Electric blanket
An electric blanket includes an electric blanket body and a power supply device. The power supply device includes a power plug, a main control module, and a first interface. The main control module includes a main control circuit, an output control circuit, a voltage conversion circuit, and a first communication power supply circuit for power supply and signal transmission and reception. The first interface has a first conductive terminal, a second conductive terminal, and a third conductive terminal.
1 . An electric blanket, comprising an electric blanket body and a power supply device for power supply and control;
the power supply device including a power plug for electrical connection to an alternating-current electric power supply, a main control module for voltage conversion and control, and a first interface for electrical connection to the electric blanket body;
the main control module including a main control circuit, an output control circuit, a voltage conversion circuit for converting the alternating-current electric power supply and a first communication power supply circuit for power supply and signal transmission and reception, the main control circuit being electrically connected to the output control circuit and the first communication power supply circuit, the output control circuit having an N3 terminal, the first communication power supply circuit having a COMM1 terminal and a GND1 terminal, the first interface having a first conductive terminal, a second conductive terminal and a third conductive terminal, the third conductive terminal being electrically connected to the N3 terminal, the first conductive terminal being electrically connected to the COMM1 terminal, the second conductive terminal being electrically connected to the GND1 terminal;
a controller and a second interface being disposed on an outside of the electric blanket body, the second interface being pluggably connected to the first interface, the controller including a signal processing circuit, a function button circuit and a second communication power supply circuit for separating a power supply and a signal provided by the main control module, the signal processing circuit being electrically connected to the function button circuit and the second communication power supply circuit, the second communication power supply circuit having a COMM2 terminal and a GND2 terminal;
the second interface having a fourth conductive terminal, a fifth conductive terminal and a sixth conductive terminal, the fourth conductive terminal being electrically connected to the COMM2 terminal, the fifth conductive terminal being electrically connected to the GND2 terminal; a heating load being disposed inside the electric blanket body, one end of the heating load being electrically connected to the sixth conductive terminal, another end of the heating load being electrically connected to the fifth conductive terminal;
the first interface being connected to the second interface, the third conductive terminal being electrically connected to the sixth conductive terminal, the first conductive terminal being electrically connected to the fourth conductive terminal, the second conductive terminal being electrically connected to the fifth conductive terminal.
2 . The electric blanket as claimed in claim 1 , wherein the signal processing circuit includes a processing chip U 4 , and the processing chip U 4 has processing pins 1 to 16 ;
the processing pin 3 and the processing pin 4 are electrically connected to the second communication power supply circuit, and the processing pin 1 , the processing pin 2 , tile processing pin 6 , the processing pin 14 , the processing pin 15 and the processing pin 16 are all electrically connected to the function button circuit.
3 . The electric blanket as claimed in claim 1 , wherein the second communication power supply circuit includes a resistor R 22 , a chip BAV 99 , a polar capacitor C 7 , a resistor R 23 , a resistor R 24 , a MOS transistor Q 6 and a resistor R 25 ;
a pin 3 of the chip BAV 99 is defined as the COMM2 terminal, a pin 1 of the chip BAV 99 is defined as the GND2 terminal and grounded, a pin 2 of the chip BAV 99 outputs +4.4V voltage, a positive terminal of the polar capacitor C 7 is electrically connected to the pin 2 of the chip BAV 99 , a negative terminal of the polar capacitor C 7 is grounded, the resistor R 22 is connected in parallel with the positive and negative terminals of the polar capacitor C 7 ;
a drain of the MOS transistor Q 6 is electrically connected to the pin 3 of the chip BAV 99 , the signal processing circuit is electrically connected to the drain of the MOS transistor Q 6 through the resistor R 23 , the signal processing circuit is further grounded through the resistor R 24 , a source of the MOS transistor Q 6 is grounded, a gate of the MOS transistor Q 6 is electrically connected to the signal processing circuit, and the gate of the MOS transistor Q 6 is further grounded through the resistor R 25 .
4 . The electric blanket as claimed in claim 1 , wherein the main control circuit includes a main control chip U 3 , an indicator LED 1 and a resistor R 12 , the main control chip U 3 has main control pins 1 to 20 ;
the main control pin 11 is electrically connected to a cathode of the indicator LED 1 through the resistor R 12 , an anode of the indicator LED 1 is electrically connected to a 5V voltage terminal of the voltage conversion circuit, the main control pin 13 and the main control pin 14 are electrically connected to the first communication power supply circuit, and the main control pin 4 and the main control pin 12 are electrically connected to the output control circuit.
