摘要:
The present invention provides a heat dissipation device having lateral-spreading heat dissipating and shunting heat conductive structure, in which the central area of heat conductive interface of the heat dissipation device (100) where a heat generating unit being disposed is installed with a close-loop shunting heat conductive structure, so the heat at the central area of the heat generating device (101) can be conducted to a distal heat dissipating segment (104) for being dissipated to the exterior, thereby through working with the heat dissipation operation of the heat dissipation structure at the periphery of the heat generating device (101) and leaded to the distal heat dissipating segment (104), the temperature distribution at the central area and the peripheral area of the heat generating device (101) can be more even.
摘要:
A split serial-parallel hybrid dual-power drive system, comprised of two or more than two separation drive systems (1001,1002) allowing independent operation to respectively drive the load (120), or all loads driven individually are incorporated in a common frame to drive land, surface, underwater transportation means or aircraft, industrial machines and equipment or any other load drive by rotational kinetic energy. The first drive system can be disconnected (112) from the load and drive a generator (101) and the second electric machine (103) of the second drive system (1002) is driven by the generated electricity.
摘要:
This invention is characterized by an air conditioning system that jets actively a refrigerant into an evaporator in an active jetting manner so as to enhance the diffusibility and uniformity thereof.
摘要:
The present invention relates to a speed variable system, and in the first input rotating direction, it is capable of controlling the output shaft to output in normal and reverse rotating directions, and the input shaft is in different speed ratios to the output shaft with respect to the normal and reverse rotation directions.
摘要:
The present invention relates to a close-loop temperature equalization device utilizing the heat exchange fluid for transmitting thermal energy of a natural thermal energy storage body to an external temperature differentiation body, and is provided with one or more than one of following structural devices, including: 1) installing an operation port (111) and a sealing plug (110) at the upper end of the top corner of a close-loop flowpath at a higher location of the heat releasing device (201); 2) forming an outward-expanding arc-shaped flowpath structure at turning locations of the close-type flowpath; 3) installing an auxiliary heating/cooling device (115); 4) installing an auxiliary fluid pump (107); 5) installing a heat exchange fluid temperature sensing device (TS201); 6) installing an environment temperature sensing device (TS202); and 7) installing an electric energy control unit (ECU200).