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International-branded 2002 AmTran RE. Introduced in 1996 as a chassis for the AmTran RE, the 3000 was the first rear-engine bus chassis produced in nearly 20 years.Aside from a few buses bodied by Corbeil in the late 1990s, this chassis has been used exclusively by AmTran and its Navistar corporate successor IC Bus.
In 1989, Navistar introduced the second generation of the S-series medium-duty trucks, renaming the Class 6 range the 4000 series. Ending the 10-year use of the "Schoolmaster" product name, the bus chassis received a separate model designation; the S-1753 was replaced by the 3700, and the S-1853 was replaced by the 3800.
Lynk & Co 05+ A performance oriented variant called the 05+ was launched in August 2021. Powering the 05+ is a 2.0-liter turbocharged four-cylinder engine shared with the other 05 models. However, the engine of the 05+ was tweaked to pump out 265 hp and 280 lb-ft (380 Nm) of torque, as opposed to the 251 hp and 258 lb-ft (349 Nm) of standard ...
Allison transmission families for the Bus Series include the 1000/2000 Series (B210, B220, B295), 3000 Series (B300 / B400), and 4000 Series (B500). [ 5 ] Within North America, Bus Series transmissions carry a "B" prefix to distinguish them from other vocational series transmissions manufactured by Allison.
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The Headway 38120HP cells are used in high-discharge environments as they have very good continuous/peak discharge rates (10C/25C). Because four cells in series produces a voltage range similar to 6 cells of lead-acids and their fire-resistant properties, they can be used to replace a 12 V lead-acid car battery. [235] 38140: 38140s 12,000 38: 140
A 3000 series on the cargo apron of Abu Dhabi Airport. Orders and Trials. 2010s. In the United Arab Emirates, Dubai-based Emirates made a purchase of 128 buses in ...
Under most conditions it supports more than 3,000 cycles, and under optimal conditions it supports more than 10,000 cycles. NMC batteries support about 1,000 to 2,300 cycles, depending on conditions. [6] LFP cells experience a slower rate of capacity loss (a.k.a. greater calendar-life) than lithium-ion battery chemistries such as cobalt (LiCoO