1. Field of the Invention
The present invention relates to an infrared thermometer, and the elastic covering of the probe thereof can be driven back and held open outwardly like a cone for measuring ear temperature, or driven and turned inwardly into the housing for measuring forehead temperature, so as to achieve the objective of switching modes between measuring ear/forehead temperature conveniently. Besides, the upper seat and the lower seat of the housing can be adjusted to various angles to meet the demands that may arise during the operation of the infrared thermometer.
2. Description of the Related Art
As various viruses such as influenza, SARS, enterovirus and avian influenza occur in succession, the concept of managing one's own health is becoming more important. When monitoring body temperature has become an essential step for individual health management, infrared thermometers are not only used in hospitals or clinics, but also popularly implemented in everybody's daily life. Conventional infrared thermometers with the function of switching between modes for measuring ear/forehead temperature (as shown in
1. The movable supporting frame 81 is exposed and thus is liable to be contaminated. This may consequently raise hygienic concerns when in use.
2. After a period of use, the supporting frame 81 could become loosened. Moreover, if the infrared thermometer is dropped accidentally, the pivotal connection between the two ends of the supporting frame 81 and the housing 82 could likely be damaged, and this results that the infrared thermometer becomes handicapped for not able to take forehead temperature any more.
3. Since the probe 83 and the supporting frame 81 are both made of hard materials, discomfort may be caused to a user either when the probe 83 is inserted into the ear canal of the user or when the circular end surface 811 of the supporting frame 81 is pressed against the user's forehead due to the hardness of the two components. Particularly, when it's a child's temperature to be taken, such discomfort could easily upset the child and make him to resist the measurement.
4. Since the angle of the housing 82 is not adjustable, such a conventional infrared thermometer can not be adapted for use in different situations.
Another conventional infrared thermometer 9 with the function of switching between modes for measuring ear/forehead temperatures is shown in
1. The hemispherical cover 91 and the probe 92 are also made of hard materials, and similarly causes discomfort to the user during measurement as discussed previously.
2. Likewise, since the angle of the housing 90 is not adjustable, such a conventional infrared thermometer can not be adapted for use in different situations.
disclosed in the invention.
One objective of the present invention is to provide an infrared thermometer, wherein the elastic covering of the probe thereof can be driven to extend outwardly into a cone shape for facilitating measuring ear temperature, while it can be alternatively driven to retract inwardly back to the housing for facilitating measuring forehead temperature, so as to permit a convenient switch between measuring ear/forehead temperature measuring mode.
Another objective of the present invention is to provide an infrared thermometer, wherein the upper seat and the lower seat of the housing thereof can be adjusted to different angles to meet the demands that may arise during the operation of the infrared thermometer.
Still another objective of the present invention is to provide an infrared thermometer which contacts the user to be measured with the elastic covering thereof that provides enhanced tender feeling.
Still another objective of the present invention is to provide an infrared thermometer, wherein the sensor is mostly wrapped by a elastic covering and is more hygienic.
For achieving the objectives mentioned above, the present invention provides an infrared thermometer, wherein the probe is driven by a sliding disposed on the housing for the elastic covering to be driven to extend outwardly like a cone for measuring ear temperature. The probe can also be driven to retract inwardly into the housing by the sliding for measuring forehead temperature, so as to achieve the objective of switching modes between measuring ear/forehead temperature conveniently. In addition, the elastic covering provides enhanced tender feeling to the person to be measured in both measuring modes. The upper seat and the lower seat of the housing can be pivotally rotated to different angles to meet the demands that may arise during the operation of the infrared thermometer. Thus, no matter for self-measurement or for taking others' temperatures, the disclosed subject matter can ensure a convenient use.
matter can ensure a convenient use.
For achieving the objectives mentioned above, the present invention further proposes a structure for the infrared thermometer, wherein when the upper seat and the lower seat of the housing are pivotally rotated to different angles, the probe can be driven to protrude out of the housing or draw back into the housing automatically.
The aforesaid structure and effects of the invention will become apparent in the following detailed description with reference to the accompanying drawings.
The invention as well as a preferred mode of use, further objectives and advantages thereof, will best be understood by reference to the following detailed description of an illustrative embodiment when read in conjunction with the accompanying drawings, wherein:
As shown in
The sliding 3 is disposed in a sliding groove 111 of the housing 1 and has a wedging groove 31 for connecting with a wedging sleeve of a protruding part 2111 at a lateral side of the linking block 211 of the probe 2. The sliding 3 can drive the probe 2 to slide back and forth in the sliding groove 111 on the housing 1, thereby forming a sliding mechanism.
