CN203735971U - Electric cooker control panel operated by human body close induction - Google Patents
Electric cooker control panel operated by human body close induction Download PDFInfo
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- CN203735971U CN203735971U CN201320738110.9U CN201320738110U CN203735971U CN 203735971 U CN203735971 U CN 203735971U CN 201320738110 U CN201320738110 U CN 201320738110U CN 203735971 U CN203735971 U CN 203735971U
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- 230000006698 induction Effects 0.000 title abstract description 5
- 238000001514 detection method Methods 0.000 claims abstract description 47
- 238000010438 heat treatment Methods 0.000 claims abstract description 13
- 239000003990 capacitor Substances 0.000 claims description 44
- 230000001939 inductive effect Effects 0.000 claims description 16
- 239000013078 crystal Substances 0.000 claims description 7
- 230000006641 stabilisation Effects 0.000 abstract 2
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Abstract
The utility model provides an electric cooker control panel operated by human body close induction. The electric cooker control panel comprises a general key input detection module (1), a power voltage stabilization module (2), a bottom temperature detection module (3), an interface display module (4), a single chip microcomputer microprocessor module (5), an input scanning module (6), a stereo heating output module (7), a voice signal output module (8) and a human body induction signal detection module (9), wherein the single chip microcomputer microprocessor module is connected with the general key input detection module, the power voltage stabilization module, the bottom temperature detection module, the interface display module, the input scanning module, the stereo heating output module, the voice signal output module and the human body induction signal detection module respectively. According to the utility model, an electric cooker can be conveniently operated without human body contact, so that convenience and rapidity are realized, and the user experience is excellent; in addition, the brightness of a display screen can be controlled through inducting a human body, and various functions can be directly realized through gestures of hands.
Description
Technical field
The utility model belongs to electric cooker field, is specifically related to a kind of human body near the electric cooker control panel of inductive operation.
Background technology
Current electric cooker is on the market generally touch key, touches the mode of input, and the panel that all needs human body to touch electric cooker completes feature operation, does not more consider that user experiences.Do not arrange in pairs or groups with science and technology sense, the modern sense of modernization household.
Summary of the invention
The utility model is for the problems referred to above, and providing a kind of does not need human body contact is convenient to operation, convenient and swift, user's experience sense is good human body near the electric cooker control panel of inductive operation.
The technical scheme in the invention for solving the above technical problem is: a kind of human body is near the electric cooker control panel of inductive operation, comprise conventional key-press input detection module, power regulator module, bottom temp detection module, interface display module, singlechip microprocessor module, input scan module, three-dimensional heating output module and voice signal output module, also comprise human-induced signal's detection module; Described singlechip microprocessor module connects respectively conventional key-press input detection module, power regulator module, bottom temp detection module, interface display module, input scan module, three-dimensional heating output module, voice signal output module and human-induced signal's detection module.
Further, described human-induced signal's detection module comprises the 9th electric capacity, the tenth electric capacity, the first phase inverter, the second phase inverter, the 7th amplifier, the 4th diode, the 11 resistance, the 12 resistance, the 13 resistance, the 14 resistance and the 15 resistance; Described the 9th electric capacity is connected in the input of human-induced signal's detection module signal input part and the first phase inverter; Described the 4th diode cathode connects human-induced signal's detection module signal input part, and negative pole connects the input of the first phase inverter; Described the 12 resistance one end connects the input of the first phase inverter, other end ground connection; Described the 13 resistance one end connects the input of the first phase inverter, and the other end connects the forward end of the 7th amplifier; The output of described the first phase inverter connects the input of the second phase inverter; Described the 14 resistance one end connects the output of the second phase inverter, and the other end connects the forward end of the 7th amplifier; Described the 16 resistance one end connects the end of oppisite phase of the 7th amplifier, and the other end connects ground; Described the 15 resistance one end connects the output of the 7th amplifier, and the other end connects singlechip microprocessor module; Described the tenth electric capacity one end connects singlechip microprocessor module, and the other end connects ground.
