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Eclipse also started production of the 500, so aircraft could be released to customers once full certification was achieved. Full type certification was eventually achieved on 30 September 2006. At that point, in addition to the five flying prototypes, 23 aircraft were in production and two had already been completed.
Sikorsky will also provide Eclipse with access to its supply and parts distribution system, as well as engineering support. [31] [32] In December 2010 CEO Mason Holland confirmed that the company still plans to return the Eclipse 500 to production as soon as the market for personal jets improves and the company acquires additional investment ...
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It runs from the company's startup in 1998 to the design and testing of the Eclipse 500 very light jet (VLJ) through 2006, to the production of 260 examples from 2006–2008, development of the Eclipse 400 single-engined jet from 2007–2008, the most deliveries of a VLJ in a single year to date with over 150 Eclipse 500s sold in the first ...
The Eclipse 550 is a very light jet initially built by Eclipse Aerospace and later One Aviation of Albuquerque, New Mexico, United States. The aircraft is a development version of the Eclipse 500, which was produced by predecessor Eclipse Aviation. Like the 500, the 550 is a low-wing, six seat, twin engine jet-powered aircraft. [3]
The Eclipse 400 (formerly Eclipse Concept Jet, or ECJ) is a single-engine very light jet that was designed by Eclipse Aviation and Swift Engineering. [ 2 ] A development of the Eclipse 500 , the Eclipse 400 prototype first flew in 2007 and was cancelled when the Eclipse company went bankrupt in 2008.
The never exceed speed is quoted as 285 kts, where as the max speed is 370 kts. V_ne is a structural limit where as the V_max is a performance limitation; as such I would expect that V_max is less than V_ne, or at least a note stating that V_max is TAS and V_ne is KEAS or IAS.
The PhostrEx fire suppression system addresses many of the problems with halon, from system weight to environmental concerns. These concerns, including halon's ozone-depleting and global warming characteristics, prompted the Montreal Protocol to outlaw its use.