IP Library Granted Patent US 10,386,274
Granted Patent B2
US 10,386,274 · App. 15/467,769 · Granted Aug 20, 2019

Plug-in air quality detector, control method and control device

Inventors: Zheng Xing (Beijing, CN); Ningning Li (Beijing, CN); Lei Zhang (Beijing, CN)
Assignee: Beijing Xiaomi Mobile Software Co., Ltd.
G01N1/2273F24F11/30G01N15/06G01N33/0027G01N33/0062G01N33/0073H04M1/21B60H1/008F24F2110/50G01N15/0205G01N2001/2276G01N2001/2285G01N2015/0046G01N2015/0693H04M1/72527H04M2250/12
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Quick Facts
Patent No.
US 10,386,274
App. No.
15/467,769
Granted
Aug 20, 2019
Kind
B2
Abstract

A plug-in air quality detector, a control method, and a control circuit are provided in the field of air quality detection. The plug-in air quality detector comprises a casing, a sensor component, a control circuit and a connector component. The connector component includes a power supply terminal and a data terminal, and is configured to connect the plug-in air quality detector with a user device. As such, the detector may prompt a user of the air quality around the user without being configured with a dedicated power supply and a dedicated display screen, thereby achieving the effects of reducing the size and the weight of the air quality detector and improving the ease of use.

Claims (56)

1. A plug-in air quality detector, comprising:

a sensor component and a control circuit disposed inside a casing; and

a connector component comprising a power supply terminal and a data terminal, the connector component being configured to connect the plug-in air quality detector with a user device, and being a plug component corresponding to a headset jack on the user device or corresponding to a universal serial bus jack on the user device,

wherein power required for operation of the plug-in air quality detector is supplied through the power supply terminal;

wherein the control circuit is electrically connected with the sensor component and the connector component respectively, wherein the sensor component comprises a multi-channel measuring structure for detecting particulate matters with different diameter sizes; and

wherein the sensor component is configured to periodically measure an air quality parameter of air around the plug-in air quality detector at a preset time interval.

2. The plug-in air quality detector of claim 1 , further comprising an indicating lamp having at least two light emitting modes, wherein the indicating lamp is electrically connected with the control circuit.

3. The plug-in air quality detector of claim 2 , wherein the casing comprises an upper cover, a lower cover, and a lateral surrounding casing, and

wherein the indicating lamp is arranged at least partially in the upper cover.

4. The plug-in air quality detector of claim 3 , wherein the sensor component and the control circuit are fixed inside a space enclosed by the upper cover, the lower cover, and the lateral surrounding casing, and the lateral surrounding casing comprises a plurality of holes therein.

5. The plug-in air quality detector of claim 3 , wherein the connector component is located outside a space enclosed by the upper cover, the lower cover, and the lateral surrounding casing, and an end of the connector component that is connected with the control circuit is fixed onto the lower cover.

6. The plug-in air quality detector of claim 3 , further comprising a power button, wherein the power button is electrically connected with the control circuit.

7. The plug-in air quality detector of claim 6 , wherein the power button is arranged on the upper cover or the lateral surrounding casing.

8. The plug-in air quality detector of claim 1 , further comprising an indicating lamp having at least two light emitting modes,

wherein the casing comprises an upper cover, a lower cover, and a lateral surrounding casing, and

wherein the indicating lamp is arranged between the upper cover and the lateral surrounding casing.

9. The plug-in air quality detector of claim 1 , further comprising an indicating lamp having at least two light emitting modes,

wherein the casing comprises an upper cover, a lower cover, and a lateral surrounding casing, and

wherein the indicating lamp is arranged between the lower cover and the lateral surrounding casing.

10. A method, comprising:

connecting, a plug-in air quality detector comprising: a connector component, a sensor component, and a control circuit disposed inside a casing, with a user device via the connector component, wherein the control circuit is electrically connected with the sensor component and the connector component respectively, and the connector component comprises a power supply terminal and a data terminal, the connector component is configured to connect the plug-in air quality detector with the user device, and the connector component is a plug component corresponding to a headset jack on the user device or corresponding to a universal serial bus jack on the user device; wherein power required for operation of the plug-in air quality detector is supplied through the power supply terminal, wherein the sensor component comprises a multi-channel measuring structure for detecting particulate matters with different diameter sizes;

acquiring, by the control circuit, an air quality parameter of air around the plug-in air quality detector measured periodically by the sensor component at a preset time interval; and

giving a prompt by the control circuit according to the air quality parameter.

