1. Field of the Invention
The present invention relates to a particular power apparatus and a particular method for supplying power in order to save energy while the electrical equipment works at standby operating mode.
2. Description of Related Art
In general, electrical equipment is usually configured with a power apparatus and a load, wherein the power apparatus converts the Alternative Current (AC) power to a required power for the load. However, the power apparatus is easily damaged while the end load is destroyed by excessive current generated by surge voltage. For solving this problem, a surge arrester and a fuse are applied in the conventional power apparatus for arresting the surge voltage. Please refer to
A conventional power apparatus 1 can work for supplying power either at standby operating mode or normal operating mode. While the AC power plug of the electrical equipment plugs into a power socket, an AC transmits into the conventional power apparatus 1 and creates a voltage Vc at a capacitor Co via a fuse 11, a bleeder resistor 13, a filter 12, a surge arrester 10, a rectifier 14, and a diode D1. Meanwhile, a standby power supply 19 generates a standby power (STB power) according to the voltage Vc for supplying power to a load 3. The conventional power supply 1 works at standby operating mode. In view of the aforementioned embodiment, the surge arrester 10 is used to arrest the surge current while the AC power plug of the electrical equipment plugs into the power socket.
In addition, while the switch S1 is on and a power factor corrector 16 is activated, the conventional power apparatus 1 works at the normal operating mode for supplying power. At the same time, the AC transmits into the conventional power apparatus 1 and creates a voltage Vc at the capacitor Co thru the switch S1, the fuse 11, the bleeder resistor 13, the filter 12, the rectifier 14, and the power factor corrector 16. Meanwhile, the main power supply 18 generates a Main power according to the voltage Vc for supplying power to the load 3.
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The object of the present invention provides a power apparatus, which can effectively arrest a surge current and decrease power consumption at the standby operating mode, thereby achieves the goal of energy saving.
The power apparatus in accordance with certain aspects of the present invention comprises a switch unit, a bleeder resistor, a filter, a rectifier, a power factor corrector, an output capacitor, a rectifying diode, a surge arrester, a main power supply, and a standby power supply. Therein, the switch unit receives an AC and the filter couples to the switch unit thru the bleeder resistor. As the switch unit is on, the filter will filter out the noise signal of the AC. The rectifier, coupled to the filter, receives the rectified AC and outputs a Direct Current (DC). The power factor corrector, coupled to the rectifier, receives the DC and outputs a correction voltage. The output capacitor, coupled to the power factor corrector, receives the correction voltage. The positive terminal of the rectifying diode couples to the AC power. The surge arrester is located between the negative terminal of the rectifying diode and the output capacitor. The main power supply couples to the output capacitor. The standby power supply couples to the output capacitor.
Therein, as the switch unit is off, the AC power creates a standby voltage at the output capacitor through the rectifying diode and the surge arrester, so that the standby power supply is able to generate a standby power; as the switch unit is on, the AC power creates a switch voltage at the output capacitor through the switch unit, the bleeder resistor, the filter, the rectifier, and the power factor corrector, so that the main power supply is able to generate a main power.
The method for supplying power of the present invention, comprises the steps of, turn off a switch unit, and then feed in an AC through a rectifying diode and a surge arrester to create a standby voltage at the output capacitor; turn on the switch unit and activate the power factor corrector; transmit the AC into the power factor corrector through the switch unit, a bleeder transistor, a filter, and a rectifier; create a switching voltage at the output capacitor.
Therefore, through the aforementioned technical proposal of the present invention, the following efficacy would be easily achieved: a. Due to modifying the circuit schematic design, the power consumption would be reduced and the objective of energy saving would be attained during the standby operating mode. b. The goal of “fast boot” would be achieved with the advantages of low input current and fast accumulating of appropriate switching voltage, while the machine is booting.
In order to have further understanding of the present invention, the following embodiments are provided along with illustrations to facilitate the disclosure of the present invention.
The aforementioned illustrations and the following detailed descriptions are examples for the purpose of further explaining the scope of the present invention. Other objectives and advantages related to the present invention will be illustrated in the subsequent descriptions and appended drawings.
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In view of aforementioned illustrations, the surge arrester 20 may be a thermistor or a Negative Temperature Coefficient (NTC). The filter 22 would be an Electromagnetic Interference (EMI) filter or other kinds of filters such as Type II filter which can filter out the noise signals of AC. The rectifier 24 would be a bridge rectifier or other kinds of rectifiers which can convert AC to DC.
As shown in
Moreover, as the electrical plug of the electrical equipment stays plugging into the power socket, the switch unit 51 is off, and the electronic device is at the standby operating mode, the AC power passes through the rectifying diode D1 and the surge arrester 20 to charge the output capacitor Co to create a standby voltage at the output capacitor Co. The standby power supply 29 produces the standby power (STB power) in accordance with the standby voltage of the output capacitor Co.
As per the aforementioned embodiment, at the standby operating mode, the AC power charges the output capacitor Co through the charging path which contains the rectifying diode D1 and the surge arrester 20. Since the charging path doesn't contain any high power consuming filters 22 and power factor correctors 26, the power apparatus 2 consumes the standby power minor than 0.1 W.
As shown in
As per the aforementioned embodiment, the filter 22, coupled to the switch unit 51 thru the bleeder resistor 21, filters out the noise signals of the AC power. The rectifier 24, coupled to the filter 22, receives the rectified AC and outputs a DC. The power factor corrector 26, coupled to the rectifier 24 and the output capacitor Co, receives the DC and outputs a correction voltage DC' to charge the output capacitor Co, so that the switching voltage would be created at the output capacitor Co. At the same time, the main power supply 28 generates the main power (Main power) based on the switching voltage of the output capacitor Co.
As shown in
Therefore, the power apparatus 2 of the embodiment compared to the conventional power apparatus 1, the following efficacies are achieved: a. Due to modifying the circuit schematic design, the power consumption would be reduced and the objective of energy saving would be attained during the standby operating mode. b. The goal of “fast boot” would be achieved with the advantages of low input current and fast accumulating of appropriate switching voltage, while the machine is booting.
Please refer to
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Consequently, after the activation of the power factor corrector 26, the switching voltage of the output capacitor Co is created in step S15. Because the standby voltage of the output capacitor Co is already existed, the switching voltage can be easy and fast attained. Eventually, according to the switching voltage, the main power supply 28 produces the main power (Main power) in step S17.
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As per the aforementioned embodiments, the following efficacy of the present technical proposal of the power apparatus 2 is further achieved: at the standby operating mode, by modifying of the circuit schematic design, the standby power consumption is reduced, thereby the objective of power saving is attained. At the normal operating mode of supplying power, as the input current is low and the appropriate switching voltage level is accumulated faster, thereby achieving the purpose of “fast boot”.
It should be noted that, however, the aforementioned texts illustrate merely the detailed descriptions and appended drawings of the present invention, rather than being intended to restrict the scope of the present invention thereto. The scope of the present invention should be based on the following claims, and all changes, alternations or substitutions conveniently considered by those skilled ones in the art in the field of the present invention should be deemed as being encompassed by the scope of the present invention delineated in the claims as below.