5 . The electric blanket as claimed in claim 4 , wherein the main control module further includes a current detection circuit, the current detection circuit includes a resistor R 6 and a resistor R 3 that are connected in series, a connection node of the resistor R 6 and the resistor R 3 is grounded, another end of the resistor R 6 is electrically connected to the main control pin 16 , and another end of the resistor R 3 is electrically connected to the voltage conversion circuit.
6 . The electric blanket as claimed in claim 4 , wherein the main control module further includes a voltage detection circuit, e voltage detection circuit includes a resistor R 7 and a resistor R 8 that are connected in series, a connection node of resistor R 7 and resistor R 8 is electrically connected to the main control pin 16 , another end of the resistor R 8 is grounded, and another end of the resistor R 7 is electrically connected to the voltage conversion circuit.
7 . The electric blanket as claimed in claim 1 , wherein the first communication power supply circuit includes a resistor R 13 , a transistor Q 2 , a transistor Q 3 , a resistor R 19 , a MOS transistor Q 4 , a resistor R 18 , a chip BAT 54 S, a resistor R 20 , and a resistor R 21 ;
an emitter of the transistor is electrically connected to a 8V voltage terminal of the voltage conversion circuit through the resistor R 13 , a base of the transistor Q 2 and a base of the transistor Q 3 are electrically connected to the 5V voltage terminal of the voltage conversion circuit, a collector of the transistor Q 2 and an emitter of the transistor Q 3 are electrically connected together to form the COMM1 terminal, a collector of transistor Q 3 is grounded, a drain of the MOS transistor Q 4 is electrically connected to the emitter of the transistor Q 3 , a gate of the MOS transistor Q 4 is electrically connected to the main control circuit, the gate of the MOS transistor Q 4 is electrically connected to a source of the MOS transistor Q 4 through the resistor R 18 and is grounded;
a pin 3 of the chip BATS 4 S is electrically connected to the COMM1 terminal through the resistor R 19 , a pin 1 of chip BAT 54 S is defined as the GND1 terminal and grounded, a pin 2 of the chip BAT 54 S is electrically connected to the 5V voltage terminal of the voltage conversion circuit, the main control circuit is electrically connected to the pin 3 of the chip BATS 4 S through the resistor R 20 , and the main control circuit is further grounded through the resistor R 21 .
8 . The electric blanket as claimed claim 1 , wherein the output control circuit includes an optocoupler U 2 , a resistor R 9 , a resistor R 10 , a resistor R 11 and a TRIAC (TRIode AC semiconductor switch) Q 1 ;
a positive terminal of a light-emitting device in the optocoupler U 2 is electrically connected to the 5V voltage terminal of the voltage conversion circuit, a negative terminal of the light-emitting device in the optocoupler U 2 is electrically connected to the main control circuit through the resistor R 9 , one end of a light-receiving device in the optocoupler U 2 is electrically connected to a main terminal T 2 of the TRIAC Q 1 through the resistor R 10 , the main terminal T 2 of the TRIAC Q 1 is electrically connected to the voltage conversion circuit, a main terminal T 1 of the TRIAC Q 1 is defined as the N3 terminal, a gate G of the TRIAC Q 1 is electrically connected to another end of the light-receiving device in the optocoupler U 2 , and both ends of the resistor R 11 are electrically connected to the main terminal T 2 and tire main terminal T 1 of the TRIAC Q 1 , respectively.
9 . The electric blanket as claimed in claim 8 , wherein the output control circuit further includes a diode D 1 , a resistor R 34 and a resistor R 33 , an anode of the diode D 1 is electrically connected to the main terminal T 1 of the TRIAC Q 1 , the resistor R 34 and the resistor R 33 are connected in series, a connection node of the resistor R 34 and the resistor R 33 is electrically connected to the main control circuit, another end of the resistor R 34 is electrically connected to the voltage conversion circuit, and another end of the resistor R 33 is electrically connected to a cathode of diode D 1 .
10 . The electric blanket as claimed in claim 1 , wherein the function button circuit includes a button circuit and an indicator circuit, and the signal processing circuit is electrically connected to the button circuit and the indicator circuit.