CN215679626U - Ammeter data acquisition device - Google Patents

Ammeter data acquisition device Download PDF

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Publication number
CN215679626U
CN215679626U CN202122126989.9U CN202122126989U CN215679626U CN 215679626 U CN215679626 U CN 215679626U CN 202122126989 U CN202122126989 U CN 202122126989U CN 215679626 U CN215679626 U CN 215679626U
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China
Prior art keywords
processor
data
shell
display screen
meter
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CN202122126989.9U
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Chinese (zh)
Inventor
李野
李启龙
王日德
佟一博
刘昊
李学安
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Liaoning Mingpin Technology Co ltd
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Liaoning Mingpin Technology Co ltd
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Priority to CN202122126989.9U priority Critical patent/CN215679626U/en
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Abstract

The utility model discloses an ammeter data acquisition device, comprising: a housing; the detecting head is communicated with the shell and is used for detecting data of the electric meter; the processor is arranged in the shell, is connected with the detecting head and is used for processing, storing and transmitting data; the display screen is arranged on one side of the shell, is connected with the processor and is used for displaying data; the keyboard is arranged at the lower part of the display screen and is connected with the processor and the display screen; a function key disposed at one side of the keyboard and connected with the processor; a handle disposed at one side of the housing. The utility model has the characteristics of strong practicability, simple operation and convenient carrying.

