The present invention is related to a fuel cell, especially to a fuel cell apparatus of feedback module, which integrates an energy management unit and fuel cell by the circuit board to be the fuel cell with energy management.
The used fuel cell uses the fuel with hydrogen like methanol to form the current loop as the power source by an oxidation-reduction reaction. The reactant needed by this kind of fuel cell has liquid fuel like methanol fuel, and the main product after reaction is water and carbon-dioxide so as to make the fuel cell have the container structure filled with liquid fuel and the mechanism to drive fuel flow. The general fuel cell needs stable conditions in fuel concentration, fuel flux and feasible temperature to get better efficiency of energy production, but the used kind of fuel cell does not have any sensor or control for related conditions. Therefore, the present invention is based on the disadvantages of used fuel cells and desires improvement to invent a fuel cell apparatus of feedback module.
The first object of the present invention is to provide a fuel cell apparatus of a single board with the capability of managing energy and outputting a stable voltage.
The second object of the present invention is to provide a fuel cell apparatus of a single board able to feedback the current condition of the fuel cell and output a stable voltage.
To achieve the above objects, the present invention provides a fuel cell apparatus of feedback module comprising: at least one fuel cell unit; an energy management unit used to manage the power efficiency of the fuel cell unit at least comprises: a sensing module, which is used to at least sense the temperature variation of the fuel, the liquid level variation of the fuel, the concentration variation of the fuel utilized in the electrochemical reaction proceeded by the fuel cell unit, and used to produce the corresponding sensed signals to these variations; an I/O interface, which is used to provide the conducting paths for the signal and the electrical power; constant voltage module, which is used to connect the fuel cell unit and receive the electrical power produced by the fuel cell unit and then output a stable voltage of power supply; a microprocessor, which is used to manage the power efficiency of the fuel cell unit based on these sensed signals and the signal received from I/O interface; an electrical loop, which is used to electrically connect the fuel cell unit, sensing module, I/O interface, constant voltage module and microprocessor.
The above objects and advantages of the present invention will become more apparent with reference to the appended drawings wherein:
In
Energy management unit 11 includes sensing module 111, I/O interface 113, microprocessor 115, electrical loop 117 and constant voltage module 119, and also electrically connects other constituents of energy management unit 11 and the fuel cell unit 13 by way of electrical loop 117. The implemented means of sensing module 11 is capable of respectively using the following sensors. Liquid level sensor 111a is used to sense the present liquid altitude of anode fuel. Concentration sensor 111b is used to sense the present concentration of anode fuel. Temperature sensor 111c is used to sense the present temperature of anode fuel and cathode fuel. These sensors 111a, 111b, 111c are capable of connecting the sensed signal to I/O interface 113 by electrical loop 117 and conducting outward, and also connecting to microprocessor 115 by electrical loop 117. The sensor devices used by sensing module 111 are possibly using the devices manufactured by micro-electromechanical system (MEMS) technology.
Respectively referring to the examples of I/O interface 113 shown in
The function of microprocessor 115 is substantially to manage the fuel cell unit 13 to make the fuel cell unit 13 producing best efficiency of electrical power so as to use microprocessor for implementation. Microprocessor 115 receives the sensed signals and the signals conducted from I/O interface 113, such as the temperature variation signal, liquid level variation signal, concentration variation signal, to process the anode fuel and cathode fuel into the best condition for the supply to the fuel cell unit 13. Again, microprocessor 115 is also capable of sending a control signal to constant voltage module 119 to designate the voltage value produced by constant voltage module 119.
The implemented means of electrical loop 117 at least comprises cooper circuitry which is formed in the PCB 19. Furthermore, the present invented fuel cell apparatus 10 of feedback module also comprises fuel supply apparatus 15 and fuel recycling apparatus 17. Fuel supply apparatus 15 is equipped outside for the use of supplying anode fuel or cathode fuel to the fuel cell unit 13, and the flux of supplying anode fuel or cathode fuel is able to be controlled by microprocessor 115. Besides, fuel supply apparatus 15 is optionally equipped and electrically connected to I/O interface 113. Fuel recycling apparatus 17 is used to collect the anode fuel or cathode fuel flowing from the fuel cell unit 13 and then recycled to use again the collected anode fuel or cathode fuel. Fuel recycling apparatus 17 is optionally equipped and electrically connected to I/O interface 113. Furthermore, microprocessor 115 is capable of controlling fuel supply apparatus 15 and fuel recycling apparatus 17 to make different concentrated fuel enter the recycling.
Constant voltage module 119 is connected between the fuel cell unit 13 and microprocessor 115 to receive electrical power produced by the fuel cell unit 13 and then outputs the stable voltage of power supply which is connected to I/O interface 113. Furthermore, constant voltage module 119 and microprocessor 115 are able to be integrated as a single electronic device or respectively as the monolithic electronic device.
The present invented fuel cell apparatus 10 of feedback module is able to be applied to liquid fuel cell system like methanol fuel cell system, and gas fuel cell system like hydro-oxygen fuel cell system. Meanwhile, the present invented fuel cell apparatus of feedback module has the following advantages and improvements:
Although the present invention has been disclosed as one embodiment of the above, it does not imply to limit the present invention, any person who is skilled in the art could make any change or modification within the spirit and scope of the present invention, however, it is belongs to the scope of the present invention, the protective scope of the present invention is defined by the following claims.