Thereby, when the sliding 3 moves upwardly along the sliding groove 111 on the housing 1, the inner locating part 21 of the probe 2 is driven to move upwardly, which allows the elastic covering 22 to be driven to extend outwardly like a cone, and thus the probe 2 appears in a protruding state (referring to
Furthermore, a locating frame 113 can be wedged in the sliding groove 111 on the housing 1 and has a groove hole 1131 for the protruding part 2111 of the linking block 211 of the probe 2 to be disposed through, so as to allow the locating frame 113 to slide back and forth along the sliding groove 111.
In addition, when putting the present invention into practice, the probe 2, the inner locating part 21, the elastic covering 22 and the outer locating part 23 can be made by double injection molding. The elastic covering 22 of the probe 2 is connected between the inner locating part 21 and the outer locating part 23.
Furthermore, the rigid outer locating part 23 of the probe 2 is of a ring shape. The upper part 210 of the rigid inner locating part 21 is of a sleeve shape and the linking block 211 below can be connected to the upper part 210 of the rigid inner locating part 21 by a locking member (not shown in the figure) or by other methods.
Please refer to
In addition, a guiding groove 1122 and a locating post 1222 are disposed respectively on the bottom face 112 of the upper seat 11 and on the upper face 122 of the lower seat 12 of the housing 1, so as to limit the angle required by the pivotal rotation between the upper seat 11 and the lower seat 12.
Moreover, the sliding groove 111 of the housing 1 is disposed on the upper seat 11 while the upper seat 11 is further provided with the above-mentioned switch 4 and the measuring button 5. The lower seat 12 is provided with a LCD 7 and a control circuit assembly 6, wherein the LCD 7 displays the value of temperature as obtained by the sensor 20 of the probe 2. A battery 60 can be disposed in the lower seat 12 for supplying power for the operation of the infrared thermometer. It is simple to press down the measuring button 5 to begin taking temperature.
Furthermore, please refer to
Moreover, the lower seat 12 can be composed of two housings 123 and 124.
To sum up, the preferred embodiment of the present invention has the following effects:
1. The probe 2 can be driven by the sliding 3 disposed on the housing 1, and the elastic covering 22 thereof can be driven and extend outwardly like a cone for measuring ear temperature. The probe 2 can also be driven by the sliding 3 to retract the elastic covering 22 inwardly into the housing 1 and allow the elastic covering 22 to form a flexible contacting part 221 for measuring forehead temperature, so as to achieve the objective of conveniently switching modes between measuring ear/forehead temperature. The elastic covering 22 provides enhanced tender feeling to the person to be measured for temperature.
2. The upper seat 11 and the lower seat 12 of the housing 1 can be pivotally rotated to different angles to meet the demands that may arise during the operation of the infrared thermometer. Thus, no matter for self-measurement or for taking others' temperatures, the disclosed subject matter can ensure a convenient use.
3. The sensor 20 and the sliding mechanism are mostly wrapped by the elastic covering 22, and thus are more hygienic.
Please refer to
The housing 1 is composed of an upper seat 11 and a lower seat 12 pivotally connected, and the upper seat 11 and the lower seat 12 can be pivotally rotated by the pivotal shaft 13. The housing 1 has a driving mechanism 26 comprising a driving shaft 261 provided with an upper connecting part 2611 and a lower connecting part 2612. An upper connecting block 262 is disposed on the bottom of a linking block 211 of the upper seat 11 and pivotally connected to the upper connecting part 2611. A lower connecting block 263 is disposed on the lower seat 12 and pivotally connected to the lower connecting part 2612 to form a driving mechanism.
The upper seat 11 has a bottom face 112 tilting at a proper angle. The bottom face 112 has a through groove 1123 for the driving shaft 261 to pass through to locate the driving shaft. The through groove 1123 surrounds the pivotal shaft 13 in an arc shape. Referring to
In other words, when the upper seat 11 and the lower seat 12 are turned relative to each other to the desired angle as shown in
A driving mechanism 26 is disposed in the preferred embodiment as shown in
While the present invention has been described in combination with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation and equivalent arrangements in regard to the invention.