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Boeing 737-900 vs. Airbus A320-200

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737-900

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A320-200

Price (USD)
$102 Million$101 Million
First Flight
20001987
Body Type
Narrow-bodyNarrow-body
Length
42 m138 ft
37 m123 ft
Wingspan
34 m112 ft
35 m117 ft
Wing Area
124 m²1,341 ft²
122 m²1,317 ft²
Fuselage Width
3 m12 ft
4 m13 ft
Height
12 m41 ft
11 m38 ft
Max Takeoff Weight
79,000 kg174,165 lbs
78,000 kg171,961 lbs
Number of Engines
22
Engine Options
CFMI CFM56CMFI CFM56 / IAE V2500
Max Thrust Per Engine
121 kN27,300 lbf
120 kN27,000 lbf
Max Total Thrust
242 kN54,600 lbf
240 kN54,000 lbf
Fuel Capacity
26,000 l6,868 gal
27,200 l7,185 gal
Range
5,100 km2,754 nm
6,200 km3,348 nm
Cruise Speed
850 km/h528 mph
840 km/h522 mph
Typical Seating
177 pax170 pax
Max Seating
189 pax180 pax

What Are the Differences Between the Boeing 737-900 and Airbus A320-200

Boeing 737-900 vs Airbus A320-200 Size Comparison

  • At 42.10 meters, the Boeing 737-900 is 4.50 meters longer than the Airbus A320-200.
  • With a wingspan of 35.80 meters, the Airbus A320-200 is 1.50 meters wider from wingtip to wingtip.
  • The Boeing 737-900 and Airbus A320-200 have heights of 12.60 meters and 11.80 meters respectively - making the Boeing 737-900 0.80 meters taller.

Boeing 737-900 vs Airbus A320-200 Range

  • Airbus A320-200’s range of 6,200 kilometers is greater than Boeing 737-900’s range of 5,100 kilometers. Therefore, the Airbus A320-200 can fly nonstop approximately 1,100 kilometers further.
  • The Airbus A320-200 can hold 7,185 gallons of fuel, which is 317 gallons more than the Boeing 737-900’s tank capacity of 6,868 gallons.

Boeing 737-900 vs Airbus A320-200 Seating

  • In a typical seating configuration, the Boeing 737-900 can accommodate 177 passengers, which is about 7 passengers more than Airbus A320-200’s seating capacity.
  • The Boeing 737-900’s max seating capacity is 189 passengers, compared to 180 passengers of the Airbus A320-200.

About the Boeing 737-900

The Boeing 737-900, a member of the 737 Next Generation (NG) series, was introduced in the year 2000 as a response to airline demand for an aircraft with higher capacity within the narrow-body market. This B739 model, part of Boeing's continuous innovation in the 737 series, was designed to provide an efficient solution for medium to long-range flights.

At 138.1 feet (42.1 meters) in length and 112.6 feet (34.3 meters) in wingspan, the 737-900 is notable for its extended fuselage, allowing for an increased passenger capacity. It typically accommodates 177 passengers in a two-class layout, with an economy class configured in a 6 abreast seat arrangement. The aircraft's interior design focuses on passenger comfort and space utilization, adapting to the requirements of both airlines and passengers. The 737-900 is equipped with two CFM International CFM56-7B27 engines, resulting in a combined thrust of 54,600 lbf (242.0 kN). Along with a fuel capacity of 6,868 US gallons (26,000 liters), the aircraft has a range of approximately 2,753 nautical miles (5,100 kilometers).

In its segment, the Boeing 737-900 competes with similar aircraft like the Airbus A321. Its introduction to the market was part of Boeing's strategy to expand the capabilities of the 737 family, addressing the evolving needs of the airline industry for larger single-aisle aircraft. Airlines such as Alaska Airlines, United Airlines, Turkish Airlines, and Korean Air have incorporated the Boeing 737-900 into their fleets. These carriers favor the -900 for its versatility, as it can operate both domestic and international routes. With the more recent MAX family of 737s in production, the many -900s will be replaced by the 737 MAX 9. Currently, the average age of a -900 is approximately 20 years. Many airlines have started ordering the newer MAX 9 in preparation for retirement of the older 739.

The Boeing 737-900's production history and widespread use among airlines signify its role in the development of modern air travel. While it shares commonalities with other models in the 737 NG series, its distinct capacity and range set it apart, highlighting Boeing's adaptability in responding to market trends and airline requirements.

About the Airbus A320-200

The Airbus A320-200 is a narrow-body, twin-engine aircraft, primarily employed for short to medium-haul flights. Introduced in the late 1980s, this model was designed with an emphasis on increased fuel capacity and range.

With dimensions of 123.3 feet (37.6 meters) in length and a wingspan of 111.9 feet (34.1 meters), the A320-200 is configured typically to accommodate 150 to 180 passengers in a standard two-class layout. This seating capacity enables the aircraft to efficiently serve both high-density and lower-demand routes. The A320-200 incorporates fly-by-wire technology, a notable feature in commercial aviation at the time of its introduction, replacing traditional manual flight controls with an electronic interface. The aircraft is equipped with advanced avionics and an electronic flight instrument system in the cockpit, reflecting the technological standards of the era. Powered by CFM56 or IAE V2500 engines, the -200 variant is designed for a balance of thrust and fuel efficiency. It has a maximum takeoff weight of approximately 170,000 lbs and a range of about 3,300 nautical miles, dependent on load and configuration.

Several airlines have incorporated the Airbus A320-200 into their fleets, utilizing it for a variety of operational needs. Prominent operators include Lufthansa, British Airways, and AirAsia. These carriers have employed the jetliner for its ability to efficiently handle both short domestic services and longer intercontinental routes. As a key variant in the A320 family, the Airbus A320-200 has contributed to Airbus's presence in the narrow-body aircraft market. Its use by various airlines demonstrates its functionality across different types of commercial aviation operations.

Today, the Airbus A320-200 continues to be an operational part of numerous airline fleets, fulfilling its intended roles across various route networks. While no longer in production, it is succeeded by the newer A320neo.

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Values shown may not be 100% accurate, as some metrics are averages or only represent certain production years and configurations. Engine specs are based on the best options available.

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