11. The method of claim 10 , wherein the plug-in air quality detector comprises an indicating lamp, and giving the prompt by the control circuit according to the air quality parameter comprises:

determining a light emitting mode of the indicating lamp according to the air quality parameter; and

controlling the indicating lamp to emit light according to the determined light emitting mode.

12. The method of claim 11 , wherein the indicating lamp at least has a first light emitting mode and a second light emitting mode, and determining the light emitting mode of the indicating lamp according to the air quality parameter comprises:

determining whether the air quality parameter is greater than a preset parameter threshold;

when the air quality parameter is greater than the preset parameter threshold, determining the light emitting mode of the indicating lamp as the first light emitting mode; and

when the air quality parameter is not greater than the preset parameter threshold, determining the light emitting mode of the indicating lamp as the second light emitting mode.

13. The method of claim 10 , wherein the plug-in air quality detector comprises an indicating lamp, and wherein the method further comprises:

Sending, by the control circuit, the air quality parameter to the user device via the connector component;

receiving a control instruction from the user device, the control instruction comprising a light emitting mode of the indicating lamp; and

controlling the indicating lamp to emit light according to the light emitting mode.

14. The method of claim 10 , further comprising:

connecting the plug-in air quality detector with the user device by plugging the connector component into the headset jack on the user device; and

sending, by the control circuit, the air quality parameter to the user device via the connector component connected with the headset jack on the user device.

15. A control circuit, the control circuit comprising:

a processor that is electrically connected with a sensor component and a connector component in a plug-in air quality detector, wherein the connector component comprises a power supply terminal and a data terminal, the connector component is configured to connect the plug-in air quality detector with a user device, and the connector component is a plug component corresponding to a headset jack on the user device or corresponding to a universal serial bus jack on the user device; wherein power required for operation of the plug-in air quality detector is supplied through the power supply terminal, wherein the sensor component comprises a multi-channel measuring structure for detecting particulate matters with different diameter sizes; and

a memory configured to store instructions executable by the processor,

wherein the processor is configured to:

when the plug-in air quality detector is connected with the user device via the connector component in the plug-in air quality detector, acquire an air quality parameter of air around the plug-in air quality detector periodically measured at a preset time interval by the sensor component; and

give a prompt according to the air quality parameter.

16. The control circuit according to claim 15 , wherein the processor is further configured to:

determine whether the plug-in air quality detector comprises an indicating lamp;

determine a light emitting mode of the indicating lamp according to the air quality parameter; and

control the indicating lamp to emit light according to the determined light emitting mode after determining that the plug-in air quality detector comprises the indicating lamp.

17. The control circuit according to claim 16 , wherein the processor is further configured to:

determine whether the air quality parameter is greater than a preset parameter threshold;

when the air quality parameter is greater than the preset parameter threshold, determine the light emitting mode of the indicating lamp as a first light emitting mode; and

when the air quality parameter is not greater than the preset parameter threshold, determine the light emitting mode of the indicating lamp as a second light emitting mode.

18. The control circuit according to claim 15 , wherein the processor is further configured to:

send the air quality parameter to the user device via the connector component;

determine whether the plug-in air quality detector comprises an indicating lamp;

receive a control instruction from the user device, the control instruction comprising a light emitting mode of the indicating lamp; and

control the indicating lamp to emit light according to the light emitting mode after determining that the plug-in air quality detector comprises the indicating lamp.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2017
From: XING, ZHENG; LI, NINGNING; ZHANG, LEI
To: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.
Reel/Frame 041734/0127 →
Priority Claims (1)
CN 2016 1 0189032 · Mar 29, 2016 · national
Continuity (1)
Related Publication 20170284906A1 · Oct 5, 2017