Further, described conventional key-press input detection module comprises the first resistance, the second resistance, the 3rd resistance, the first electric capacity, the 8th electric capacity, the 7th electrochemical capacitor, the first amplifier and the first diode; Described the first resistance is connected in the base stage of input and the 4th triode of human-induced signal's detection module; Described the second resistance is connected in colelctor electrode and the first direct current pressure side of the 4th triode; The positive pole of described the 7th electrochemical capacitor connects the emitter stage of the 4th triode, and negative pole connects ground; Described the 3rd resistance is connected to the forward end of the first amplifier and the positive pole of the 7th electrochemical capacitor; Described the 8th electric capacity is connected between the forward end and backward end of the first amplifier; The power end of described the first amplifier connects the first direct current pressure side, and backward end and earth terminal connect ground; Described first electric capacity one end connects the output of the first amplifier, and the other end connects singlechip microprocessor module; Described the first diode is connected across the two ends of the first electric capacity.
Further, described power regulator module comprises the first power module, second source module, the 9th resistance, the second electric capacity, the 3rd electric capacity, the 4th electrochemical capacitor and the 5th electrochemical capacitor; Described first power module outlet one end is connected in the second direct current pressure side, and the other end connects ground; Described the 9th resistance is connected between the second direct current pressure side and the input of second source module; The anode of described the 4th electrochemical capacitor connects the input of second source module, and negative terminal connects ground; Described the second electric capacity is connected between the input and ground of second source module; Described second source module earth terminal ground connection, output connects the first direct current pressure side; The anode of described the 5th electrochemical capacitor connects the output of second source module, and negative terminal connects ground; Described the second electric capacity is connected between the first direct current pressure side and ground.
Further, described bottom temp detection module comprises potentiometer; Described potentiometer one end connects singlechip microprocessor module, other end ground connection.
Further, described interface display module comprises the first button and the second button; Described first button one end connects singlechip microprocessor module, other end ground connection; Described second button one end connects singlechip microprocessor module, other end ground connection.
Further, described singlechip microprocessor module comprises singlechip microprocessor and crystal oscillator; Described crystal oscillator one end connects singlechip microprocessor, other end ground connection.
Further, described input scan module comprises light emitting diode, the 4th resistance, the 5th resistance, the 6th resistance and the first triode; The anodal first direct current pressure side that connects of described light emitting diode, negative pole connects the 4th resistance; Described the 4th resistance is connected between the negative pole of light emitting diode and the colelctor electrode of the first triode; Described the first transistor base connects the 5th resistance and the 6th resistance, grounded emitter; Described the 5th resistance one end connects the 6th resistance, other end ground connection; Described the 6th resistance other end connects singlechip microprocessor module.
Further, described three-dimensional heating output module comprises the 7th resistance, the 8th resistance, the second triode, the 3rd diode and relay; Described the 7th resistance one end connects singlechip microprocessor module, and the other end connects the base stage of the 8th resistance and the second triode; Described the 8th resistance one end connects the 7th resistance, other end ground connection; The grounded emitter of described the second triode, the positive pole of collector connection relay and the 3rd diode; The other end of described relay connects the second direct current pressure side; The anodal negative pole of described the 3rd diode connects the second direct current pressure side.
Further, described voice signal output module comprises the 6th electrochemical capacitor, the 11 resistance, the 3rd triode and loudspeaker; The anodal singlechip microprocessor module that connects of described the 6th electrochemical capacitor, negative pole connects the 11 resistance; Described the 3rd transistor base connects the 11 resistance, and emitter stage connects ground, and colelctor electrode connects loudspeaker negative pole; The anodal first direct current pressure side that connects of described loudspeaker.
Advantage of the present utility model is as follows.
A kind of human body of the present utility model is near the electric cooker control panel of inductive operation, it is a kind of electric cooker that does not need human body contact to be convenient to operation, convenient and swift, user's experience sense is splendid, can control by the existence of induction human body the brightness of display screen, also can directly input various functions, good market prospects by the posture of staff.
Accompanying drawing explanation
Fig. 1 is the theory diagram of the utility model embodiment.
Fig. 2 is the schematic diagram of the utility model embodiment.
