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The Honda Gold Wing is a series of touring motorcycles manufactured by Honda.Gold Wings feature shaft drive and a flat engine.Characterized by press in September 1974 as "The world's biggest motor cycle manufacturer's first attack on the over-750cc capacity market...", [1] it was introduced at the Cologne Motorcycle Show in October 1974.
This is a list of auto parts, which are manufactured components of automobiles. This list reflects both fossil-fueled cars (using internal combustion engines) and electric vehicles; the list is not exhaustive. Many of these parts are also used on other motor vehicles such as trucks and buses.
The aircraft was first flown before the US FAR 103 Ultralight Vehicles rules were introduced and the early versions of the Goldwing did not meet the category's maximum empty weight of 254 lb (115 kg) or its maximum speed requirement of 63 mph (101 km/h). Later models were made lighter and slower to fit FAR 103.
The Honda ST series, also known as the Pan-European in Europe, is a duo of Sport Touring motorcycles comprising the ST1100 and the later ST1300. [1]Following the launch of the Gold Wing, which was very successful in the US, Honda's marketing team perceived that the European market (hence the "Pan European" moniker) would appreciate a lighter, sportier, and more manoeuvrable motorcycle. [2]
Honda's first street motorcycle with a combined braking system (then called Unified Braking) was the 1983 GL1100. This system was derived from a 1970s RCB1000 world endurance race bike. [ 12 ] [ 13 ] Honda made several variations of the LBS system with differing levels of complexity and integration. [ 14 ]
Goldwing may refer to: Honda Gold Wing, a Japanese motorcycle; Goldwing Ltd Goldwing, an American ultralight aircraft design; American Goldwing, a 2011 album by ...
The Honda CBX sports motorcycle was manufactured by Honda from 1978 to 1982. [10] [11] With a 1047cc transverse six-cylinder engine producing 105 bhp (78 kW), it was the flagship of the Honda range.
The rocker ratio is the distance travelled by the valve divided by the distance travelled by the pushrod effective. The ratio is determined by the ratio of the distances from the rocker arm's pivot point to the point where it touches the valve and the point where it touches the pushrod/camshaft.
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