer:: Number of rows: 1
[00] {309} 3d f8 78 f8 36 ff 85 e7 99 e1 e3 0f e1 c7 bb cf 9e 1f 93 c3 fc 1e fe 0e 78 71 e1 f3 87 b7 1e 11 ff fe ff f1 fe 7f c0

Detected FSK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 19, width: 0.13 ms ( 131 S)
Pulse width distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 2, width: 7 us [7;7] ( 7 S)
[ 2] count: 3, width: 5 us [5;5] ( 5 S)
[ 3] count: 4, width: 1 us [1;1] ( 1 S)
[ 4] count: 6, width: 3 us [3;3] ( 3 S)
[ 5] count: 1, width: 4 us [4;4] ( 4 S)
[ 6] count: 2, width: 2 us [2;2] ( 2 S)
Gap width distribution:
[ 0] count: 2, width: 2 us [2;2] ( 2 S)
[ 1] count: 1, width: 7 us [7;7] ( 7 S)
[ 2] count: 8, width: 3 us [3;3] ( 3 S)
[ 3] count: 3, width: 5 us [5;5] ( 5 S)
[ 4] count: 1, width: 10 us [10;10] ( 10 S)
[ 5] count: 3, width: 4 us [4;4] ( 4 S)
Pulse period distribution:
[ 0] count: 1, width: 2 us [2;2] ( 2 S)
[ 1] count: 2, width: 13 us [13;14] ( 13 S)
[ 2] count: 5, width: 8 us [8;9] ( 8 S)
[ 3] count: 2, width: 4 us [4;4] ( 4 S)
[ 4] count: 1, width: 10 us [10;10] ( 10 S)
[ 5] count: 7, width: 5 us [5;6] ( 5 S)
Pulse timing distribution:
[ 0] count: 1, width: 0 us [0;0] ( 0 S)
[ 1] count: 4, width: 7 us [7;7] ( 7 S)
[ 2] count: 6, width: 5 us [5;5] ( 5 S)
[ 3] count: 4, width: 1 us [1;1] ( 1 S)
[ 4] count: 14, width: 3 us [3;3] ( 3 S)
[ 5] count: 4, width: 4 us [4;4] ( 4 S)
[ 6] count: 4, width: 2 us [2;2] ( 2 S)
[ 7] count: 1, width: 10 us [10;10] ( 10 S)
Level estimates [high, low]: 1036, 278
RSSI: -12.0 dB SNR: 5.7 dB Noise: -17.7 dB
Frequency offsets [F1, F2]: 63, 380 (+1.0 kHz, +5.8 kHz)
Guessing modulation: No clue...
view at https://triq.org/pdv/#AAB01408010000000700050001000300040002000A869155+AAB01508010000000700050001000300040002000AA4B4C255+AAB01308010000000700050001000300040002000AC255+AAB01708010000000700050001000300040002000AA494B4D6C755+AAB01808010000000700050001000300040002000AB5A5C4E4C4B255+AAB01408010000000700050001000300040002000AE5C155

Detected OOK package 2023-01-14 17:24:48
Analyzing pulses...
Total count: 781, width: 381.87 ms (381874 S)
Pulse width distribution:
[ 0] count: 486, width: 242 us [193;298] ( 242 S)
[ 1] count: 271, width: 464 us [431;498] ( 464 S)
[ 2] count: 22, width: 178 us [162;193] ( 178 S)
[ 3] count: 1, width: 85 us [85;85] ( 85 S)
[ 4] count: 1, width: 18 us [18;18] ( 18 S)
Gap width distribution:
[ 0] count: 305, width: 272 us [226;333] ( 272 S)
[ 1] count: 368, width: 118 us [89;159] ( 118 S)
[ 2] count: 77, width: 78 us [61;94] ( 78 S)
[ 3] count: 11, width: 38 us [31;45] ( 38 S)
[ 4] count: 12, width: 54 us [45;62] ( 54 S)
[ 5] count: 1, width: 14 us [14;14] ( 14 S)
[ 6] count: 4, width: 27 us [24;30] ( 27 S)
[ 7] count: 1, width: 18 us [18;18] ( 18 S)
[ 8] count: 1, width: 373 us [373;373] ( 373 S)
Pulse period distribution:
[ 0] count: 177, width: 538 us [439;626] ( 538 S)
[ 1] count: 197, width: 726 us [690;756] ( 726 S)
[ 2] count: 370, width: 362 us [290;429] ( 362 S)
[ 3] count: 34, width: 265 us [227;289] ( 265 S)
[ 4] count: 2, width: 182 us [180;184] ( 182 S)
Pulse timing distribution:
[ 0] count: 767, width: 251 us [193;312] ( 251 S)
[ 1] count: 272, width: 464 us [373;498] ( 464 S)
[ 2] count: 38, width: 162 us [132;193] ( 162 S)
[ 3] count: 359, width: 116 us [76;139] ( 116 S)
[ 4] count: 2, width: 18 us [18;18] ( 18 S)
[ 5] count: 24, width: 314 us [304;333] ( 314 S)
[ 6] count: 73, width: 77 us [54;92] ( 77 S)
[ 7] count: 11, width: 38 us [31;45] ( 38 S)
[ 8] count: 1, width: 14 us [14;14] ( 14 S)
[ 9] count: 4, width: 27 us [24;30] ( 27 S)
[10] count: 10, width: 53 us [45;60] ( 53 S)
[11] count: 1, width: 10001 us [10001;10001] (10001 S)
Level estimates [high, low]: 1141, 266
RSSI: -11.6 dB SNR: 6.3 dB Noise: -17.9 dB
Frequency offsets [F1, F2]: -498, 0 (-7.6 kHz, +0.0 kHz)
Guessing modulation: No clue...

Recommend Projects

  • React photo React

    A declarative, efficient, and flexible JavaScript library for building user interfaces.

  • Vue.js photo Vue.js

    ๐Ÿ–– Vue.js is a progressive, incrementally-adoptable JavaScript framework for building UI on the web.

  • Typescript photo Typescript

    TypeScript is a superset of JavaScript that compiles to clean JavaScript output.

  • TensorFlow photo TensorFlow

    An Open Source Machine Learning Framework for Everyone

  • Django photo Django

    The Web framework for perfectionists with deadlines.

  • D3 photo D3

    Bring data to life with SVG, Canvas and HTML. ๐Ÿ“Š๐Ÿ“ˆ๐ŸŽ‰

Recommend Topics

  • javascript

    JavaScript (JS) is a lightweight interpreted programming language with first-class functions.

  • web

    Some thing interesting about web. New door for the world.

  • server

    A server is a program made to process requests and deliver data to clients.

  • Machine learning

    Machine learning is a way of modeling and interpreting data that allows a piece of software to respond intelligently.

  • Game

    Some thing interesting about game, make everyone happy.

Recommend Org

  • Facebook photo Facebook

    We are working to build community through open source technology. NB: members must have two-factor auth.

  • Microsoft photo Microsoft

    Open source projects and samples from Microsoft.

  • Google photo Google

    Google โค๏ธ Open Source for everyone.

  • D3 photo D3

    Data-Driven Documents codes.