radios:dr-m06th
Differences
This shows you the differences between two versions of the page.
| Both sides previous revisionPrevious revisionNext revision | Previous revision | ||
| radios:dr-m06th [2026/02/13 23:12] – [Modifying an Alinco DR-M06TH 6m transciever for packet usage] g5rkt | radios:dr-m06th [2026/08/07 20:58] (current) – Mort upgrade: tighten emphasis markers so they parse again 0.0.0.0 | ||
|---|---|---|---|
| Line 11: | Line 11: | ||
| Mods: | Mods: | ||
| - | - Inputs for TX audio, pre/ | + | - Inputs for TX audio, pre/ |
| - | - Ouptuts for RX audio, pre and post filter | + | - Ouptuts for RX audio, pre and post filter\\ |
| - | - 6 pin mini-DIN connector on the rear | + | - 6 pin mini-DIN connector on the rear\\ |
| - | - Selectable " | + | - Selectable " |
| - | - 2nd IF filter replacement (6KHz -> 3KHz) | + | - 2nd IF filter replacement (+-6KHz -> +-4KHz or +-3KHz)\\ |
| - | - Second receiver SDR tap | + | - Second receiver SDR tap\\ |
| Line 58: | Line 58: | ||
| {{: | {{: | ||
| - | ** Detail of PA module ** | + | **Detail of PA module** |
| These radios (I've got two) don't have any thermal compound between the PA and heatsink so I liberally applied that horrid white Servisol paste to the PA and linear regulators. After holding the radio in transmit for a few minutes at full power the heatsink becomes appreciably warm, but not remotely hot - and the PA module is the same temperature so good thermal contact was achieved. After dialling back the RF power from 22W to 10W and leaving it in transmit for 10 minutes the heatsink had reached equilibrium and was ~40C with no forced airflow. At 10W the radio drew 1.6A at 12.2V, so that's ~10W thermal into the heatsink which it certainly appears appropriately sized for. | These radios (I've got two) don't have any thermal compound between the PA and heatsink so I liberally applied that horrid white Servisol paste to the PA and linear regulators. After holding the radio in transmit for a few minutes at full power the heatsink becomes appreciably warm, but not remotely hot - and the PA module is the same temperature so good thermal contact was achieved. After dialling back the RF power from 22W to 10W and leaving it in transmit for 10 minutes the heatsink had reached equilibrium and was ~40C with no forced airflow. At 10W the radio drew 1.6A at 12.2V, so that's ~10W thermal into the heatsink which it certainly appears appropriately sized for. | ||
| Line 69: | Line 69: | ||
| =====Filter replacement===== | =====Filter replacement===== | ||
| - | The radio is set up to receive +-5KHz FM voice, but on packet we're using +-2.5KHz | + | The radio is set up to receive +-5KHz FM voice, but on packet we're using +-2.5KHz |
| =====SDR Tap===== | =====SDR Tap===== | ||
| To give us a bit more information about what is happening on site I opted to fit an SDR tap to the radio and feed it into an RTL-SDR Blog v4. Initial experiments show that with an S9 signal into the receiver and 45dB gain set on the RTL a -30dBm signal is reported by the SDR, and in full power transmit a -10dBm signal is reported; well within the maximum input power of the RTL dongle. | To give us a bit more information about what is happening on site I opted to fit an SDR tap to the radio and feed it into an RTL-SDR Blog v4. Initial experiments show that with an S9 signal into the receiver and 45dB gain set on the RTL a -30dBm signal is reported by the SDR, and in full power transmit a -10dBm signal is reported; well within the maximum input power of the RTL dongle. | ||
| + | |||
| + | The SDR tap board employed was the PATV type with no LPF as this board is being fed directly from the input LPF in the radio. | ||
| {{: | {{: | ||
radios/dr-m06th.1771024339.txt.gz · Last modified: by g5rkt
