Expanded Spacedock Notes and Other Thoughts
Back when I started to spacedock the Ships for Star Wars and Battlestar Galactica, and even before that the Temporal Spacedock notes I had to expanded the spacedock and size charts to allow the ships have a shield or warp reactors greater than the Spacedock manual that was its own not just extended up from the top level. That was a couple of years ago I made them up and have been using them. I think that you can find them useful so I feel it is time to reveal them to those that want to use them.
Some of this is things I generated but they never worked well in testing or once they were done were just rubbish. I present the good and bad for your entertainment.
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I will start with the sensors they are all post Star Trek Then Next Generation that I have only made a few ships that are beyond the TNG era. These sensors extends up from where they Spacedock chart ends.
Long Range Sensor
Type 9 EX 36 SUs
High Resolution: 7 Light-years (0.7/0.8 1.4/1.5 5.3/5.4 7.0)
Low Resolution: 19 Light-years (1.0/1.1 6.0/6.1 15.0/15.1 19.0)
Type 10 EX ... 40 SUs
High Resolution: 8 Light-years (0.8/0.9 1.6/1.7 6.0/6.1 8.0)
Low Resolution: 20 Light-years (1.1/1.2 6.0/6.1 15.0/15.1 20.0)
Type 11 EX ... 44 SUs
High Resolution: 8 Light-years (0.8/0.9 1.6/1.7 6.0/6.1 8.0)
Low Resolution: 21 Light-years (1.2/1.3 7.3/7.4 16.0/16.1 21.0)
Type 12 EX ... 48 SUs
High Resolution: 9 Light-years (0.9/1.0 1.8/1.9 6.8/6.9 9.0)
Low Resolution: 22 Light-years (1.3/1.4 7.7/7.8 16.7/16.8 22.0)
Type 13 EX ... 52 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 24 Light-years (1.5/1.6 8.4/8.5 18.0/18.1 24.0)
Type 14 EX ... 56 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 7.0/7.1 10.0)
Low Resolution: 25 Light-years (1.8/1.9 8.4/8.5 18.5/18.6 25.0)
Type 15 EX ... 60 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 26 Light-years (2.0/2.1 9.0/9.1 19.0/19.1 26.0)
Type 16 EX ... 64 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 27 Light-years (2.0/2.1 8.4/8.5 19.0/19.1 27.0)
Type 17 EX ... 68 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 28 Light-years (2.0/2.1 8.4/8.5 19.0/19.1 28.0)
Type 18 EX ... 72 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 29 Light-years (2.0/2.1 9.0/9.1 19.0/19.1 29.0)
Type 19 EX ... 76 SUs
High Resolution: 10 Light-years (0.9/1.0 1.9/2.0 6.9/7.0 10.0)
Low Resolution: 30 Light-years (2.0/2.1 10.0/10.1 21.0/21.1 30.0)
Type 20 EX ... 80 SUs
High Resolution: 11 Light-years (1.0/1.1 2.0/2.1 7.0/7.1 11.0)
Low Resolution: 30 Light-years (3.0/3.1 10.0/10.1 21.0/21.1 30.0)
Type 21 EX ... 84 SUs
High Resolution: 12 Light-years (1.2/1.3 3.6/3.7 8.4/8.5 12.0)
Low Resolution: 30 Light-years (3.0/3.1 10.0/10.1 21.0/21.1 30.0)
Type 20 EX ... 88 SUs
High Resolution: 12 Light-years (1.2/1.3 3.6/3.7 8.4/8.5 12.0)
Low Resolution: 31 Light-years (3.1/3.2 10.0/10.1 21.7/21.8 31.0)
Below these can be used for the long-range, lateral and Navigational sensors as well
Strength packages
Class 11 22 SUs Strength 11
Class 12 24 SUs Strength 12
Class 13 26 SUs Strength 13
Class 14 28 SUs Strength 14
Class 15 30 SUs Strength 15
These are for the long-range and lateral
Gain Packages
Class Gamma 12 SUs (+3)
Class Delta . 24 SUs (+4)
For the Navigational sensors the following
Class Gamma 8 SUs (+3)
Class Delta 16 SUs (+4)
In the past I have posted all my other sensor modifications before so I wont post them again here. A little looking around you can find them.