Reference numeral:
1 is that conventional key-press input detection module, 2 is that power regulator module, 3 is that bottom temp detection module 3,4 is that interface display module, 5 is that singlechip microprocessor module, 6 is that input scan module, 7 is that three-dimensional heating output module, 8 is that voice signal output module, 9 is human-induced signal's detection module, U1 is the first amplifier, U2 is the first phase inverter, U3 is the second phase inverter, U4 is singlechip microprocessor, U5 is the first power module, U6 is second source module, U7 is the 7th amplifier, R1 is the first resistance, R2 is the second resistance, R3 is the 3rd resistance, R4 is the 4th resistance, R5 is the 5th resistance, R6 is the 6th resistance, R7 is the 7th resistance, R8 is the 8th resistance, R9 is the 9th resistance, R10 is potentiometer, R11 is the 11 resistance, R12 is the 12 resistance, R13 is the 13 resistance, R14 is the 14 resistance, R15 is the 15 resistance, R16 is the 16 resistance, C1 is the first electric capacity, C2 is the second electric capacity, C3 is the 3rd electric capacity, C4 is the 4th electrochemical capacitor, C5 is the 5th electrochemical capacitor, C6 is that the 6th electrochemical capacitor C7 is the 7th electrochemical capacitor, C8 is the 8th electric capacity, C9 is the 9th electric capacity, C10 is the tenth electric capacity, D1 is the first diode, D2 is light emitting diode, D3 is the 3rd diode, Q1 is the first triode, Q2 is the second triode, Q3 is the 3rd triode, S1 is the first button, S2 is the second button, Y is crystal oscillator, and K is relay K, SP is loudspeaker, + 5V is the first direct current pressure side, + 12V is the second direct current pressure side.
The specific embodiment
Below with reference to the accompanying drawings and in conjunction with the embodiments, describe the utility model in detail.
With reference to figure 1 and Fig. 2, a kind of human body is as depicted in figs. 1 and 2 near the electric cooker control panel of inductive operation, comprise conventional key-press input detection module 1, power regulator module 2, bottom temp detection module 3, interface display module 4, singlechip microprocessor module 5, input scan module 6, three-dimensional heating output module 7 and voice signal output module 8, also comprise human-induced signal's detection module 9; Described singlechip microprocessor module 5 is conventional key-press input detection module 1, power regulator module 2, bottom temp detection module 3, interface display module 4, input scan module 6, three-dimensional heating output module 7, voice signal output module 8 and human-induced signal's detection module 9 respectively.
Described human-induced signal's detection module 9 comprises the 9th capacitor C 9, the tenth capacitor C 10, the first phase inverter U2, the second phase inverter U3, the 7th amplifier U7, the 4th diode D4, the 11 resistance R the 11, the 12 resistance R the 12, the 13 resistance R the 13, the 14 resistance R 14 and the 15 resistance R 15; Described the 9th capacitor C 9 is connected in the input of human-induced signal's detection module 9 signal input parts and the first phase inverter U2; Anodal human-induced signal's detection module 9 signal input parts that connect of described the 4th diode D4, negative pole connects the input of the first phase inverter U2; Described the 12 resistance R 12 one end connect the input of the first phase inverter U2, other end ground connection; Described the 13 resistance R 13 one end connect the input of the first phase inverter U2, and the other end connects the forward end of the 7th amplifier U7; The output of described the first phase inverter U2 connects the input of the second phase inverter U3; Described the 14 resistance R 14 one end connect the output of the second phase inverter U3, and the other end connects the forward end of the 7th amplifier U7; Described the 16 resistance R 16 one end connect the end of oppisite phase of the 7th amplifier U7, and the other end connects ground; Described the 15 resistance R 15 one end connect the output of the 7th amplifier U7, and the other end connects singlechip microprocessor module 5; Described the tenth capacitor C 10 one end connect singlechip microprocessor module 5, and the other end connects ground.
Described conventional key-press input detection module 1 comprises the first resistance R 1, the second resistance R 2, the 3rd resistance R 3, the first capacitor C 1, the 8th capacitor C 8, the 7th electrochemical capacitor C7, the first amplifier U1 and the first diode D1; Described the first resistance R 1 is connected in the base stage of input and the 4th triode Q4 of human-induced signal's detection module 1; Described the second resistance R 2 is connected in colelctor electrode and the first direct current pressure side+5V of the 4th triode Q4; The positive pole of described the 7th electrochemical capacitor C7 connects the emitter stage of the 4th triode Q4, and negative pole connects ground; Described the 3rd resistance R 3 is connected to the forward end of the first amplifier U1 and the positive pole of the 7th electrochemical capacitor C7; Described the 8th capacitor C 8 is connected between the forward end and backward end of the first amplifier U1; The power end of described the first amplifier U1 connects first direct current pressure side+5V, and backward end and earth terminal connect ground; Described first capacitor C 1 one end connects the output of the first amplifier U1, and the other end connects singlechip microprocessor module 5; Described the first diode D1 is connected across the two ends of the first capacitor C 1.
