//
switch(i) {
case 3: // EXT1 with old pa board
- case 6: // EXT1-on-TX with old pa board
- case 1006: // EXT1-on-TX with new pa board: impossible, *assume* old pa board present
+ case 6: // EXT1-on-TX: assume old pa board
+ case 1006:
alex0 |= ALEX_RX_ANTENNA_EXT1 | ALEX_RX_ANTENNA_BYPASS;
break;
case 4: // EXT2 with old pa board
case 5: // XVTR with old pa board
alex0 |= ALEX_RX_ANTENNA_XVTR | ALEX_RX_ANTENNA_BYPASS;
break;
- case 104: // EXT2 with ANAN-7000: does not exit, use EXT2
+ case 104: // EXT2 with ANAN-7000: does not exit, use EXT1
case 103: // EXT1 with ANAN-7000
alex0 |= ALEX_RX_ANTENNA_EXT1 | ANAN7000_RX_SELECT;
break;
case 1005: // XVRT with new PA board
alex0 |= ALEX_RX_ANTENNA_XVTR;
break;
- case 7: // Bypass-on-TX with old PA board: does not exist, *assume* new pa board present
- case 1007: // Bypass-on-TX with new PA board
+ case 7: // Bypass-on-TX: assume new PA board
+ case 1007:
alex0 |= ALEX_RX_ANTENNA_BYPASS;
break;
}
//
switch(i) {
case 3: // EXT1 with old pa board
- case 6: // EXT1-on-TX with old pa board
- case 1006: // EXT1-on-TX with new pa board: impossible, *assume* old pa board present
+ case 6: // EXT1-on-TX: assume old pa board
+ case 1006:
output_buffer[C3] |= 0xC0;
break;
case 4: // EXT2 with old pa board
case 5: // XVTR with old pa board
output_buffer[C3] |= 0xE0;
break;
- case 104: // EXT2 with ANAN-7000: does not exit, use EXT2
+ case 104: // EXT2 with ANAN-7000: does not exit, use EXT1
case 103: // EXT1 with ANAN-7000
output_buffer[C3]|= 0x40;
break;
case 1005: // XVRT with new PA board
output_buffer[C3] |= 0x60;
break;
- case 7: // Bypass-on-TX with old PA board: does not exist, *assume* new pa board present
- case 1007: // Bypass-on-TX with new PA board
+ case 7: // Bypass-on-TX: assume new PA board
+ case 1007:
output_buffer[C3] |= 0x80;
break;
}