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These made some of the Star Wars ships look really good and smoothed out costs better. These notes are the expansions that the shields above what is in the spacedock to a point where we run out of Greek lettering and then some. I started this expansion when I was looking at the increasing in starship sizes and advancement of ships that were encountered. I have noted that the Post-TNG versions of the shields are generated by me using the same rhythm of generations from a class seven and going up here the shields climb much like those of the book. In my personal notes I have also placed the original spacedock shields but to save space here I just showed what I needed to.
Here are the shields expansions
Class 8 (Post-TNG) 8 x Size ..1410 - 1600
Class 9 (Post-TNG) 9 x Size ..1610 - 1800
Class 10 (Post-TNG) 10 x Size .. 1810 - 2000
Class 11 (Post-TNG) 11 x Size ...2010 - 2200
Class 12 (Post-TNG) 12 x Size ...2210 - 2400
Class 13 (Post-TNG) 13 x Size ...2410 - 2600
Class 14 (Post-TNG) 14 x Size ... 2610 - 2800
Class 15 (Post-TNG) 15 x Size 2810 - 3000
Class 16 (Post-TNG) 16 x Size ... 3010 - 3200
Class 17 (Post-TNG) 17 x Size ... 3210 - 3400
Class 18 (Post-TNG) 18 x Size ... 3410 - 3600
Class 19 (Post-TNG) 19 x Size ... 3610 - 3800
Class 20 (Post-TNG) 20 x Size ... 3810 - 4000
These are just like those in the sourcebook.
These are here just because in generated them they are new shield grids. Other than Type D, I wouldnt use them. Type E and F for a distant future ship would look great but other than that forget them
Type D (Post TNG) .4 x Size ..66% increase in protection
Type E (Post TNG) .8 x Size ..75% increase in protection (26th century or later)
Type F (Post TNG) .16 x Size 100% increase in protection (28th century or even later)
Distortion Amplifiers .SU ..Threshold
Class Kappa (Post-TNG) ..5.5 x Size .460 500
Class Lambda (Post-TNG) 6 x Size 510 550
Class Mu (Post-TNG) 6.5 x Size . 560 600
Class Xi (Post-TNG) ....................7 x Size 610 650
Class Omicron (Post-TNG) ..7.5 x Size .660 700
Class Pi (Post-TNG) ..8 x Size .710 750
Class Rho (Post-TNG) ..8.5 x Size ..760 800
Class Sigma (Post-TNG) . .9 x Size .810 850
Class Tau (Post-TNG) ..9.5 x Size .. 860 900
Class Upsilon (Post-TNG) 10 x Size 910 950
Class Phi (Post-TNG) ...10.5 x Size . 960 1000
Class Chi (Post-TNG) ...11 x Size 1010 1050
Class Psi (Post-TNG) ...11.5 x Size .1060 1100
Class Omega (Post-TNG) 12 x Size 1110 - 1150
Class Omega-X (Post-TNG) 12.5 x Size 1160 - 1200
Class Omega-XX (Post-TNG) .13 x Size 1210 - 1250
Class Omega-XXX (Post-TNG) .14 x Size 1260 - 1300
Class Omega-XXXX (Post-TNG) .14.5 x Size 1310 - 1350
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Now comes the biggest change is the power generation with the warp cores.
