The present application relates to the field of electrocardiography system for making monitoring and diagnosis on human body, and more particularly, to an electrocardiograph.
Electrocardiograph is an instrument for discovering and diagnosing irregular phenomena of heart, which measures a surface potential on human body and records a current associated with heart muscle activity; furthermore, it may provide electrocardiographic data about the measured human body.
Such electrocardiograph 12 has the following shortcomings. Firstly, since the display assembly 16 is mounted in the main body 14, it is not so convenient for a user. For example, the user may need to adjust the angle of the electrocardiograph 12 to view the content displayed by the display assembly 16. Secondly, the setting of switches of the electrocardiograph 12 is relatively simple, and accordingly the user may hardly handle the operation procedure well.
Additionally, a product MAC 1200 ST purchased from General Electric Company may also be referred to as the relevant electrocardiograph, which is also portable.
Though the above relevant electrocardiographs are configured to be hand-held to facilitate the operator's view of the display, continuous improvement of electrocardiograph is still required.
In order to overcome the disadvantages of the electrocardiograph of prior art, the present application provides an electrocardiograph.
An embodiment of the present invention is directed to an electrocardiograph comprising a base part and an operating and displaying part is disposed on the base part. The operating and displaying unit includes an operating unit and a displaying unit connected to the operating unit. The operating and displaying part is coupled with the base part via a rotating structure such that the operating and displaying part can rotate left and right relative to the base part.
In an embodiment of the present invention, the base part comprises an upper housing and a lower housing which form a space.
In an embodiment of the present invention, the base part comprises a circuit device configured to generate a diagnosis electrocardiogram, and the circuit device is received within the space.
In an embodiment of the present invention, the rotating structure comprises a passage therein for receiving a wire connecting the base part with the operating and displaying part.
In an embodiment of the present invention, the rotating structure comprises at least one elastic locking arm. The locking arm protrudes from one of the base part and the operating and displaying part and matches with an opening of the other of the base part and the operating and displaying part, such that the operating and displaying part can rotate left and right relative to the base part, but movement of the operating and displaying part away from the base part is restricted.
In an embodiment of the present invention, the displaying unit is integrally formed with the operating unit, and the displaying unit forms an angle greater than about 90° and less than about 180° relative to the operating unit.
In an embodiment of the present invention, the operating and displaying part rotates left and right in a range between about 0° and about 360° relative to the base part.
In an embodiment of the present invention, the electrocardiograph further comprises a stopping structure for restricting the left and right rotation of the operating and displaying part to a range only between about 0° and about 360° relative to the base part.
In an embodiment of the present invention, the operating unit comprises a function key region and a number and letter key region.
In an embodiment of the present invention, the displaying unit is connected to the operating unit via a hinge, such that the displaying unit can rotate up and down relative to the operating unit.
Comparing to the prior art, the operating and displaying part as described in an embodiment of the present invention, can rotate left and right relative to the base part so that a user/operator can adjust the view angle of the operating and displaying part as required. Further, since the operating unit is provided with a function key region and a number and letter key region, the user can handle the operation procedure of the electrocardiograph without any difficulty.
Various other features and advantages of the invention will be made apparent to those skilled in the art from the accompanying drawings and detailed description thereof.
Embodiments of the present invention will be described in more detail by referring to attached drawings which are not necessarily drawn to scale, wherein:
Embodiments of the present invention will be described in more detail in conjunction with embodiments. Those skilled in the art should understand that these embodiments are examples, and are not intended to limit the present invention and its scope.
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The base part 31 may comprise an upper housing 33 and a lower housing 35, the both of which form a receiving space. The base part 31 usually comprises a circuit device (not shown) configured to generate diagnosis electrocardiogram, the circuit device being received within the receiving space. The upper housing 33 has an upper surface 331 that may be designed to be a planar or streamlined surface as required.
The operating and displaying part 41 comprises a displaying unit 43 and an operating unit 45. The displaying unit 43 may be connected to the operating unit 45. The operating and displaying part 41 has a lower surface 411. The operating and displaying part 41 is disposed on the base part 31 by attaching the lower surface 411 to a portion of the upper surface 331. According to an embodiment of the present invention, the displaying unit 43 may be integrally formed with the operating unit 45, and furthermore, it forms an angle greater than 90° and less than 180° relative to the operating unit. Alternatively, the displaying unit 43 may be connected to the operating unit 45 via a hinge, such that the displaying unit 43 can rotate up and down relative to the operating unit 45 (that is, the inclination between the displaying unit 43 and the operating unit 45 is adjustable).
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The aforementioned embodiments of the present invention relate to an electrocardiograph for addressing the problem that the electrocardiograph of prior art is inconvenient. Compared to the prior art, the operating and displaying part as described herein can rotate left and right relative to the base part so that the user can adjust the view angle of the operating and displaying part as required. Further, since the operating unit is provided with a function key region and a number and letter key region, the user can handle the operation procedure of the electrocardiograph without any difficulty.
While various aspects and embodiments have been disclosed herein, other aspects and embodiments will be apparent to those skilled in the art. The various aspects and embodiments disclosed herein are for purposes of illustration and are not intended to be limiting, with the true scope and spirit being indicated by the following claims.
Number | Date | Country | Kind |
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201210143392.8 | Apr 2012 | CN | national |