Description

Ammeter data acquisition device
Technical Field
The utility model relates to the technical field of electric meters, in particular to an electric meter data acquisition device.
Background
The electric meter is an instrument for measuring electric energy, also called as a watt-hour meter, a fire meter, an electric energy meter and a kilowatt hour meter, and refers to an instrument for measuring various electric quantities.
The single-phase electric meter and the three-phase electric meter of the general straight-through type can directly read the number and subtract the last reading to obtain the electric quantity of the stage.
The three-phase ammeter that the three-phase ammeter passes through current transformer connected mode and connects, the wiring of ammeter have 10 wiring, want to observe the current ratio of the current transformer who connects, have on the name plate of current transformer, all are that a figure is 5 marks, for example 100/5150/5 etc. the figure of reading on the ammeter multiplies the electric current ratio and is the electric quantity of measurement, and the exact still must add variable loss and line loss.
The single-phase electric meter measures the electric quantity of three-phase electricity, the electric quantity reading mode is that the number on the electric meter is read by multiplying by 3 in a straight-in type electric meter connecting mode, and if the electric meter connected through the mutual inductor needs to read the electric meter number, the electric meter number is multiplied by the current multiple of the mutual inductor, and then the electric meter number is multiplied by multiplying by 3.
At present, electric meter data is usually read and recorded through manual visual observation, but each electrician who checks the meter needs to check and record the power consumption of many users, data reading and recording errors easily occur, the speed is low, and the working efficiency is low.
This requires a meter data collector, which is an instrument for collecting various electrical data of the electric meter.
SUMMERY OF THE UTILITY MODEL
The utility model designs and develops an ammeter data acquisition device, which can store and transmit ammeter data after multi-azimuth detection is realized through a detection head; and through the setting of handle, the practicality and the portability of device have been improved.
The technical scheme provided by the utility model is as follows:
an electricity meter data collection apparatus comprising:
a housing; and
the detecting head is communicated with the shell and is used for detecting data of the electric meter;
the processor is arranged in the shell, is connected with the detecting head and is used for processing, storing and transmitting data;
the display screen is arranged on one side of the shell, is connected with the processor and is used for displaying data;
the keyboard is arranged at the lower part of the display screen and is connected with the processor and the display screen;
a function key disposed at one side of the keyboard and connected with the processor;
a handle disposed at one side of the housing.
Preferably, the probe head comprises:
one end of the connecting joint is communicated with the shell, and the connecting joint is of an all-directional rotating structure;
and one end of the supporting pipe is communicated with the other end of the connecting joint.
Preferably, the probe head further comprises:
and the infrared collector is arranged in the other end of the supporting tube, is connected with the processor and is used for collecting data of the ammeter.
Preferably, the method further comprises the following steps:
a vent hole provided on the support tube.
Preferably, a wireless transmission network is arranged in the processor and used for remote transmission of data.
Preferably, the method further comprises the following steps:
the storage battery is arranged in the shell and is connected with the processor, the display screen and the function keys.
Preferably, the function keys include:
the switch key is connected with the storage battery and is used for starting or closing the storage battery;
a reset key connected with the processor;
and the data output key is connected with the processor and is used for remote transmission of data.
Preferably, the method further comprises the following steps:
and the USB hole is arranged on the shell and used for connecting the storage battery with an external power supply.
The utility model has the following beneficial effects:
the ammeter data acquisition device provided by the utility model realizes that the acquisition device detects ammeter data in multiple directions through the rotatable detection head, realizes data acquisition, storage and transmission through the combination of the infrared acquisition device and the processor, supplies power to the acquisition device through the arrangement of the storage battery and the USB hole, has low working voltage, and realizes freely selected power supply in multiple power supply modes by using the charger and the quick charger plug as a power supply part of equipment; this device simple structure, convenient operation, easy dismouting, it is small to through the setting of handle, the quality is portable more, and the practicality is strong, does not receive the restriction in detection place.
Drawings
Fig. 1 is a schematic view of the overall structure of the ammeter data acquisition device of the present invention.
Figure 2 is a schematic view of the structure of the probe head of the present invention.
Fig. 3 is a schematic structural view of the connection joint of the present invention.
Fig. 4 is a schematic rear view of the ammeter data collection device according to the present invention.
Fig. 5 is a schematic side view of the ammeter data collection device of the present invention.
Fig. 6 is a schematic bottom view of the data acquisition device of the electric meter according to the present invention.
Detailed Description
The present invention is further described in detail below with reference to the attached drawings so that those skilled in the art can implement the utility model by referring to the description text.
As shown in fig. 1, the present invention provides an electricity meter data acquisition device, which comprises the following structure: the detector head 110, a shell 120, a processor (not shown in the figure), function keys, a display screen 130, a keyboard 150 and a handle 160, wherein the shell 120 is of a hexahedral structure, and the interior of the shell is of a hollow structure; the probe 110 is rotatably communicated with the shell 120 and is used for detecting data of an electric meter; a processor disposed in the housing 120 and connected to the probing tip 110 for processing, storing and transmitting data; the function keys, the display screen 130 and the keyboard 150 are all arranged on one side of the shell 120, and the display screen 130 is connected with the processor for displaying data; the keyboard 150 is arranged at the lower part of the display screen 130, and the keyboard 150 is connected with the processor and the display screen 130; the function key is arranged on one side of the keyboard 150 and is connected with the processor; a handle 160 is provided at one side of the housing 120 for taking the device.
As shown in fig. 2, the probe head 110 includes: the electric meter comprises a supporting tube 112 and a connecting joint 113, as shown in fig. 3 and 5, the connecting joint 113 is elastically arranged in an omnibearing manner, the connecting joint 113 can stop at any position, one end of the connecting joint 113 is communicated with one side of the shell 120, the other end of the connecting joint is connected with one end of the supporting tube 112, as shown in fig. 4, an infrared collector 111 is arranged inside the other end of the supporting tube 112 and used for collecting data of an electric meter.
In the present embodiment, a vent hole 114 is provided on the support tube 112.
The infrared collector 111 is communicated with the processor and is used for data transmission; the processor also has a function of storing data, and a wireless transmission network is further arranged in the processor and is used for remotely transmitting the detected electric meter data or the electric meter data processed by the processor through the wireless transmission network.
A battery (not shown) is disposed inside the housing 120, and is connected to the processor, the display 130, and the function keys.
The function key includes: an on-off key 141, a reset key 142 and a data output key 143, wherein the on-off key 141 is connected with the storage battery and used for turning on or off the storage battery; the reset key 142 is connected with the processor and is used for resetting when each electric meter data is detected; a data output key 143 is coupled to the processor for remote transmission of data.
As shown in fig. 6, a USB hole is provided at one side of the case 120, and the battery is connected to an external power source through the USB hole.
The ammeter data acquisition device provided by the utility model has the specific use process that:
when carrying out the measuring of ammeter data, open the device through on & off switch 141, aim at the ammeter with detecting head 110 in the optional position, press reset key 142, gather ammeter data through infrared collector 111, and with data transmission to the treater in, show data through display screen 130, if need the manual work to carry out certain calculation, can carry out the button through keyboard 150, the treater is saved data simultaneously, or carry data with wireless transmission network through data output key 143, show the electric quantity through the display screen, when the electric quantity of battery is not enough, charge to the battery through the USB pore pair.
The ammeter data acquisition device provided by the utility model realizes that the acquisition device detects ammeter data in multiple directions through the rotatable detection head, realizes data acquisition, storage and transmission through the combination of the infrared acquisition device and the processor, supplies power to the acquisition device through the arrangement of the storage battery and the USB hole, has low working voltage, and realizes freely selected power supply in multiple power supply modes by using the charger and the quick charger plug as a power supply part of equipment; this device simple structure, convenient operation, easy dismouting, it is small to through the setting of handle, the quality is portable more, and the practicality is strong, does not receive the restriction in detection place.
While embodiments of the utility model have been described above, it is not limited to the applications set forth in the description and the embodiments, which are fully applicable in various fields of endeavor to which the utility model pertains, and further modifications may readily be made by those skilled in the art, it being understood that the utility model is not limited to the details shown and described herein without departing from the general concept defined by the appended claims and their equivalents.