Described power regulator module 2 comprises the first power module U5, second source module U6, the 9th resistance R 9, the second capacitor C 2, the 3rd capacitor C 3, the 4th electrochemical capacitor C4 and the 5th electrochemical capacitor C5; Described first power module U5 output one end is connected in second direct current pressure side+12V, and the other end connects ground; Described the 9th resistance R 9 is connected between second direct current pressure side+12V and the input of second source module U6; The anode of described the 4th electrochemical capacitor C4 connects the input of second source module U6, and negative terminal connects ground; Described the second capacitor C 2 is connected between the input and ground of second source module U6; Described second source module U6 earth terminal ground connection, output connects first direct current pressure side+5V; The anode of described the 5th electrochemical capacitor C5 connects the output of second source module U6, and negative terminal connects ground; Described the second capacitor C 2 is connected between first direct current pressure side+5V and ground.
Described bottom temp detection module 3 comprises potentiometer R10; Described potentiometer R10 one end connects singlechip microprocessor module 5, other end ground connection.
Described interface display module 4 comprises the first button S1 and the second button S2; Described first button S1 one end connects singlechip microprocessor module 5, other end ground connection; Described second button S2 one end connects singlechip microprocessor module 5, other end ground connection.
Described singlechip microprocessor module 5 comprises singlechip microprocessor U4 and crystal oscillator Y; Described crystal oscillator Y one end connects singlechip microprocessor U4, other end ground connection.
Described input scan module 6 comprises light emitting diode D2, the 4th resistance R 4, the 5th resistance R 5, the 6th resistance R 6 and the first triode Q1; The anodal first direct current pressure side+5V that connects of described light emitting diode D2, negative pole connects the 4th resistance R 4; Described the 4th resistance R 4 is connected between the negative pole of light emitting diode D2 and the colelctor electrode of the first triode Q1; Described the first triode Q1 base stage connects the 5th resistance R 5 and the 6th resistance R 6, grounded emitter; Described the 5th resistance R 5 one end connect the 6th resistance R 6, other end ground connection; Described the 6th resistance R 6 other ends connect singlechip microprocessor module 5.
Described three-dimensional heating output module 7 comprises the 7th resistance R 7, the 8th resistance (R8), the second triode Q2, the 3rd diode D3 and relay K; Described the 7th resistance R 7 one end connect singlechip microprocessor module 5, and the other end connects the base stage of the 8th resistance R 8 and the second triode Q2; Described the 8th resistance R 8 one end connect the 7th resistance R 7, other end ground connection; The grounded emitter of described the second triode Q2, the positive pole of collector connection relay K and the 3rd diode D3; The other end of described relay K connects second direct current pressure side+12V; The anodal negative pole of described the 3rd diode D3 connects second direct current pressure side+12V.
Described voice signal output module 8 comprises the 6th electrochemical capacitor C6, the 11 resistance R 11, the 3rd triode Q3 and loudspeaker SP; The anodal singlechip microprocessor module 5 that connects of described the 6th electrochemical capacitor C6, negative pole connects the 11 resistance R 11; Described the 3rd triode Q3 base stage connects the 11 resistance R 11, and emitter stage connects ground, and colelctor electrode connects loudspeaker SP negative pole; The anodal first direct current pressure side+5V that connects of described loudspeaker SP.
The output characteristic of the utility model embodiment is: after human-induced signal's detection module 9 is processed induced signal, export to after singlechip microprocessor 5 calculation process, control output display interface module 4 and three-dimensional heating output module 7 voice signal output modules 8, complete loop control.
Its concrete operation principle of the utility model embodiment is: when human-induced signal's detection module 9 senses human body close signal, can produce voltage difference and cause circuit concussion frequency shift, chip has judged whether human body proximity according to the power of induced signal, thereby starts or shutdown system.
