1460731563-ea0d141c-d5d7-4714-af43-3c70f79fc420

1. An air powered electrical generator, consisting of:
a portable modular frame having a support surface on one side and a plurality of wheels on an opposite side; said portable modular frame having a handle attached to one end thereof;
an electric motor; an air compressor operably connected to said electric motor and supported on a support member on said support surface;
a compressed air storage tank supported on said support surface and connected to said air compressor with a pipe;
a battery disposed on said support frame and operably connected to said electric motor;
a turbo fan operably connected to said compressed air storage tank with a second pipe;
a first electrical generator and a second electrical generator supported on said support frame;
a first gear rotatable by said turbo fan; a second gear rotatable by said first generator;
and a third gear rotatable by said second generator;
a belt drive for operably connecting and rotating said first, second, and third gears;
a battery charger and power output operably connected to said second electrical generator for charging said battery;
an electrical power outlet connected to said first electrical generator; and,
a master switch for turning the air powered electrical generator on and off.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A raster image processing system, comprising:
a plurality of raster image processors; and
a rules based scheduler for assigning pages of an input print instruction file to the plurality of raster image processors, wherein the rules based scheduler is adapted to respond to a rush request option in a print job ticket by rushing the print job through the system and splitting the print job across the plurality of raster image processors for the fastest available printing time.
2. The raster image processing system of claim 1, further comprising:
a low resolution RIP that creates a thumbnail image of a portion of the input print instruction file.
3. The raster image processing system of claim 1, wherein the system performs parallel raster image processing using said multiple raster image processors.
4. A raster image processing system comprising a job server connected to a network for receiving print jobs from various entities connected to said network, the job server adapted to provide a page of each of the print jobs to a corresponding one of a plurality of raster image processors, and to receive requests for pages from the raster image processors, wherein the job server comprises:
a system controller for receiving print instruction files comprising information to be printed by the raster image processors; and
a scheduler for assigning pages to specific ones of the raster image processors based on availability status provided by the raster image processors, and wherein the scheduler is adapted to respond to a rush request option in a print job ticket by rushing the print job through the system and splitting the print job across the plurality of raster image processors for the fastest available printing time.
5. The system of claim 4, wherein each raster image processor is connected to a single, dedicated print engine.
6. The system of claim 4, wherein each raster image processor is connected to a different, dedicated print engine.
7. The system of claim 4, wherein each raster image processor is dynamically assigned to any of a plurality of print engines.