NTSB CAROL · Event
Event WPR20LA094
Registry · N3437H
FAA Aircraft Registry record.
Make / Model
ERCOUPE 415-C
Year of manufacture
1946 · 74 years old at event
Engine
CONT MOTOR C85 SERIES (85 hp)
Seats / Engines
2 seats · 1 engine
Last airworthiness date
19550823
ADS-B equipped
Yes — Mode-S A3CBC8
Registrant of record
ABRAMS LINDA T
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
The partial loss of power due to a malfunction of the throttle cable, which limited movement of the throttle body.
Factual narrative
On February 25, 2020, about 1220 Pacific standard time, an Ercoupe 415C, N3437H, was substantially damaged when it was involved in an accident near Torrance, California. The pilot and passenger were not injured. The airplane was operated as a Title 14 Code of Federal Regulations Part 91 personal flight. The pilot stated that following departure, she completed two touch-and-go practice takeoffs and landings. During the third takeoff, when the airplane had traveled about 3/4 of the length of runway 29R, at an altitude of about 200 ft above ground level (agl), the engine experienced a partial loss of power and surged. The pilot performed a 90º left turn to land on a taxiway. After touchdown, the airplane veered left and collided with two parked airplanes. Examination revealed no evidence of a catastrophic engine failure. The magneto timing was -2° and -4° than recommended by the manufacturer. Continuity of the fuel system was verified. The engine was rotated with no anomalies found. The throttle cable was secured at both ends: to the arm on the carburetor and to throttle lever in the cockpit. Movement of the throttle arm revealed that the throttle control in the cockpit did not correspondingly retard aft initially. Further examination of the cable revealed that from the throttle arm, the rod was secured with an Adel clamp to the engine mount. About 3/4-inch of movement of the arm produced movement of the rod that would move the clamp and outer housing (sheath) of the cable; however, the cable would not move (and, in turn, move the throttle control) unless the arm was moved in excess of 3/4-inch. This was confirmed by using a borescope to evaluate the butterfly valve position in the throttle body. The amount of forward and aft play in the throttle control showed that, in relation, the butterfly of the carburetor would deflect roughly 10° to 15° at full throttle and 20° to 25° at half throttle. Additionally, the rigging of the throttle cable from the panel to the throttle arm could have resulted in the rhythmic surging of the engine. If the throttle cable hits the stop at the carburetor end before the throttle knob hits the panel, a “bowing” may occur in the throttle cable. When bowed, the cable can act similar to a spring that is unable to provide the intended movement unless aligned. The supplemental type certificate (STC) holder, Univair, was not able to determine where exactly the throttle cable’s clamp, part number, 415-40506, was designed to attach. There are several other recorded instances when similar circumstances have occurred in Ercoupe airplanes. CHI08CA056: Ercoupe 415D – The NTSB determined the probable cause was a loose clamp on the throttle cable which prevented application of engine power. BFO94LA001: Ercoupe 415E – The NTSB determined the probable cause was the failure of the airplane's throttle cable fitting due to undetermined reasons, which prevented the pilot from applying power above engine idle. NASA Aviation Safety Reporting System (ASRS) Report 698127: Ercoupe 415C – The report stated that during landing, the engine began surging and they landed on a highway. A post accident examination revealed that “a bracket securing the throttle cable was loose and that this could have allowed the throttle arm on the carburetor to move and thus cause the surging we experienced.” While the pilot was conducting touch-and-go takeoffs and landings, the airplane’s engine lost partial power about 200 ft above ground level and began surging. The pilot performed a 90° left turn to land on a taxiway. After touchdown, the airplane veered left and collided with two parked airplanes. Examination revealed that manipulation of the throttle control in the cockpit did not correspond with the complete butterfly valve deflection in the throttle body. The limited motion of the throttle cable was likely the result of the movement of the cable’s outer housing (sheath) and/or loose rigging resulting in the cable bowing. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
Hierarchical cause / factor breakdown from the FAA bulk avdata database. Each finding tagged C (Cause) or F (Factor).
- — Aircraft-Aircraft power plant-Engine fuel and control-Fuel control/carburetor-Malfunction
- — Aircraft-Aircraft power plant-Engine fuel and control-Fuel controlling system-Inoperative
Verbatim from NTSB's published report. Source file
NTSB_2020_WPR20LA094.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
What the literature says.
Academic papers and agency reports matching this event's aircraft type or causal vocabulary (engine failure). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- arXiv 2022 · arXiv preprint
Multi-level Adaptation for Automatic Landing with Engine Failure under Turbulent Weather
This paper addresses efficient feasibility evaluation of possible emergency landing sites, online navigation, and path following for automatic landing under engine-out failure subject to turbulent wea…
- NASA NTRS 2019 · Conference Paper
Simulation of Liquid Rocket Engine Failure Propagation Using Self-Evolving Scenarios
Traditional probabilistic risk assessment approaches often require failure scenarios to be explicitly defined through event sequences that are then quantified as part of the integrated analysis.
- NASA NTRS 2019 · Conference Paper
Rocket engine failure detection using system identification techiques
The theoretical foundation and application of two univariate failure detection algorithms to Space Shuttle Main Engine (SSME) test firing data is presented.
- NASA NTRS 2019 · Conference Paper
Rocket engine failure detection using system identification techniques
The theoretical foundation and application of two univariate failure detection algorithms to Space Shuttle Main Engine (SSME) test firing data is presented.
- NASA NTRS 2019 · Technical Memorandum (TM)
A simulator investigation of engine failure compensation for powered-lift STOL aircraft
A piloted simulator investigation of various engine failure compensation concepts for powered-lift STOL aircraft was carried out at the Ames Research Center.
- Semantic Scholar 2019 · Article (AIAA Scitech 2019 Forum)
Impact of Engine Failure Constraints on the Initial Sizing of Hybrid-Electric GA Aircraft
Potential advantages of hybrid-electric aircraft are fuel savings, lower emissions, and reduced noise. Since these aircraft generally apply multiple power sources, they can also be designed to sustain…
Browse the full corpus — academia portal ↗