TOS Cylon Raider Pt 5

<< Part 4

The wing tip halves were glued together and clamped all around the edges to ensure correct registration while the glue set. These seams then required a number of iterations of putty-sand-prime until all traces of the seam had been eradicated. The guns were also glued together and the seams addressed on these too.

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In some shots of the Raider in flight, and on at least one of the studio miniatures, there are additional lights visible on the underside, on the outside of the channels that run from the intakes to the engines – these appear to be mounted in small reflectors recessed into the fuselage. Using a short length of 10mm dia rod, I machined up a couple of these which are glued on the inside of the fuselage and hold a 5mm LED, also driven by the controller PCB.

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A few strips of styrene were added to the fuselage top to hold the battery box in place – this slips up under the centre console quite happily and the styrene stops it sliding around, but still allow it to be pulled forward for switching on/off and battery changing. A hole was drilled just in front for the wires to pass down into the electronics inside.

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When the 2 halves of the fuselage are placed together, the small “V” tabs on the top half are quite badly out of alignment with the bottom, protruding a couple of mm at the ends. The wingtip sides cover most of the rear tabs, but the front ones remain visible. I decided to cut these tabs off the top half completely, and then just fill in the gap on the bottom half with some plastic card – it was far easier this way to get the whole thing flush and smooth.

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Whilst waiting for some other bits to set, I decided to start doing a bit of pre-shading of the panel lines with black over the grey primer coat. This looks quite extreme but once the top coat goes on, most of it will having been covered up again, leaving just a hint of depth.

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A quick final test of all the lighting in place

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Part 6 >>

TOS Cylon Raider Pt 4

<< Part 3

The guns are to be lit using 1.5mm fibre optic, connected to the gun LED inside the fuselage. The guns are moulded in 2 halves, but one half has the complete solid gun barrel which makes it much more difficult to hollow out than if it was also in 2 parts. It could be possible to carefully drill out the centre of the barrel but I decided it would be much easier to make new ones from brass tubing. The barrel has 3 different diameters along it’s length – I found that brass tube in 3/32″, 1/8″ & 5/32″ is almost an exact match for the kit barrel and each section of tube slips over the next smaller diameter perfectly. All the bits of tube were cut and assembled into the new barrels with a touch of superglue. I made them 1/4 longer than the protruding bit of the kit parts so that they could be embedded inside the gun body.
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The plastic barrels were sawn off and a 5/32″ hole was opened up in the end of the guns – I just used a round file on each half until the hole was the right size. I added a small ball of putty inside the front of each body half, inserted the brass barrels to the required length and then squeezed the whole assembly together, making sure the barrel protruded straight out and was not drooping, then gently separated the body again and put aside for the putty to set.
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The 1.5mm fibre optic is the perfect size to fit inside the gun barrel but because it is quite thick, it is not very flexible. This creates a few issues trying to get the fibre into the gun. It needs to come from the main body, into the wing tip section, and then up through the gun mounting peg and into the barrel. Due to the inflexibility, it’s necessary to cut angled slots in the gun body and mounting location of the wing tip so that the fibre will pass through more easily without tight bends. I started cutting a slot in the bottom gun body piece and then widened and angled it using a thin round file – the goal was to get as shallow a path as possible up into the body.
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Similarly where the rear mounting foot fits into the hole in the wing tip upper section, I created another angled slot to match up. When the 2 pieces are together, the fibre can then pass up from inside the wing tip to the gun body with as little bending as possible, yet still be almost totally invisible from the outside.
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To get the fibre from the main body into the wing tip, a hole is needed in each. A suitable place was selected in the side of the wing tip and a slot opened up with a file. Holding the wing tip up to where it attaches on the main body, it’s easy to mark where the corresponding hole needs to be.
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Finally a check that everything lines up – the fibre goes through the wing tip side, up into the gun body, and out of the barrel.
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Part 5 >>

TOS Cylon Raider Pt 3

<< Part 2
Not much progress recently due to having been away on holiday, but the first batch of PCBs for the lighting modules have just arrived.

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Looks like a good fit!
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Update!

Modules assembled with surface mount components. An Atmel ATTiny84 microcontroller drives the flickering for the engine LEDs plus a pulsed laser gun effect.

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All wired up to the battery, static headlights and single LED for laser (this will be piped to the guns via fibre optic).

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Finally a quick test in the dark with the modules inside the Raider body.

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Part 4 >>

Aerial Hunter Killer

Pegasus recently released a styrene version of the Aerial HK from the Terminator franchise – a vinyl version was released by Horizon in the late 90’s but the kit itself was soft on detail and suffered badly from droop. I had one for many years but never got around to building it…

The Pegasus version is about half the size (1/35th scale) but much more detailed, and is a perfect candidate for lighting. There are three areas to tackle – the big searchlights at the front, the underbelly lights and the red/blue tail lights. The kit comes with clear parts for all of these which simplifies things considerably.

I decided to tackle the hardest area first – the tail lights. Each tail fin has a light on the front and back tops, red on the left and blue on the right. The clear insert provided with the kit is a straight bar that runs the length of the fin tip and protrudes at each side, but I needed separate pieces so that I could get the light inside somehow. Available space is very tight – too small for even a surface mount LED let alone one with leads so I decided to go the fibre optic route instead. With a bit of shaving to the inside of the fin pieces, it’s possible to get some 1mm FO up and out of the holes where the lights are. I was originally going to use the ends of the kit parts, cutting them off and then drilling a 1mm hole in the back to accept the FO, but in the end I decided to make some new ones from a bit of the scrap clear sprue – this way I could make them slightly bigger and more robust.