Claims (8)

1. An electricity meter data acquisition device, comprising:
a housing; and
the detecting head is communicated with the shell and is used for detecting data of the electric meter;
the processor is arranged in the shell, is connected with the detecting head and is used for processing, storing and transmitting data;
the display screen is arranged on one side of the shell, is connected with the processor and is used for displaying data;
the keyboard is arranged at the lower part of the display screen and is connected with the processor and the display screen;
a function key disposed at one side of the keyboard and connected with the processor;
a handle disposed at one side of the housing.
2. A meter data collection device as in claim 1, wherein said probe comprises:
one end of the connecting joint is communicated with the shell, and the connecting joint is of an all-directional rotating structure;
and one end of the supporting pipe is communicated with the other end of the connecting joint.
3. A meter data acquisition device in accordance with claim 2, wherein said probe further comprises:
and the infrared collector is arranged in the other end of the supporting tube, is connected with the processor and is used for collecting data of the ammeter.
4. A meter data collection assembly as in claim 3, further comprising:
a vent hole provided on the support tube.
5. A meter data collection assembly as claimed in claim 4, wherein a wireless transmission network is provided within said processor for remote transmission of data.
6. A meter data collection device in accordance with claim 5 further comprising:
the storage battery is arranged in the shell and is connected with the processor, the display screen and the function keys.
7. A meter data collection device in accordance with claim 6 wherein said function keys comprise:
the switch key is connected with the storage battery and is used for starting or closing the storage battery;
a reset key connected with the processor;
and the data output key is connected with the processor and is used for remote transmission of data.
8. A meter data collection assembly as in claim 7, further comprising:
and the USB hole is arranged on the shell and used for connecting the storage battery with an external power supply.
CN202122126989.9U 2021-09-02 2021-09-02 Ammeter data acquisition device Active CN215679626U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122126989.9U CN215679626U (en) 2021-09-02 2021-09-02 Ammeter data acquisition device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122126989.9U CN215679626U (en) 2021-09-02 2021-09-02 Ammeter data acquisition device

Publications (1)

Publication Number Publication Date
CN215679626U true CN215679626U (en) 2022-01-28

Family

ID=79959507

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122126989.9U Active CN215679626U (en) 2021-09-02 2021-09-02 Ammeter data acquisition device

Country Status (1)

Country Link
CN (1) CN215679626U (en)

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GR01 Patent grant
GR01 Patent grant
CB03 Change of inventor or designer information
CB03 Change of inventor or designer information

Inventor after: Li Ye

Inventor after: Li Qilong

Inventor after: Wang Ride

Inventor after: Tong Diebo

Inventor after: Liu Hao

Inventor after: Li Xuean

Inventor before: Li Ye

Inventor before: Li Qilong

Inventor before: Wang Ride

Inventor before: Tong Yibo

Inventor before: Liu Hao

Inventor before: Li Xuean