Showing posts with label Yaesu_FL-2100B. Show all posts
Showing posts with label Yaesu_FL-2100B. Show all posts

Tuesday, January 6, 2026

Yaesu FL2100B Repairs

 This is a Yaesu FL-2100B I repaired for a friend. He was using this on 29.600 FM with high carrier, around 600W out. He noticed power beginning to sag, then an arc under the hood, and the magic smoke was released. 

I found the plate choke burned from a hot-spot, the plate choke bypass cap on the dc hot side blown, grid resistors blown, and a shorted tube. 

I replaced the shorted tube, replaced the blown grid resistors, replaced the bypass doorknob, and coated the rf choke in the hot area. I used the grid dip meter and found a resonance around 29.700...very close to where he operates on 10m fm simplex. That's probably what burned the plate choke. I added a 2.5 mH choke between the main rf choke and the plate caps, and that pushed the resonance past 30mhz. After I tested the amp, I added an additional fan to aid in cooling when operating on 10m FM at 600w carrier. 

The completed repairs...


Grid resistors replaced...


The hv cap below the choke was replaced...


I coated the burned area. The shellac on the wire was darkened, and was coated with transformer shellac. A 2.5 mH choke was installed between the rf plate choke and the tube caps.


The additional choke moved the resonance well above the region used for 10m FM.


Idle current now at 50mA. 


Plate voltage at 2500vdc.



100w in yields abt 700 out. 70 watts in yields about 550, a safe level for short transmissions on 10 FM.



The tuned input was optimized for 29.600. 


Running it a bit after repairs.





Thursday, September 14, 2023

Yaesu FL-2100B Conv to GI7B Tubes

 This is a quick "walk-through" of a Yaesu FL-2100B amplifier that I converted from the old (expensive) 572 tubes, to the very durable (and inexpensive!) Russian GI-7B ceramic triodes. It's not a difficult conversion, and I've included the schematics at the end, of the tuned input and other mods to make this work. These amps will now run about 800 watts (depending on band) with these easily obtainable tubes. The GI-7BT is the very ruggedized version that was designed to operate in Russian military tanks!


First, I pulled all of the stuff associated with the 572 tubes and sockets out, except for the tuned input. I've seen several done by mounting the tubes horizontal and eliminating the tuned input, but I wanted to retain the input circuitry. I mount the tube socked in the holes where the fans were, for a vertical installation. I strip all wiring associated with the 12vac winding on the transformer, so the 12vac fil windings are above ground and only pass through the bifilar fil choke to the tube. Flip the amp on it's side, and power the fils for 24 hrs with no hv on. Temp fan seen on one of the pics. This helps regetter these NOS tubes.


 

 

With no HV, I engage the t/r relay with 12vdc, place a resistor from the tube cathode to ground, and change caps in the tuned input to match the input to these new tubes. I built a little variable cap stack and clamps to the frame, disconnect the caps in the tuned input, and adjust for a minimum SWR, The measure the caps at their settings, and change components accordingly. a 51 ohm resistor is used to simulate the tubes input imp, and my MFJ analyzer is used to measure the input imp.





 

 

Similarly, I use 1900 ohms from the plates to gnd (no HV!), engage the ptt relay only, and adjust the tank circuit accordingly. You'll notice some of the plate padding caps moved and/or changed. This gets things pretty close before I actually put fire in the wire :-)






 

 

We're now getting close to actually going online. I install a HV interrupter relay under the bottom, connected to the standby switch, to keep HV off the tubes until 3 minutes (at least) of warmup. 




 

I install a doubler on the old 6.3 vac (originally the fil circuit, no longer) windings to provide 12vdc for the switching relays. 



 

Here is a relay installed, activated by the standby switch, to open the low end of the HV winding to the hv doubler. This interrupts the HV circuit until the tubes are warmed and ready to come off of standby. 



 

Here you can see a pair of small 1-1/2" square fans installed under the chassis to keep the tube sockets cool. The GI-7B filament terminations can get quite hot. 


 

 

The fan seen in some of these photos is not a permanent install. I installed a pair of 4" whisper fans in side, blowing right across the tube coolers, and powered from the 12vdc circuit. This top fan was just for long duration testing. 






 

 

In this build, I use two pieces of plate glass between the RF choke and the upper metal RF shield. I moved the rf choke closer to the lid during the build, and this was required to eliminate arcing. In later conversions I leave the choke in the OEM locations, and space the tubes further apart to allow for clearance. Glass no longer required :-)


 

 

In this pic, you see the additional RF choke I installed in series with the plate choke. This moved the resonances of the choke assy clear of the various ham bands needed. 



 

These following charts show some of the tuned input and tank capacitor changes needed for the GI-7B tubes. 








This makes for a nice, clean, and quiet running 800+ watt amp with inexpensive GI7B tubes. You can also use the GI6B, GI7BT, and GI9B tubes in this mod. 

Dave WB4IUY

http://www.WB4IUY.net