Morning (PDT) all,
 
Darn-it, I just noticed that I failed to set the Jammer Section in the TL-10 Basic to zero after copying and pasting the layout from the Active Sensor system. I also failed to make the adjustment to the power and price per TNE FF&S Mk I Mod 0 p. 53.  The Jammer section here is the corrected version, my apologies.
 
TL-10 Standard Improved Sensor System:
1x TL 10 Active EMS 3,000 km (USD A0)
Processor
     Volume (m^3): (Processor) 7 m^3 = 7/14 m^3 = 0.5000 Tons displacement (Td)
     Power (MW): (Processor) Volume 7 x 5 = 35.0000 MW
     Cost (MCr): (Processor) Volume 7 x 2 = MCr14.0000
Antenna
     Area (m^2): (Processor) Volume 7 x 2 = 14.0000 m^2
 
1x TL 10 Passive EMS 60,000 km (USD P2)
Fixed Antenna Diameter (m): 5 m
Min Length (m): 5 m
 
Processor
     Volume (m^3): (Processor) 1.5 m^3 = 1.5/14 m^3 = 0.1071 Tons displacement (Td)
     Power (MW): (Processor) Volume 3 x 0.1 = 0.1500 MW
     Cost (MCr): (Processor) Volume 1.5 x 2 = MCr3.0000
Antenna
     Area (m^2): (Antenna) TL-10 Modifier 1 x  (Antenna) Base Area 8 = 8.0000 m^2
     Volume (m^3): (Antenna) Fixed Modifier 0.05 x (Antenna) Area 8 = 0.4000 m^3 = 0.4000 / 14 = 0.0286 Td
     Cost (MCr): (Antenna) Volume 0.40000 x 1 = MCr0.4000
 
1x TL-10 Passive EMS 60,000 km (USD P2) Sensor suite
     Min Length (m): 2.5 m
     Volume (m^3): (Processor) 1.5 + (Antenna) 0.4000 = 1.9 m^3 = 1.9 /14 = 0.1367 Td
     Power (MW): (Processor) 0.1500 MW
     Cost (MCr): (Processor) 3.0000 + (Antenna) 0.4000 = MCr3.4000
     Area (m^2): (Antenna) 8.000m^2
 
Folding Antenna Diameter (m): 2.5 m
Min Length (m): 2.5 m
 
Processor
     Volume (m^3): (Processor) 1.5 m^3 = 1.5/14 m^3 = 0.1071 Tons displacement (Td)
     Power (MW): (Processor) Volume 3 x 0.1 = 0.1500 MW
     Cost (MCr): (Processor) Volume 1.5 x 2 = MCr3.0000
Antenna
     Area (m^2): (Antenna) TL-10 Modifier 1 x  (Antenna) Base Area 8 = 8.0000 m^2
     Volume (m^3): (Antenna) Fixed Modifier 0.1 x (Antenna) Area 8 = 0.8000 m^3 = 0.8000/ 14 = 0.0571 Td
     Cost (MCr): (Antenna) Volume 0.80000 x 1 = MCr0.8000
Processor
     Volume (m^3): (Processor) 3 m^3 = 3/14 m^3 = 0.2143 Tons displacement (Td)
     Power (MW): (Processor) Volume 3 x 5 = 15.0000 MW
     Cost (MCr): (Processor) Volume 3 x 2 = MCr6.0000
Antenna
     Area (m^2): (Processor) Volume 3 x 2 = 6.0000 m^2
 
1x TL-10 Passive EMS 60,000 km (USD P2) Sensor suite
     Min Length (m): 2.5 m
     Volume (m^3): (Processor) 1.5 + (Antenna) 0.8000 = 2.3 m^3 = 2.3/14 = 0.1357 Td
     Power (MW): (Processor) 0.1500 MW
     Cost (MCr): (Processor) 3.0000 + (Antenna) 0.8000 = MCr3.8000
     Area (m^2): (Antenna) 8.000 m^2
 
0x TL-0 Active EMS Jammers 0 km (USD J0)
Processor
     Volume (m^3): (Processor) 0 m^3 = 0/14 m^3 = 0.0000 Tons displacement (Td)
     Power (MW): (Processor) Volume 0 x 10 = 0.0000 MW
     Cost (MCr): (Processor) Volume 0 x 4 = MCr0.0000
Antenna
     Area (m^2): (Processor) Volume 0 x 2 = 0.0000 m^2
 
1x TL-Basic Sensor System with a fixed antenna
     Min Length: 5 m
     Volume (m^3): (AEMS) 7.0000 + (PEMS) 1.9000 = 2.4 m^3
     Volume (Td): (AEMS) 0.5000 + (PEMS) 0.1357 = 0.6357 = 0.6 Td
     Power (MW): (AEMS) 35.0000 + (PEMS) 0.15 = 35.15 = 35.2 MW
     Cost (MCr): (AEMS) 14.0000 + (PEMS) 3.4000 = 17.4000 = MCr17.4000
     Area (m^2): (AEMS) 14.0000 + (PEMS) 8.0000 = 22.0000 = 22.0 m^2
     Crew: (AEMS = 1 + PEMS = 1) x 0.45 = 2 x 0.45 = 0.90 = 0.9
     USD: A0 P2 J0
 
1x TL-Basic Sensor System with a folding antenna
     Min Length: 2.5 m
     Volume (m^3): (AEMS) 7.000 + (PEMS) 2.3000 = 9.3 m^3
     Volume (Td): (AEMS) 0.5000 + (PEMS) 0.1642 = 0.6642 = 0.7 Td
     Power (MW): (AEMS) 35.0000 + (PEMS) 0.15 = 35.15 = 35.2 MW
     Cost (MCr): (AEMS) 14.0000 + (PEMS) 3.8000 =17.8000 = MCr17.8
     Area (m^2): (AEMS) 14.0000 + (PEMS) 8.0000 = 22.0000 = 22.0 m^2
     Crew: (AEMS = 1 + PEMS = 1) x 0.45 = 2 x 0.45 = 0.90 = 0.9
     USD: A0 P2 J0
 
My work and the listed value in the T4 QSDS 1.5e Standard Sensor Systems Table on p. 10 for a fixed antenna match.
 
The next update will be the TL-10 Small Military package which I’ll post on 4/27/15 about this time.