Class 1 13 would be the same
Class 14/EX 150 SUs 700-749
Class 15/EX 160 SUs 750-799
Class 16/EX 170 SUs 800-849
Class 17/EX 180 SUs 850-899
Class 18/EX 190 SUs 900-949
Class 19/EX 200 SUs 950-999
Class 20/EX 210 SUs 1000-1049
Class 21/EX 220 SUs 1050-1099
Class 22/EX 230 SUs 1100-1149
Class 23/EX 240 SUs 1150-1199
Class 24/EX 250 SUs 1200-1249
Class 25/EX 260 SUs 1250-1299
Class 26/EX 270 SUs 1300-1349
Class 27/EX 280 SUs 1350-1599
Class 25/EX 290 SUs 1250-1299
Class 26/EX 300 SUs 1300-1349
Class 27/EX 310 SUs 1350-1399
Class 28/EX 320 SUs 1400-1449
Class 29/EX 330 SUs 1450-1449
Class 30/EX 340 SUs 1500-1549
Class 31/EX 350 SUs 1550-1599
Class 32/EX 360 SUs 1600-1649
Class 33/EX 370 SUs 1650-1699
Class 34/EX 380 SUs 1700-1749
Class 35/EX 390 SUs 1750-1799
Class 36/EX 400 SUs 1800-1849
Class 37/EX 410 SUs 1850-1899
Class 38/EX 420 SUs 1900-1949
Class 39/EX 430 SUs 1950-1999
Class 40/EX 440 SUs 2000-2049
My Warp drive modifications for the Power Cores and Nacelles have been posted previously as well as a Temporal Spacedock, Early space travel, 20th Century surface, planetary surface structures, Borg notes, a brief Ferengi notes, Star Wars, Battle Star Galactica, Gene Roddenberrys Andromeda, I have generated different Armor notes and Babylon 5 Spacedock notes.
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I have never seen a need to make any better impulse engines as once you have achieved the speed of half the speed of light and still need to go faster you might as well engage the warp engines as you are already expending the same power you would at warp factor one. The only change I do is increase power that the engines can generate. Few ships need to travel faster than one quarter the speed of light as they are usually just traveling to and fro carrying out business than combat or are in an emergency. The cost of 5 SUs gains the ship an additional 8 power per engine topping out at an increase of double of the original power generation for the engines.
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There is the one future ship in Star Trek Enterprise where the ship was twice or even three times larger on the inside than on the outside of the ship. There are a few ways that I thought about it one was a special set up and generating size and the best other ways were one of two ways one was taking the outside size and doubled the size of SUs to generate the ship or generating the interior size can dividing it in half to figure the exterior size. So a size six ship would be a size three on the outside for combat appearance.
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Some of the biggest versions of Star Wars, Battlestar Galactica, Gene Roddenberrys Andromeda and Babylon 5 ships and stations exceed even my size table below and there were some of the ships and vehicles that were larger than the original spacedock scale so I had to expand the chart
SPACEDOCK EXTENDED STARSHIP SIZE TABLE
Size Length Beam Height SU Mass Range
20 10,000 11,999 meters 5,500 6,999 meters 3,000 3,599 meters 17,000 24,000 34,000,000 37,999,999 metric tonnes
19 8,500 9,999 meters 4,500 5,499 meters 2,400 2,999 meters 14,000 20,000 31,000,000 33,999,999 metric tonnes
18 7,000 8,499 meters 3,500 4,499 meters 2,100 2,399 meters 11,000 17,000 27,000,000 30,999,999 metric tonnes
17 6,000 6,999 meters 3,000 3,499 meters 1,800 2,099 meters 9,000 15,000 23,000,000 26,999,999 metric tonnes
For each size above the top level additional 2000 to 3000 meters in size for all categories, and an additional 2000 SUs per size and two to three million Metric Tonnes per size. Babylon 4 would fall into the size 19 for the space station only a little larger than Babylon 5 space station a size 18.
There comes a point in the scale that it becomes infant in its SUs as the limited size and scale are lost, where as an Earth size planet in spacedock would be size 21,271 (earths diameter 12,756 kilometers) that would provide the builders with 42,516,000 to 42,521,000 SUs to construct the planet size ship weighing in at 42,531,000,000 to 42,532,999,999 metric tonnes (as far as I can remember I have never heard the estimated weight of the Earth but I guess it weights far more than 42 billion metric tonnes and would have more SUs than 42 million.) With population of 6 billion at the end of the 20th century the SUs would be far above 36 billion for just the use able surface material. I would say a planet would have hundreds of millions more SUs than the 36 billion it would be somewhere above the following number that I estimate as the SUs using a total managable population of 10 billion and back engineering using the space station figures and giving it a multiplication of 100 million and you get this 6,000,000,000,000,000,000. Then for the weight multiply by another million and the planetary weight in metric tonnes.
So for a planet sized starship the sky is the limit on SUs. then there would be a biological component to the planet see below the Biological ship component for the Earth would cost 2,127,100 SUs and that would cover the planets only, animals would cost extra.