General Atomics PREDATOR B accident near Nogales, Arizona, April 25, 2006
On April 25, 2006 at about 10:50 am local time, a General Atomics PREDATOR B, registered UNREG, was substantially damaged in an accident near Nogales, Arizona. It was an aerial observation flight under public-use (government) rules. No one was hurt; 1 person was on board or involved. The weather was visual conditions (good weather).
The NTSB's probable cause their words, unchanged
The pilot's failure to use checklist procedures when switching operational control from PPO-1 to PPO-2, which resulted in the fuel valve inadvertently being shut off and the subsequent total loss of engine power, and lack of a flight instructor in the GCS, as required by the CBP's approval to allow the pilot to fly the Predator B. Factors associated with the accident were repeated and unresolved console lockups, inadequate maintenance procedures performed by the manufacturer, and the operator's inadequate surveillance of the UAS program.
Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.
What the record shows
- Date
- April 25, 2006 · about 10:50 am local time
- Place
- Nogales, Arizona · map
- Type
- Accident
- Injuries
- No one was hurt; 1 person was on board or involved.
- Weather
- visual conditions (good weather)
- Aircraft
- General Atomics PREDATOR B
- Registration
- UNREG · no longer on the register · serial BP101
- Damage
- Substantial damage
- Flight
- Aerial observation flight · public-use (government) rules
The NTSB's narrative final · quoted from the NTSB record
The unmanned aircraft (UA), a Predator B, collided with the terrain following a loss of engine power while patrolling the southern U.S. border on a Customs and Border Protection (CPB) mission. The UA's takeoff was delayed due to the inability to establish a communication link between the UA and Pilot Payload Operator (PPO)-1 console during initial power-up. After troubleshooting the problem, an avionics technician switched the main processor cards between PPO-1 and PPO-2. Personnel who were maintaining the unmanned aircraft system (UAS) stated there were very few spare parts purchased with the UAS, which is why they switched the main processor cards instead of replacing the card in PPO-1. The link was subsequently established, and the flight was initiated. The flight was being flown from a ground control station (GCS), which contained two nearly identical control consoles: PPO-1 and PPO-2. Normally, a certified pilot controls the UA from PPO-1, and the camera payload operator (typically a U.S. Border Patrol agent) controls the camera, which is mounted on the UA, from PPO-2. Although the aircraft control levers (flaps, condition lever, throttle, and speed lever) on PPO-1 and PPO-2 appear identical, they may have different functions depending on which console controls the UA. When PPO-1 controls the UA, movement the condition lever to the forward position opens the fuel valve to the engine; movement to the middle position closes the fuel valve to the engine, which shuts down the engine; and movement to the aft position causes the propeller to feather. When the UA is controlled by PPO-1, the condition lever at the PPO-2 console controls the camera's iris setting. Moving the lever forward increases the iris opening, moving the lever to the middle position locks the camera's iris setting, and moving the lever aft decreases the opening. Typically, the lever is set in the middle position. Console lockup checklist procedures indicate that, before switching operational control between the two consoles, the pilot must match the control positions on PPO?2 to those on PPO-1 by moving the PPO-2 condition lever from the middle position to the forward position, which keeps the engine operating. The pilot stated in a postaccident interview that, during the flight, PPO-1 locked up, so he switched control of the UA to PPO-2. In doing so, he did not use the checklist and failed to match the position of the controls on PPO-2 to how they were set on PPO-1. This resulted in the condition lever being in the fuel cutoff position when the switch to PPO-2 was made, and the fuel supply to the engine was shut off. With no engine power, the UA began to descend. The pilot realized that the UA was not maintaining altitude but did not immediately identify that the condition lever was in the fuel cutoff position. The pilot and avionics technician decided to shut down the entire system and send the UA into its lost-link profile, which is a predetermined autonomous flightpath, until they could figure out what the problem was. After the system was shut down, the UA descended below line of sight (LOS), and communications could not be reestablished. The UA began to fly its lost-link profile as it descended to impact with the terrain. When the UA lost engine power, it began to operate on battery power. On battery power, the UA began to shed electrical equipment to conserve electrical power. In doing so, electrical power to the transponder was shut down. This resulted in air traffic control not being able to detect a Mode C transponder return for the UA as it descended below the bottom of the temporary flight restricted airspace. The primary radar return was also lost when the UA descended below the LOS in the mountainous area. The investigation revealed a series of computer lockups had occurred since the CBP UAS began operating. Nine lockups occurred in a 3-month period before the accident, including 2 on the day of the accident before takeoff and another on April 19, 2006, 6 days before the accident. Troubleshooting before and after the accident did not determine the cause of the lockups. Neither the CBP nor its contractors had a documented maintenance program that ensured that maintenance tasks were performed correctly and that comprehensive root-cause analyses and corrective action procedures were required when failures, such as console lockups, occurred repeatedly. Review of the CBP's training records showed that the accident pilot had recently transitioned from flying the Predator A to flying the Predator B and had only 27 hours of Predator B flight time. According to the CBP, the pilot was given verbal approval to fly its Predator B with the caveat that the pilot's instructor would be present in the GCS when the pilot was flying. This verbal approval was not standard practice for the CBP. The instructor pilot was in another building on the airport and did not enter the GCS until after it was shut down and the UA entered the lost-link procedure. The investigation also revealed that the CBP was providing a minimal amount of operational oversight for the UAS program at the time of the accident.
The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.
The factual record from the NTSB's investigation tables, in plain English
Pilot
- Certificate: flight instructor, commercial pilot
- Ratings: multi-engine land; single-engine land; instructor: airplane multi-engine; instructor: airplane single-engine; instructor: instrument airplane; instrument: airplane
- Flight time: 3,571 hours in all; 27 in this make and model; 27 in the last 90 days; 2,545 as pilot in command; 825 on instruments
- Last flight review: February 1, 2006
- Medical certificate: Class 1 (without waivers/limitations)
- Injury: no injuries
The aircraft
- Airframe total time: 966 hours
- Maximum gross weight: 10,500 lb
- Seats: 0
- Landing gear: retractable
- Engine: Honeywell TPE-331 (turboprop); 0 hours total
The flight
- Departed from: HFU Sierra Vista AZ at 1:51 am
- Flight plan: IFR
Weather at the time
- Light: night
- Wind: at 0 knots
- Visibility: 10 statute miles
- Sky: clear
- Temperature: 50°F (10°C), dew point 14°F (-10°C)
- Altimeter: 30.00 inHg
- Observation at 11:54 am from OLS, 10 miles away
Injuries
| Fatal | Serious | Minor | None | |
|---|---|---|---|---|
| Crew | 1 |
Documents from the investigation the NTSB's docket: the evidence folder behind the report
The docket, the folder of records gathered during an investigation (maintenance records, photographs, witness statements, examinations), has not been read from the NTSB for this case yet; the list appears here once it has. Open the docket at the NTSB.
Other NTSB records under UNREG the same tail number, which may have belonged to a different aircraft at the time
Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.
