Lockheed F-104 Starfighter — Technical Manuals Collection
Primary-Source Documentation Archive · All Major Variants · USAF · AMI · GAF · RNLAF · Consortium
The Lockheed F-104 Starfighter was the world's first operational Mach 2 fighter — a radical, uncompromising design by Kelly Johnson's Skunk Works that sacrificed conventional handling for raw supersonic performance. This collection assembles primary-source technical documentation spanning the full operational life of the Starfighter across its major variants and operator nations.
Document Manifest — 29 Confirmed Documents
Flight Manuals
- T.O. 1F-104A-1-3 — Flight Manual, F-104A (USAF)
- Flight Manual, F-104B — Lockheed / USAF
- Flight Manual, F-104G — 1961 Edition
- T.O. 1F-104(T)G-1 — Flight Manual, TF-104G (MAP), USAF Series — 1 October 1962 / Changed 1 February 1964
- T.O. 1F-104(T)G-1 — Maintenance Manual / Flight Manual, TF-104G Starfighter — 1964 Edition
Maintenance & Systems Manuals
- Maintenance Manual, F-104 A/B/C/D Variants
- Maintenance Manual, F-104C
- Maintenance Manual, F-104D — 1960 Edition
- Maintenance Manual, F-104G — North Group Consortium
- Systems Manual — Fuel System, F-104A/C
- Systems Manual — Hydraulic System, F-104A/C
- Systems Manual — Landing Gear, F-104A/C
- Systems Manual — Bleed Air System, F-104A
- Systems Manual — Radio / COM / NAV, F-104A/C
- T.O. 1F-104G-2-9 — Instruments Manual, F-104G
Structural & Repair
- Structural Repair Manual (MSR), F-104G
Illustrated Parts Breakdowns
- Illustrated Parts Breakdown, F-104B
- GAF T.O. 1F-104(T)G-4 — Illustrated Parts Breakdown, TF-104G, RNLAF & GAF Series — Materialamt der Luftwaffe, 1 October 1970
- Illustrated Parts Breakdown, TF-104G — Lockheed
Consortium & Multi-Nation Technical Manuals
- Technical Manual, F-104G — Consortium Edition
- CN Lockheed TF-104G Luftwaffe 1975 — Change Notice / Technical Manual, bilingual German/English
Armament & Avionics
- Armament Manual (MI Armamento), F-104A — Italian AMI
- IFF Transponder Manual (MI IFF), F-104 — Italian AMI, 1985
- T.O. 12P4-2APX-142 / NAVAIR 16-35C6280-1 / TM 11-5841-268-25 — Control Transponder Set C-6280/APX, C-6280A(P)/APX, C-6717/APX & C-7483/APX — Admiral Aircraft Radio, 22 July 1984 / Change 2 – 3 July 1985
Subsystems & Components
- P.M.N. 6J14-2-1-3 — Wing Pylon Fuel Tank 330-Liter Overhaul with Parts Breakdown — Magnaghi Napoli, Naples Italy, 30 March 1991
Engineering Reports & Special Studies
- Lockheed Report CA/ME/2301 — The SURE Project — Lockheed California Company, June 1966
- LAC/534104 — The F-104 Starfighter: Test Pilot's Notebook — Glenn L. Reaves, Production Flight Test Pilot, Lockheed Aircraft Corporation
Technical & Operational Profile
1. Aerodynamic Design
The F-104 was engineered to maximize supersonic speed and minimize wave drag. Its ultra-thin trapezoidal wing (3.4% thickness-to-chord ratio) produced exceptionally low supersonic wave drag but resulted in heavy wing loading. A 10° anhedral angle counteracted roll-coupling effects induced by the tall vertical tail. NACA/NASA Langley wind tunnel studies on 0.0858-scale models recorded a zero-lift transonic drag coefficient rise of approximately 0.030. A Boundary Layer Control System (BLCS) bled high-pressure engine air over trailing-edge flaps to reduce landing speeds.
2. Powerplant — General Electric J79
A single GE J79 axial-flow turbojet with a 17-stage compressor and 3-stage turbine. Variable inlet guide vanes on the first six compressor stages prevented supersonic compressor stalls. Thrust figures: 10,000 lbs military power / 15,800 lbs maximum afterburner (up to 17,900 lbs on the Italian F-104S with J79-GE-19). Fuel consumption: 1.97 lb/hr/lb of thrust at maximum afterburner.
3. Handling & Flight Controls
A three-axis Stability Augmentation System (SAS) operated through the AFCS, with rate-sensing gyros outputting corrections directly to hydraulic actuators. An Automatic Pitch Control (APC) system — the "stick kicker" — physically pushed the control column forward if the aircraft approached unsafe angles of attack, protecting against the dangerous pitch-up phenomenon associated with the T-tail configuration.
4. Performance Data
| Parameter | Specification |
|---|---|
| Maximum Speed | Mach 2.0–2.2 (approx. 1,450 mph) |
| Rate of Climb | 48,000 ft/min |
| MTOW | 14,060 kg (31,000 lbs) |
| Service Ceiling | 50,000–58,000 ft |
| Landing Approach Speed | 170–175 knots |
5. Engineering Modifications
Key engineering directives over four decades of service included ventral fin integration for directional stability, replacement of the downward-firing C-1 ejection seat with upward-firing Lockheed C-2 and Martin-Baker zero-zero seats, and NASA Flight Test Fixture (FTF) modifications for boundary layer, aerodynamic icing, and Space Shuttle thermal tile impact research.
⚠️ Regulatory Notice: Under FAA 14 CFR § 43.13 and EASA Part-M, any mechanic performing maintenance on an active aircraft must use current, manufacturer-approved revision-controlled data. This archival document does not satisfy that requirement.
This is an archival, static-copy edition fixed at its original publication date. Intended for historical reference, flight simulation, museum restoration, and educational use only. Not approved for active airworthiness maintenance under FAA 14 CFR § 43.13, EASA Part-M, or equivalent international regulations. Operators of active aircraft must use current, revision-controlled publications from the Type Certificate holder or an authorized distributor.
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