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Gyroscopic flight instruments of some description are used in most general aviation aircraft and in older commercial aircraft. Examples of such instruments include attitude indicators, heading indicators and turn coordinators (turn and slip indicator). The gyroscopes within the instruments are usually electrically or vacuum driven and make use Vacuum & Pressure Systems Instrument Rating Chapter 1 - Video Segment 10 In this section we will discuss why air driven attitude and heading instruments could fail by examining the vacuum and pressure systems. Review: 1.The air driven gyros, which stabilize the attitude and heading indicators, are usually called the vacuum instruments. This policy statement describes acceptable compliance methods for replacing vacuum-driven attitude instruments with electronically-driven replacement indicators. Electronically-driven attitude indicators include indicators that use electrical power to (1) excite an internal gyro, or (2) replace the operation of the gyro with microelectronics. Vacuum B3-5-1 (Note 1) Garter Filter Element for Vacuum Regulator 100 aircraft hrs. or annually, whichever comes first, and each pump replacement Vacuum D9-14-3 (Note 2) D9-14-5 (Note 3) D9-18-1 (Note 4) 1J10-1 Air Filter Element Air Filter Element Air Filter Element Air Filter 500 aircraft hrs. or annually, whichever comes first, and each pump Flight instruments are the instruments in the cockpit of an aircraft that provide the pilot with data about the flight situation of that aircraft, such as altitude, airspeed, vertical speed, heading and much more other crucial information in flight. They improve safety by allowing the pilot to fly the aircraft in level flight, and make turns, without a reference outside the aircraft such as the horizon. Visual flight rules require an airspeed indicator, an altimeter, and a compass 1. A single function vacuum-driven attitude indicator may be replaced with a single function electronically-driven attitude indicator. 2. The electronically-driven attitude indicator has an independent standby battery that is capable of at least 30 minutes of power to the new instrument in the event of a loss of primary electrical power. 3. Introduction: Flight without reference to a visible horizon can be safely accomplished by the use of gyroscopic instrument systems. These systems include attitude, heading, and rate instruments, along with their power sources. These instruments include a gyroscope (or gyro) that is a small wheel with its weight concentrated around its periphery. 2. Vacuum Operated Switch 3. Instrument Pump Warning Indicator 4. Control Cable 5. Manual Valve The Standby Vacuum System connects easily to the aircraft powerplant intake manifold, electrical system and the instrument vacuum supply. In the event of an engine driven vacuum pump failure, The Precise Flight Standby ates electrical power, provides a vacuum source for some flight instruments, and in most single-engine airplanes, provides a source of heat for the pilot and passengers. The engine is covered by a cowling, or in the case of some airplanes, surrou
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