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Orbital replacement units are parts of the main systems and subsystems of the external elements of the ISS. Affecting the control of the cooling system, the movement and control of the solar arrays and SARJ as well as the flow of power throughout the station from solar arrays to the heat rejection system as part of the External Active Thermal Control System (EATCS).
An orbital replacement unit or orbital replaceable unit is a modular component of spacecraft that can be replaced upon failure either by robot or by extravehicular activity. The Hubble Space Telescope (HST) was designed with 70 such parts, [ 1 ] including scientific instruments and limited-life items such as batteries.
ESP-3 framework. External stowage platforms (ESPs) are key components of the International Space Station (ISS). Each platform is made from steel [citation needed] and serves as an external pallet that can hold spare parts, also known as orbital replacement units (ORUs), for the space station.
Inspected and secured U.S.-built cargo crane known as the Orbital Replacement Unit Transfer Device, completed assembly of a Russian cargo crane called Strela, and replaced one of Unity's two early communication antennas. [12] [13] 6. STS-106 † Edward T. Lu Yuri Ivanovich Malenchenko: 11 September 2000 04:47 11 September 2000 11:01 6 hours, 14 ...
The first is the Payload/Orbital Replacement Unit Accommodations (POA). This is a device that looks and functions much like the Latching End Effectors of Canadarm2. It can be used to park, power and command any payload with a grapple fixture, while keeping Canadarm2 free to do something else.
The Express Logistics Carrier 4 (ELC-4) carried several Orbital Replacement Units (ORUs). Among these were a Heat Rejection System Radiator (HRSR) Flight Support Equipment (FSE), which takes up one whole side of the ELC. The other primary ORUs were the ExPRESS Pallet Controller Avionics 4 (ExPCA #4).
In the Unpressurized Logistics Carrier (ULC), Kounotori 8 carries six lithium-ion batteries Orbital Replacement Units (ORUs) for replacing the ISS's existing nickel-hydrogen batteries. The transportation of replacement batteries is a continuation from the previous Kounotori 6 and 7, and will continue through to Kounotori 9. [9]
Rashford also invented a protective enclosure for use transporting orbital replacement units (orus). [3] Rashford designed and developed unique spacecraft support systems for the Upper Atmosphere Research Satellite (UARS) Airborne Support Equipment (UASE) at the Orbital Sciences Corporation (OSC).