1. Field of the Invention
The present invention relates to an electric connector and a test device using the same, and in particular to an electric connector utilized in a test device, that is capable of measuring the whole set signals of a test strip simultaneously.
2. Description of the Related Art
With the rapid progress and development of medical science, various test strips and test devices have been developed, to measure material concentrations in a biological fluid, to facilitate conducting measurement in hospitals, clinics, or households at any time, and to observe and record real-time the health conditions of a patient for the reference of medical personnel to diagnose and cure a patient. In general, test strips may have defects and faults incurred during manufacturing process due to time or environment factors, thus affecting its characteristics and performances. For this reason, usually, test strips are manufactured by batches. During manufacturing, each batch of test strips is assigned a specific lot number by the manufacturer, to facilitate recording and tracing information of that batch of test strips. The lot number can be used by the test device to calibrate the test strips, to obtain more accurate measurement data.
In this respect, refer to Taiwan Patent Application No. 96100251. Wherein, the test strip disclosed is provided with a plurality of identification electrodes in an identification electrode region, so that a portion of the identification electrodes can be processed into an open-circuit based on different parameters, to provide various identification signals. However, in case the number of identification electrodes is limited, then the identification signals they provide may not be sufficient to distinguish among a plurality of customers, test devices, or test strips. Moreover, to dispose a plurality of identification electrodes on a test strip of fixed size, the number and size of identification electrodes are certain to be limited, such that the lot numbers and information density it can provide to the test device are rather limited. In addition, the connector of the test device does not have connection points to connect large amount of electrodes. Also, the electric connector has the problem of being not easy to manufacture, and it is rather difficult to produce large number of metal connection points on an outer shell or in an insertion slot.
Therefore, presently, the design and performance of an electric connector and a test device using the same are not quite satisfactory, and it has much room for improvement.
In view of the problems and drawbacks of the prior art, the present invention provides an electric connector and test device using the same to overcome effectively the shortcomings of the prior art.
A major objective of the present invention is to provide an electric connector and a test device using the same, wherein, the electric connector is simple in construction, and easy to design and produce. In addition, it is low in production cost, and can be installed easily in a test device. Moreover, it is capable of testing large number of signals coming from test strips at the same time.
In order to achieve the above-mentioned objective, the present invention provide an electric connector, that can be applied in a test device using the same. The electric connector includes an electric circuit board and a plurality of conduction terminals. The electric circuit board is provided with a plurality of connection terminals arranged into an array. The plurality of conduction terminals are located on the electric circuit board corresponding respectively to each of the connection terminals. Wherein, each conduction terminal includes a base, located on the electric circuit board; a connection portion, extending along bottom of the base to form into shape, and is connected with the connection terminal of the electric circuit board; and a contact portion, extending along a side of the base, slanting upward and bending into shape.
The present invention further provides a test device utilizing the electric connector, including a body, and an electric connector. The body includes at least a micro-processor unit, used to process signals and output a test signal. The electric connector is provided inside the body, and is connected to the micro-processor unit, for a test strip to insert in to measure the whole set of signals of the test strip. The electric connector includes an electric circuit board and a plurality of conduction terminals. The electric circuit board is provided with a plurality of connection terminals. The plurality of conduction terminals are located on the electric circuit board, and each corresponds and is connected to each connection terminal. Wherein, each conduction terminal includes a base, located on the electric circuit board; a connection portion, extending along bottom of the base to form into shape, and is connected to the connection terminal of the electric circuit board; and a contact portion, extending along a side of the base, slanting upward and bending into shape.
The present invention also provides a method of manufacturing an electric connector, that can be used in a test device, comprising the following steps: (A) arranging and connecting a plurality of conduction terminals onto at least a folding material belt, one end of base of each conduction terminal is connected vertically to the folding material belt, with the other end of the base extending upward, slanting and bending to form a contact portion, the bottom of the base extends vertically downward to form a connection portion; (B) installing and fixing the folding material belt and the conduction terminals onto a fixture, the base and contact portion are closely adjacent to the installation surface of the fixture, the connection portion are of an upward vertical shape relative to the installation surface; (C) placing the electric circuit board having a plurality of terminal holes arranged into an array onto the corresponding fixture, the terminal holes are for inserting and bonding the connection portion of each conduction terminal; and (D) taking out the electric circuit board, the plurality of conduction terminals, and the folding material belt from the fixture, and detach the folding material belt, so that the conduction terminals are arranged into an array on the electric circuit board.
Further scope of the applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the present invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the present invention will become apparent to those skilled in the art from this detailed description.
The related drawings in connection with the detailed description of the present invention to be made later are described briefly as follows, in which:
The purpose, construction, features, functions and advantages of the present invention can be appreciated and understood more thoroughly through the following detailed description with reference to the attached drawings. And, in the following, various embodiments are described in explaining the technical characteristics of the present invention.
Refer to E
and is made of spring piece or conductive rubber.
