Abstract:
The present invention relates to a radial disk type ion mobility spectrometer, comprising: an ionizing chamber which is made of a cylindrical tube, and includes an inlet for supplying sample gas therethrough, an ionizing means for ionizing the supplied sample gas to generate ions having a predetermined polarity, and a slit formed by cutting away a part of a cylindrical wall corresponding to a predetermined width for discharging the ions therethrough; a shutter grid installed adjacent to the slit of the ionizing chamber for controlling passage of the ions through the slit; a drift chamber which is a hollow tube having a predetermined thickness and including an outer cylindrical wall having a predetermined diameter and an inner cylindrical wall having an inner diameter equal to an outer diameter to the ionizing chamber so that an annular space is formed between the inner and outer cylindrical walls, of which a part of the inner cylindrical wall corresponding to a width larger than that of the slit is cut away such that the ions passing through the slit can be introduced into the annular space through the cutaway part of the inner cylindrical wall, and of which the inner cylindrical wall is engaged with the cylindrical wall of the ionizing chamber in such a manner that the drift chamber communicates with the ionizing chamber through the slit and the cutaway part of the inner cylindrical wall; and a collector installed onto an inner surface of the outer cylindrical wall of the drift chamber for collecting the ions that have passed through the drift chamber.
Abstract:
An injection mold for an intake hose and an intake hose production method utilizes a main core removably dualized to automatically extract a molding-completed intake hose from the main core after injection molding is completed and an air supplying member supplying compressed air between the main core and the molding-completed intake hose is configured in the main core to automatically extract the intake hose from the main core without an additional extraction equipment, thereby reducing an entire manufacturing process and saving a manufacturing cost.
Abstract:
A method of programming a non-volatile memory device employing program loops. Each program loop comprises a programming operation and a subsequent plurality of verifying operations. The method includes preventing the next program loop based on the results of performing the plurality of verifying operations of a current program loop each verifying operation verifying whether the selected memory cell transistors are program-passed. The decision to re-program may be based on a program pass number of the memory cell transistors obtained as a result of the plurality of verifying operations of the current program loop.
Abstract:
An injection mold for an intake hose and an intake hose production method utilizes a main core removably dualized to automatically extract a molding-completed intake hose from the main core after injection molding is completed and an air supplying member supplying compressed air between the main core and the molding-completed intake hose is configured in the main core to automatically extract the intake hose from the main core without an additional extraction equipment, thereby reducing an entire manufacturing process and saving a manufacturing cost.
Abstract:
A method of programming a non-volatile memory device employing program loops. Each program loop comprises a programming operation and a subsequent plurality of verifying operations. The method includes preventing the next program loop based on the results of performing the plurality of verifying operations of a current program loop each verifying operation verifying whether the selected memory cell transistors are program-passed. The decision to re-program may be based on a program pass number of the memory cell transistors obtained as a result of the plurality of verifying operations of the current program loop.