Midnight eVTOL Completes Phase 1 of Flight Test Program

Archer Aviation's Midnight eVTOL aircraft advanced through Phase 1 of its flight test program in only 3 months, covering an array of progressively more complex flight maneuvers and data gathering missions By Joe Macey / 02 Feb 2024
Archer Midnight eVTOL flight test program
Follow AAMi

Archer Aviation’s Midnight eVTOL aircraft has achieved another key milestone with the completion of Phase 1 of its flight test program. 

Archer’s Midnight aircraft finished the flight test phase in approximately three months, which is significantly faster than Archer’s full-scale prototype aircraft – Maker.

Additionally, Midnight’s battery system has recently been upgraded to include some of the first high voltage battery packs off of Archer’s manufacturing line at its San Jose, California facilities, a significant step as the company pushes towards being production-ready. With these advancements, Midnight remains firmly on track to complete its first full wing-borne transition flight and begin piloted “for credit” testing with the FAA later this year.

“Midnight is progressing efficiently through our flight test program,” said Archer’s founder and CEO Adam Goldstein. “Over the last four years of flight testing, our team has been able to gather a tremendous amount of data and learnings that enable us to advance Midnight rapidly towards certification. Our team’s focus on safety and relentless execution has gotten us to where we are today and is what will allow us to achieve what no other company in the world has done to date – bring electric air taxis to cities across the U.S. and the globe.” 

Phase 1 of Midnight’s flight test program covered an array of progressively more complex flight maneuvers and data gathering missions. Midnight’s flight envelope will now expand further as it moves into Phase 2, which involves an incremental approach to speed testing. This means that the aircraft will continue to fly at greater and greater speeds until it achieves full wing-borne transition. Transition is an important milestone for any vertical takeoff and landing aircraft, as it demonstrates in a single flight the capability to both takeoff and land vertically and cruise efficiently in wingborne flight. Once that’s completed, the aircraft will move to Phase 3, which entails flying simulated commercial routes to demonstrate the aircraft’s operational readiness.

Posted by Joe Macey Edited by Joseph Macey, Editor and Copywriter and experienced journalist with an active interest in advanced air mobility. Connect & Contact

Latest Articles

FFLIP Demonstrates Scalable Charging Infrastructure for eVTOL & Electric Transport

The FFLIP project led by Petalite successfully demonstrated high-power, multi-modal charging infrastructure for future electric aircraft, drones, and ground vehicles

Apr 16, 2025
RECARO Debuts Lightweight eVTOL Seat at AIX 2025

RECARO Aircraft Seating introduced its lightweight eVTOL seat at AIX 2025, showcasing a unique design developed in partnership with Eve Air Mobility

Apr 15, 2025
Public Flight of the SKYDRIVE SD-05

SkyDrive has conducted a public flight of the SKYDRIVE SD-05 during Media Day at Osaka-Kansai Expo in Japan

Apr 14, 2025
EHang Receives Air Operator Certification for eVTOLs in China

EHang’s subsidiaries have received the first Air Operator Certificates for pilotless human-carrying eVTOLs in China, marking a key milestone in the low-altitude aviation sector

Apr 11, 2025
CycloTech eVTOL Demonstrates Next-Gen Thrust Vectoring in Maiden Flight

CycloTech’s BlackBird eVTOL completes its first flight, showcasing groundbreaking CycloRotor technology and unlocking new possibilities for compact, agile urban air mobility

Apr 10, 2025
Battery Module Prototype Built for 30-Seat eVTOL Aircraft

Sora Aviation has developed its first battery module prototypes for the S-1, a 30-seat eVTOL 'bus', through a technical collaboration with TWI and Innovate UK

Apr 09, 2025