The electric connector further includes a first cover 24, disposed over the electric circuit board 10 and the conduction terminals 12. Wherein, the bottom portions on both sides of the first cover 24 are extended inward respectively an extension portion 26, and is over the electric circuit board 10. Wherein, a shape indent slot 28 is formed between the extension portion 26 and top end inside the first cover 24. The conduction terminals 12 are disposed between the first cover 24 and the electric circuit board 10. Since the contact portion 20 of the conduction terminal 12 extends along a side of base 16, slanting upward and bending into shape, therefore, the end of contact portion 20 is slightly higher than the thickness of the extension portion 26. The front end of the first cover 24 is an open slot 30, for the test strip to insert in, and that will be explained in detail later.
Refer to
When a user inserts the test strip 34 into the open slot 30, and pushes it along the indent slot 28 to reach and fix inside, since the contact portion 20 of the conduction terminal 12 is higher than the thickness of the extension portion 26, so the contact portion 20 is pressed by the test strip 34, to contact directly the corresponding conduction point. Herein, the electric circuit board 10 having conduction terminals 12 arranged equal-spaced into an array is taken as example for explanation.
In order to apply in cooperation, the electrode region 36 of the test strip 34 is designed into a plurality of conduction points arranged equal-spaced into an array. Therefore, when the electrode region 36 is pushed toward the contact portion 20 of the respective conduction terminal 12, an effective contact force is produced through the elastic characteristic of the contact portion 20, so that the contact portions 20 of the conduction terminals 12 are in contact with the respective conduction points, to form an electrical connection. As such, the test device is able to measure the plurality of conduction points arranged into an array simultaneously, to obtain the whole set of signals of the test strip 34. When the test strip 34 is taken out from the electric connector, the auxiliary piece 22 of the conduction terminals 12 provides a forward force, to make the contact portion 20 quickly restore to its original position.
The electric connector of the present invention is simple in construction, easy to design and produce. It is not only low in production cost, but it is also easy to install into the test device 32, so that it can be used in cooperation with array type test strip 34 in realizing the medical test required. Refer to
Subsequently, as shown in
Then, as shown in
As mentioned above, the electric connector can be put inside the test device, in addition to the insertion connection approach of test strip, a flip cover connection approach can also be used. Since the present invention has much more conduction points, and the insertion connection approach is liable to cause parallel friction contact, so that the quality of electrical contact can be adversely affected by the unevenness of the test strip or frequently use times. In contrast, in the flip cover approach, vertical placement contact is used to improve the problem of improper contact of the conduction point. In this respect, refer to
The array type electric connector 48 includes an electric circuit board 10 and a plurality of conduction terminals 12. In the present embodiment, the structure of the plurality of conduction terminals 12, and the way they are arranged on the electric circuit board 10 are the same as that of the previous embodiment, as shown in
When the array type electrode region 53 of the array type test strip 51 is fixed onto the containing groove 52, wherein, the array type electrode region 53 further includes an analog signal region 532 and a digital signal region 534, the second cover 54 can be put and covered on the corresponding containing groove 52. The conduction terminals 12 of the array type electric connector 48 below the second cover 54 correspond to the respective conduction points arranged equal-spaced into an array on an array type electrode region 53, and are in direct contact with the corresponding conduction points through contact portion 20 of the respective conduction terminals 12, hereby achieving an electric connection.
The analog detection unit 60 is used to detect an analog signal region 532 of the array type test strip 51, while the digital detection unit 61 is used to detect a digital signal region 534 of the array type test strip 51, to generate analog signal and digital signal simultaneously, and then transmit them to the micro-processor unit 56. Wherein, any of the conduction points in the array type electrode region 53 of the array type test strip 51 can serve as an activation point. Upon connecting electrically the activation point to one of the conduction terminals 12 of the array type electric connector 48, a digital signal or an analog signal is generated. Then, the micro-processor unit 56 determines if the insertion of test strip 51 is correct and successful, thus reminding user to insert the test strip again if necessary, and preventing incorrect determination of signals. Subsequently, the micro-processor unit 56 performs parameter determination and setting based on the digital signal, the analog signal, and the test strip related parameters stored in the storage unit 62, and performs testing and analysis of the material in the test sample on the array type test strip 51, and transmits the test data to the display unit 64. In addition, an input/output expander 58 is provided between the array type electric connector 48 and the micro-processor unit 56, to meet the requirement for the plurality of conduction terminals 12 arranged into an array in the array type electric connector 48, so that the micro-processor unit 56 has sufficient number of pins to receive digital signals and analog signals from the plurality of conduction terminals 12. Finally, upon finishing testing, all it has to do is to open and lift the second cover 54, and take out the array type test strip 51, in achieving the objective of a flip cover test device.
Furthermore, in addition to arranging the connection terminals of the electric circuit board equal-spaced into a 2-dimensional array, the connection terminals can be designed into various forms of 2-dimensional arrangement. As shown in
The above detailed description of the preferred embodiment is intended to describe more clearly the characteristics and spirit of the present invention. However, the preferred embodiments disclosed above are not intended to be any restrictions to the scope of the present invention. Conversely, its purpose is to include the various changes and equivalent arrangements which are within the scope of the appended claims.
Number | Date | Country | Kind |
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100108297 | Mar 2011 | TW | national |