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@ -112,7 +112,8 @@ int actual_drive = -1;
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#ifdef TINYSA4
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const float si_drive_dBm [] = {-44.1, -30, -21.6, -17, -14, -11.7, -9.9, -8.4, -7.1, -6, -5, -4.2, -3.4, -2.7 , -2.1, -1.5, -1, -0.47, 0};
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const float adf_drive_dBm[] = {-13,-7.5,-4.2, 0};
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//const float adf_drive_dBm[] = {-13,-7.5,-4.2, 0};
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const float adf_drive_dBm[] = {-9, -4, 0, 0};
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const uint8_t drive_register[] = {0, 1, 2, 3, 4, 5, 6, 6, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18};
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float *drive_dBm = (float *) si_drive_dBm;
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const int min_drive = 0;
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@ -236,21 +237,29 @@ void set_output_path(freq_t f, float level)
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if (signal_path == PATH_HIGH) {
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return; //TODO setup high path
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}
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float ATTENUATION_RESERVE = 3.0;
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if (setting.modulation == MO_AM)
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ATTENUATION_RESERVE = 6.0;
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// if (signal_path != PATH_LEAKAGE)
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level += ATTENUATION_RESERVE;
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float ATTENUATION_RESERVE = 3.0;
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if (signal_path == PATH_LEAKAGE) {
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ATTENUATION_RESERVE = 0;
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}
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else {
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if (setting.modulation == MO_AM)
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ATTENUATION_RESERVE = 6.0;
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}
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level += ATTENUATION_RESERVE;
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float switch_atten = SWITCH_ATTENUATION;
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if (signal_path == PATH_LEAKAGE)
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#if 0
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switch_atten = 44.0;
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#else
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#ifdef TINYSA4
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switch_atten = 32.0;
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#else
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switch_atten = 31.0;
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#endif
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#endif
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float a = level - level_max(); // convert to all settings maximum power output equals a = zero
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if (a < -28 + BELOW_MAX_DRIVE(0)) { // Switch needed
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if (a < -switch_atten + BELOW_MAX_DRIVE(0)) { // Switch needed
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a = a + switch_atten;
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setting.atten_step = true;
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} else
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