All:
Attn: Larry
Regarding my thread of October 2, “MRC Tech 2 + Atlas Tman + Bmann = Peculiar Situation”, concerning the Atlas Trainman GP38-2s causing my MRC Tech 2 Railmaster 2400 power packs to heat up to “too hot to touch” temperatures when run on regular power for 30 to 40 minutes, but when run on pulse power the power pack just heated up to hot (that takes about 30 minutes.) The Atlas Trainman RS36s got the power pack pretty hot on regular power, but the Bachmann engines would only heat the power packs up minimally on either regular or pulse power.
All are run on straight DC (no DCC).
All my 5 loops (each with a separate power pack) have been direct-wired from power packs to tracks with #22 solid copper wire (with a silver-colored coating).
After reading the comments and advice in the previous thread, what I have done is:
A. Purchased some #16 gauge stranded copper wire and installed it as a buss wire for only Track #1 (outermost loop) [Radio Shack $20 for roll of 100’ double-wire, brown (speaker wire)] and removed all the old #22 gauge wire except for short track feeders
B. Purchased online a 0-3 amp DC ammeter and a 0-15 volt DC voltmeter [from Allied Electronics, Shurite brand, about $17 each], installed them, and have since used them on Track #1 and then Track #2 (separately)
C. Tested Trk#1 and Trk#2 separately with no load on with the two meters. The ammeter shows nothing at all so no hidden shorts on either
Track #1’s train has 63 cars, 22” radius; Track #2’s train has 51 cars, 19” radius; both loops are about 50’ long each.
After running (all in pairs) Atlas Trainman GP38-2s, RS36s, Bmann SD40-2s, GP30s, and FTA/B on Track #1 (buss-fed with with the #16 stranded copper wire plus about 5 #22 feeders), and Track #2 (all fed direct at about 5 points with #22 solid copper wire) here’s what I’ve found:
ALL engine PAIRS when run between 25 to 55 mph on the power pack speed scale in PULSE MODE showed between .25 to .5 amps each, 3 to 6 volts each.
ALL engine PAIRS when run between 25 to 50 mph on the power pack speed scale in REGULAR MODE showed between .3 to .5 amps each, 4 to 6 volts each.
All of these amp and volt readings above seem fine to me; nothing sticks out (or did I miss something?).
Conclusions:
1. The wiring (using #16 stranded with feeders vs. all #22 solid direct) doesn’t make any basic difference in current draw. This surprised me.
2. The Atlas Trainman GP38-2s and to a certain extent the Atlas Trainman RS36s got the MRC power packs’ surfaces too hot to touch in regular power mode no matter on Track #1 or Track #2. And the heat level went way down when I used pulse power on either track. Again the track wiring doesn’t make any difference.
3. The Bachmann engines run normally on either regular or pulse power, but they do keep the power packs’ surfaces less warm when run in pulse mode.
4. Based on all of this, plus the fact the my LHS was having trouble selling his Atlas Trainman engines (he had to keep marking the prices down), I’m guessing they are “dumbed- down” or non-straight-DC-friendly motors in these lower-end models and that they are therefore somewhat electronically hostile to at least some power packs. (I don’t have any of the “high end” Atlas engines to test.)
NOTE: This tentative conclusion about the Trainman motors is similar to my experience with their headlights on these models; the lights only turn on when the power pack speed setting is over 30mph or can they be programmed in DCC to come on immediately. In other words, the headlights and maybe the motors (and other aspects?) of Atlas’ locos are getting less and less straight-DC friendly and may eventually not operate at all on straight-DC.]
5. I still like and will continue to use (in pulse power only) the Atlas Trainman engines.
Do any you have any thoughts about this? Were these tests in any way helpful to you? I myself have learned a good bit.
DougC
Attn: Larry
Regarding my thread of October 2, “MRC Tech 2 + Atlas Tman + Bmann = Peculiar Situation”, concerning the Atlas Trainman GP38-2s causing my MRC Tech 2 Railmaster 2400 power packs to heat up to “too hot to touch” temperatures when run on regular power for 30 to 40 minutes, but when run on pulse power the power pack just heated up to hot (that takes about 30 minutes.) The Atlas Trainman RS36s got the power pack pretty hot on regular power, but the Bachmann engines would only heat the power packs up minimally on either regular or pulse power.
All are run on straight DC (no DCC).
All my 5 loops (each with a separate power pack) have been direct-wired from power packs to tracks with #22 solid copper wire (with a silver-colored coating).
After reading the comments and advice in the previous thread, what I have done is:
A. Purchased some #16 gauge stranded copper wire and installed it as a buss wire for only Track #1 (outermost loop) [Radio Shack $20 for roll of 100’ double-wire, brown (speaker wire)] and removed all the old #22 gauge wire except for short track feeders
B. Purchased online a 0-3 amp DC ammeter and a 0-15 volt DC voltmeter [from Allied Electronics, Shurite brand, about $17 each], installed them, and have since used them on Track #1 and then Track #2 (separately)
C. Tested Trk#1 and Trk#2 separately with no load on with the two meters. The ammeter shows nothing at all so no hidden shorts on either
Track #1’s train has 63 cars, 22” radius; Track #2’s train has 51 cars, 19” radius; both loops are about 50’ long each.
After running (all in pairs) Atlas Trainman GP38-2s, RS36s, Bmann SD40-2s, GP30s, and FTA/B on Track #1 (buss-fed with with the #16 stranded copper wire plus about 5 #22 feeders), and Track #2 (all fed direct at about 5 points with #22 solid copper wire) here’s what I’ve found:
ALL engine PAIRS when run between 25 to 55 mph on the power pack speed scale in PULSE MODE showed between .25 to .5 amps each, 3 to 6 volts each.
ALL engine PAIRS when run between 25 to 50 mph on the power pack speed scale in REGULAR MODE showed between .3 to .5 amps each, 4 to 6 volts each.
All of these amp and volt readings above seem fine to me; nothing sticks out (or did I miss something?).
Conclusions:
1. The wiring (using #16 stranded with feeders vs. all #22 solid direct) doesn’t make any basic difference in current draw. This surprised me.
2. The Atlas Trainman GP38-2s and to a certain extent the Atlas Trainman RS36s got the MRC power packs’ surfaces too hot to touch in regular power mode no matter on Track #1 or Track #2. And the heat level went way down when I used pulse power on either track. Again the track wiring doesn’t make any difference.
3. The Bachmann engines run normally on either regular or pulse power, but they do keep the power packs’ surfaces less warm when run in pulse mode.
4. Based on all of this, plus the fact the my LHS was having trouble selling his Atlas Trainman engines (he had to keep marking the prices down), I’m guessing they are “dumbed- down” or non-straight-DC-friendly motors in these lower-end models and that they are therefore somewhat electronically hostile to at least some power packs. (I don’t have any of the “high end” Atlas engines to test.)
NOTE: This tentative conclusion about the Trainman motors is similar to my experience with their headlights on these models; the lights only turn on when the power pack speed setting is over 30mph or can they be programmed in DCC to come on immediately. In other words, the headlights and maybe the motors (and other aspects?) of Atlas’ locos are getting less and less straight-DC friendly and may eventually not operate at all on straight-DC.]
5. I still like and will continue to use (in pulse power only) the Atlas Trainman engines.
Do any you have any thoughts about this? Were these tests in any way helpful to you? I myself have learned a good bit.
DougC
