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Rename REGULATORY_GAIN to REGULATORY_GAIN_LORA to allow for other RF gain controls
For example, Wi-Fi or BLE gain control (#3962) Signed-off-by: Andrew Yong <me@ndoo.sg>
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@ -83,8 +83,8 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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// Total system gain in dBm to subtract from Tx power to remain within regulatory ERP limit for non-licensed operators
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// This value should be set in variant.h and is PA gain + antenna gain (if system ships with an antenna)
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#ifndef REGULATORY_GAIN
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#define REGULATORY_GAIN 0
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#ifndef REGULATORY_GAIN_LORA
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#define REGULATORY_GAIN_LORA 0
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#endif
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// -----------------------------------------------------------------------------
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@ -478,8 +478,8 @@ void RadioInterface::applyModemConfig()
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power = loraConfig.tx_power;
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if ((power == 0) || ((power + REGULATORY_GAIN > myRegion->powerLimit) && !devicestate.owner.is_licensed))
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power = myRegion->powerLimit - REGULATORY_GAIN;
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if ((power == 0) || ((power + REGULATORY_GAIN_LORA > myRegion->powerLimit) && !devicestate.owner.is_licensed))
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power = myRegion->powerLimit - REGULATORY_GAIN_LORA;
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if (power == 0)
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power = 17; // Default to this power level if we don't have a valid regional power limit (powerLimit of myRegion defaults
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@ -144,12 +144,12 @@ static const uint8_t SCK = PIN_SPI_SCK;
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#define SX126X_DIO3_TCXO_VOLTAGE 1.8
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#ifdef EBYTE_E22_900M30S
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// 10dB PA gain and 30dB rated output; based on PA output table from Ebyte Robin <sales06@ebyte.com>
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#define REGULATORY_GAIN 10
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#define REGULATORY_GAIN_LORA 10
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#define SX126X_MAX_POWER 20
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#endif
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#ifdef EBYTE_E22_900M33S
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// 25dB PA gain and 33dB rated output; based on TX Power Curve from E22-900M33S_UserManual_EN_v1.0.pdf
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#define REGULATORY_GAIN 25
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#define REGULATORY_GAIN_LORA 25
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#define SX126X_MAX_POWER 8
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#endif
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#endif
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