The foregoing is only preferred embodiment of the present utility model, the utility model includes but not limited to this example, and the utility model can have various modifications and variations.All within spirit of the present utility model and principle, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection domain of the present utility model.
Claims (10)
1. a human body is near the electric cooker control panel of inductive operation, comprise conventional key-press input detection module (1), power regulator module (2), bottom temp detection module (3), interface display module (4), singlechip microprocessor module (5), input scan module (6), three-dimensional heating output module (7) and voice signal output module (8), it is characterized in that: also comprise human-induced signal's detection module (9); Described singlechip microprocessor module (5) connects respectively conventional key-press input detection module (1), power regulator module (2), bottom temp detection module (3), interface display module (4), input scan module (6), three-dimensional heating output module (7), voice signal output module (8) and human-induced signal's detection module (9).
2. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described human-induced signal's detection module (9) comprises the 9th electric capacity (C9), the tenth electric capacity (C10), the first phase inverter (U2), the second phase inverter (U3), the 7th amplifier (U7), the 4th diode (D4), the 12 resistance (R12), the 13 resistance (R13), the 14 resistance (R14), the 15 resistance (R15) and the 16 resistance (R16); Described the 9th electric capacity (C9) is connected in the input of human-induced signal's detection module (9) signal input part and the first phase inverter (U2); Anodal human-induced signal's detection module (9) signal input part that connects of described the 4th diode (D4), negative pole connects the input of the first phase inverter (U2); Described the 12 resistance (R12) one end connects the input of the first phase inverter (U2), other end ground connection; Described the 13 resistance (R13) one end connects the input of the first phase inverter (U2), and the other end connects the forward end of the 7th amplifier (U7); The output of described the first phase inverter (U2) connects the input of the second phase inverter (U3); Described the 14 resistance (R14) one end connects the output of the second phase inverter (U3), and the other end connects the forward end of the 7th amplifier (U7); Described the 16 resistance (R16) one end connects the end of oppisite phase of the 7th amplifier (U7), and the other end connects ground; Described the 15 resistance (R15) one end connects the output of the 7th amplifier (U7), and the other end connects singlechip microprocessor module (5); Described the tenth electric capacity (C10) one end connects singlechip microprocessor module (5), and the other end connects ground.
3. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described conventional key-press input detection module (1) comprises the first resistance (R1), the second resistance (R2), the 3rd resistance (R3), the first electric capacity (C1), the 8th electric capacity (C8), the 7th electrochemical capacitor (C7), the first amplifier (U1) and the first diode (D1); Described the first resistance (R1) is connected in the base stage of input and the 4th triode (Q4) of human-induced signal's detection module (1); Described the second resistance (R2) is connected in colelctor electrode and the first direct current pressure side of the 4th triode (Q4); The positive pole of described the 7th electrochemical capacitor (C7) connects the emitter stage of the 4th triode (Q4), and negative pole connects ground; Described the 3rd resistance (R3) is connected to the forward end of the first amplifier (U1) and the positive pole of the 7th electrochemical capacitor (C7); Described the 8th electric capacity (C8) is connected between the forward end and backward end of the first amplifier (U1); The power end of described the first amplifier (U1) connects the first direct current pressure side, and backward end and earth terminal connect ground; Described the first electric capacity (C1) one end connects the output of the first amplifier (U1), and the other end connects singlechip microprocessor module (5); Described the first diode (D1) is connected across the two ends of the first electric capacity (C1).
4. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described power regulator module (2) comprises the first power module (U5), second source module (U6), the 9th resistance (R9), the second electric capacity (C2), the 3rd electric capacity (C3), the 4th electrochemical capacitor (C4) and the 5th electrochemical capacitor (C5); Described the first power module (U5) output one end is connected in the second direct current pressure side, and the other end connects ground; Described the 9th resistance (R9) is connected between the second direct current pressure side and the input of second source module (U6); The anode of described the 4th electrochemical capacitor (C4) connects the input of second source module (U6), and negative terminal connects ground; Described the second electric capacity (C2) is connected between the input and ground of second source module (U6); Described second source module (U6) earth terminal ground connection, output connects the first direct current pressure side; The anode of described the 5th electrochemical capacitor (C5) connects the output of second source module (U6), and negative terminal connects ground; Described the second electric capacity (C2) is connected between the first direct current pressure side and ground.
5. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described bottom temp detection module (3) comprises potentiometer (R10); Described potentiometer (R10) one end connects singlechip microprocessor module (5), other end ground connection.
6. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described interface display module (4) comprises the first button (S1) and the second button (S2); Described the first button (S1) one end connects singlechip microprocessor module (5), other end ground connection; Described the second button (S2) one end connects singlechip microprocessor module (5), other end ground connection.
7. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described singlechip microprocessor module (5) comprises singlechip microprocessor (U4) and crystal oscillator (Y); Described crystal oscillator (Y) one end connects singlechip microprocessor (U4), other end ground connection.
8. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described input scan module (6) comprises light emitting diode (D2), the 4th resistance (R4), the 5th resistance (R5), the 6th resistance (R6) and the first triode (Q1); The anodal first direct current pressure side that connects of described light emitting diode (D2), negative pole connects the 4th resistance (R4); Described the 4th resistance (R4) is connected between the negative pole of light emitting diode (D2) and the colelctor electrode of the first triode (Q1); Described the first triode (Q1) base stage connects the 5th resistance (R5) and the 6th resistance (R6), grounded emitter; Described the 5th resistance (R5) one end connects the 6th resistance (R6), other end ground connection; Described the 6th resistance (R6) other end connects singlechip microprocessor module (5).
9. human body, near the electric cooker control panel of inductive operation, is characterized in that according to claim 1: described three-dimensional heating output module (7) comprises the 7th resistance (R7), the 8th resistance (R8), the second triode (Q2), the 3rd diode (D3) and relay (K); Described the 7th resistance (R7) one end connects singlechip microprocessor module (5), and the other end connects the base stage of the 8th resistance (R8) and the second triode (Q2); Described the 8th resistance (R8) one end connects the 7th resistance (R7), other end ground connection; The grounded emitter of described the second triode (Q2), the positive pole of collector connection relay (K) and the 3rd diode (D3); The other end of described relay (K) connects the second direct current pressure side; The anodal negative pole of described the 3rd diode (D3) connects the second direct current pressure side.
10. the electric cooker control panel near inductive operation according to human body described in the arbitrary claim of claim 1 to 9, is characterized in that: described voice signal output module (8) comprises the 6th electrochemical capacitor (C6), the 11 resistance (R11), the 3rd triode (Q3) and loudspeaker (SP); The anodal singlechip microprocessor module (5) that connects of described the 6th electrochemical capacitor (C6), negative pole connects the 11 resistance (R11); Described the 3rd triode (Q3) base stage connects the 11 resistance (R11), and emitter stage connects ground, and colelctor electrode connects loudspeaker (SP) negative pole; The anodal first direct current pressure side that connects of described loudspeaker (SP).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201320738110.9U CN203735971U (en) | 2013-11-21 | 2013-11-21 | Electric cooker control panel operated by human body close induction |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201320738110.9U CN203735971U (en) | 2013-11-21 | 2013-11-21 | Electric cooker control panel operated by human body close induction |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN203735971U true CN203735971U (en) | 2014-07-30 |
Family
ID=51335856
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201320738110.9U Withdrawn - After Issue CN203735971U (en) | 2013-11-21 | 2013-11-21 | Electric cooker control panel operated by human body close induction |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN203735971U (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103829775A (en) * | 2013-11-21 | 2014-06-04 | 佛山市顺德区高迅电子有限公司 | Electric cooker control panel for human body approach induction operation |
| CN112568692A (en) * | 2019-09-29 | 2021-03-30 | 浙江苏泊尔家电制造有限公司 | Control method of cooking appliance, cooking appliance and computer storage medium |
-
2013
- 2013-11-21 CN CN201320738110.9U patent/CN203735971U/en not_active Withdrawn - After Issue
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103829775A (en) * | 2013-11-21 | 2014-06-04 | 佛山市顺德区高迅电子有限公司 | Electric cooker control panel for human body approach induction operation |
| CN103829775B (en) * | 2013-11-21 | 2016-09-07 | 广东顺德高迅电子股份有限公司 | A kind of human body is near the electric cooker control panel of inductive operation |
| CN112568692A (en) * | 2019-09-29 | 2021-03-30 | 浙江苏泊尔家电制造有限公司 | Control method of cooking appliance, cooking appliance and computer storage medium |
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