LASER TAPE MEASURE DEVICE
20240426993 ยท 2024-12-26
Assignee
Inventors
Cpc classification
International classification
Abstract
A laser tape measure device has a casing comprised of a first housing and a second housing. A laser ranging device is arranged toward and is attached to the first housing. An upper interior plate is arranged between the first housing and the second housing, and is attached to the second housing to form a chamber for the laser ranging device. A tapeline structure is arranged toward and fastened to the second housing and includes a tapeline wheel upon which a measuring tape is wound. A lower interior plate is attached to and covers only the bottom of the tapeline wheel and forms a lower part of a tapeline cavity. No portion of the upper interior plate extends into the tapeline cavity and no portion of the lower interior plate extends into an upper part of the tapeline cavity.
Claims
1. A laser tape measure device, comprising a casing comprised of a first housing and a second housing; a laser ranging device arranged toward and attached to the first housing; an upper interior plate arranged between the first housing and the second housing, and being attached to the second housing to form a chamber for the laser ranging device; a tapeline structure arranged toward and fastened to the second housing and including a tapeline wheel upon which a measuring tape is wound; and a lower interior plate attached to and covering only a bottom of the tapeline wheel and forming a lower part of a tapeline cavity; and wherein no portion of the upper interior plate extends into the tapeline cavity and no portion of the lower interior plate extends into an upper part of the tapeline cavity.
2. The laser tape measure device of claim 1 further including a sheath covering at least a portion of the first and second housings, and wherein the sheath is made of elastic material or soft material.
3. The laser tape measure device of claim 1 wherein the first housing comprises a first housing bottom face and a first housing side wall; the second housing comprises a second housing bottom face and a second housing side wall; and the second housing side wall and the first housing side wall are connected to each other, forming a side wall of the casing.
4. The laser tape measure device of claim 1 further including: a display means connected to a processor in the laser ranging device so as to display distance measuring information from the laser ranging device; a display mounting bracket holding the display means parallel to a bottom of the casing between the first and second housings towards an upper surface of the casing; a viewing panel located in the upper surface of the casing parallel to the bottom of the casing, said viewing panel permitting a direct view of the display means.
5. The laser tape measure device of claim 4 wherein the viewing panel is recessed from the upper surface of the casing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The foregoing and other objects and advantages of the present invention will become more apparent when considered in connection with the following detailed description and appended drawings in which like designations denote like elements in the various views, and wherein:
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DETAILED DESCRIPTION OF THE INVENTION
[0021] As shown in
[0022] The first housing 11 includes a first housing bottom face 111 (
[0023] Within the casing 1 there is an upper interior plate 13A and a lower interior plate 13B that divide the interior into the laser ranging device 2 and the tapeline structure 3 as shown in
[0024] The device of the present invention may further include a sheath 4 which can be made of elastic material or soft material, partially or fully covering the first housing side wall 112 and the second housing side wall 122, and/or partially or fully covering the joint between the first housing bottom face 111 and the first housing side wall 112. The sheath 4 serves to enhance the feel of the device in the hand of the user, increasing the friction coefficient between the device and the user's hand, which helps to prevent the device from sliding out of the user's hand. Further, if the device slides out of the user's hand, the sheath has a certain cushioning effect, and increases the potential protection of the internal electronic devices and mechanical structures from breakage.
[0025] As shown in
[0026] When the tape 32 is pulled out of the housing 1, the press block 34 presses against the tape 32 due to an attached spring force, such that the length of the tape 32 outside the casing 1 is held constant against being drawn back into the casing by the spring force on the wheel 31 seeking to wind up the tape. While the tape remains stationary due to the press block it can be read by the user. When the tape retraction button 40 is pressed, the press block is lifted from the tape and it is wound back onto the wheel to restore it to its original position.
[0027] As is typical, and as explained in more detail in U.S. Pat. No. 11,143,404, which is incorporated herein by reference in its entirety, the laser ranging device 2 includes a laser beam generator, a photodetector, a circuit board 23 with a processor, a display means 24 and a power supply in the form of batteries 26. The laser beam generator and the photodetector can be arranged side by side, or one above the other, and they are integrally combined. In one embodiment the laser generator and photodetector are arranged next to each other and are both recessed in the first housing side wall 112.
[0028] The processor on circuit board 23 is connected to the laser generator and the photodetector, which acquires the feedback electrical signal. The processor uses the feedback signal from the photodetector to calculate the distance from an object to be measured to the distance measuring device. In particular, during operation, the processor issues a control signal to command the laser beam generator to emit laser beams toward the object to be measured. The measurement light beams are reflected from the surface of the object to be measured and generate reflective light rays. At least the reflected light rays parallel with the measurement light beams are captured by the photodetector and are converted into the electrical feedback signal that is provided to the processer. The processor has a timer to record a time point when the laser generator emits laser beams due to the user operating button 42 and a time point when the feedback electric signal is obtained. Based on the time difference between the two time points, the distance from the object to be measured to the distance measuring device can be calculated. During this period of time, the laser beam goes back and forth between the object to be measured and the distance measuring device at the light velocity. Half of the product of the time difference and the light velocity is the distance to be measured between the object to be measured and the distance measuring device.
[0029] As shown in
[0030] The above are only specific implementations of the invention and are not intended to limit the scope of protection of the invention. Any modifications or substitutes apparent to those skilled in the art shall fall within the scope of protection of the invention. Therefore, the protected scope of the invention shall be subject to the scope of protection of the claims.
[0031] While the invention is explained in relation to certain embodiments, it is to be understood that various modifications thereof will become apparent to those skilled in the art upon reading the specification. Therefore, it is to be understood that the invention disclosed herein is intended to cover such modifications as fall within the scope of the appended claims.