Turning Light End On Lathe

For each light, a piece of sprue was turned down to about 2mm dia in my lathe, and then the end was rounded off using sanding sticks. The 1mm hole was then drilled by hand using a pin vice to a depth of about 2mm – just enough to securely glue the light onto the end of the FO. I also warmed the FO over a candle and bent it to approx 90 degrees to relieve the stress of flexing it down the tail piece. Even 1mm FO is quite springy!

Tail Fin Lights

This was repeated for all 4 lights, and then the ends of each pair were secured together inside a short piece of aluminium tube. A slightly larger tube was glued over a 3mm LED (one red, one blue) so that the FO could be mated squarely with the end of the LED.
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The front searchlights were next – the 2-part housings each had 2 locating pin/sockets on the inside (somewhat over engineered for such small pieces!) which were removed with a Dremel to allow space for the LED and wiring before gluing together.
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The clear lenses for these lights conveniently have 3mm holes in already so it was easy to just push in a LED. The leads were cut down to about 5mm and bent up to allow the LED to sit snugly inside the housing once attached to the lens. The wires pass out of the top and just squeeze over the bulkhead into the main fuselage cavity.
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The belly lights were the easiest – they just require a 3mm hole drilling through the fuselage where the lenses for these normally go, and a couple more LEDs popping in from inside.

Originally I was going to wire all the lights up as static as this is how they appear in the opening sequence of T1, but in the end decided to jazz things up a bit. First I wanted the tail lights to blink like aircraft navigation lights, which would be easy to do with one of my generic controller boards. Then since the controller was going in anyway, I decided I might as well do something with the search lights too. I haven’t decided exactly what yet but will probably go through some sort of powering up – search – power down cycle…

Alpha UFO Lighting Module Version 2

Having done some work recently with the Atmel ATTiny 84 microcontroller in a SOIC surface mount package, I had a casual thought back to the lighting module I did for the Pegasus Alpha Centauri UFO kit a couple of years ago – namely “could I now get all the control circuitry for animating the LEDs onto the same PCB inside the UFO.

After several weeks of fiddling with the design, the answer is a resounding yes!.

So here is V2. Totally self contained. Everything is on the one PCB that just drops into the UFO around the centre crew compartment. The mode selection switch has even been incorporated as a magnetically operated reed switch on the board. Just wave a magnet over the part of the saucer that is resides under to switch between all the lighting modes, or low power standby.

Ok there’s one caveat. There’s still no room for a battery, so a couple of leads still have to be attached to an external 4.5V supply – 3AAA’s which should be good for a couple of days continuous operation.

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Here is it in action

Police Car Lightbar

One of the examples I made up for the original V1 LED driver was a police car lightbar to fit a 1/24th car kit (The one I had was an Lindberg Ford Crown Victoria). Whilst the PCB with the LEDs on fitted inside the clear cover of the kit, the driver board was way too big to be hidden anywhere in the car, and also required 5 wires to connect to the light board.

Having played around with surface mount components and various other Atmel microcrontrollers for a while I decided to see if I could get a complete driving circuit onto just the light board. An Tiny85 in a SOIC package was small enough to fit in the center of the board, and provides the 4 ouput ports required to drive the LEDs. It will run happily on the 8MHz internal oscillator, so no additional timing components are required, and will also run on 3v. A single CR2032 will power the board for a few hours and can very easily be hidden within the kit, or for a more longer lasting supply either 2 AAA’s or a single lithium CR123 will run it for much longer at the expense of a little more bulk.

Lightbar PCB inside kit cover

Lightbar With Cover

Lightbar in action

LED Driver Version 3

Version 2 of the LED driver is much smaller than the original V1 but at the expense of a little of the functionality – it only has 5 outputs instead of the original 8. While this is great for many applications, sometimes you need those extra outputs, which has lead to the development of V3.0.

This restores all 8 outputs with only a 20% increase in the height of the board (dimensions are now 36mm x 25mm) and also boosts the number of inputs from 2 on V1 and 1 on V2 to 3. Additionaly it restores the ability to trigger a CPU interrupt from one of the inputs.

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LED Driver V 2

I’ve just received the PCBs for my next lighting project. It’s a slightly simpler in design but much simpler in build and considerably smaller and cheaper version of my generic LED Driver. This is designed to run off 3 – 4.5v and provides 5 individual ouptuts which are driven by the microcontroller via software written for each specific application.

PCBs

Complex flashing, fading and sequences can easily be implemented. One output can also be used as an input instead – a connector for a push button switch that can be uses to select different sequences for example.

LED Driver Assembled

The board measures just 36mm by 20mm and could happily run for several days continuously on just 2 AAA cells.

 

Cylon Centurion Lighting Done

With just a little bit of modification to the original kit, I’ve now installed the lighting module into the Cylon. A single magnet holds the PCB into the lid, thanks to the metallic batteries and clips, and then another 2 magnets hold the lid to the head itself.

Once assembled, you’d never know the top was removable, but provides easy access to turning the unit on and off and changing the batteries when they are flat.