The present invention relates to a dial locking system. More particularly, the dial (100) is locked with the compartment (200) using snap fit at central axis (7) and on circumference of the dial (100). The time required to assemble the dial (100) with compartment (200) is reduced which in turn increases the production rate.
In the existing dial locking system the assembly of the dial (100) with the compartment (200) were carried out by screws (3) which increases the time of assembly and reduces the production rate. Whereas in the case of instant invention the use of snap fit in assembly of dial (100) with the compartment (200) reduces the time required to assembly and also increases the production rate.
The Compartment are mainly used in the instrument cluster for both holding the dial and guide the light from the LED (where mounted in the top side of the PCB (6)) to Bottom surface of the dial (where the numerals values are printed to indicate the speed or Engine RPM of the Vehicle).
Both Dial and the Compartment coming under the PCB (6) assy. Initially Compartment assembled with PCB (6) by using the snap fit at two places. After few electronic components assembly, the dial will be assembled by using the screw (3) (The No. of Screws (3) using for the dial assembly only based on the size of the dial and the compartment)
The dial locking system contains the following components, which locks the dial.
The assembly sequence is as given below:
The principal object of the present invention is to develop a dial locking system wherein the dial (100) locks with compartment (200) using a snap fit at central axis (7) and on circumference of the dial (100).
Another object of the present invention is to develop the central axis (7) of the compartment comprising slots (201,202) to position dial pinches (101,102) of the dial in unlocked stage.
Yet another object of the invention is to develop the slots (201,202) of compartment (200) which has semicircular bulged profiles (203,204) facing downwards.
Still another object of the invention is to provide a rotation to the dial (100) about the central axis (7) in counter clockwise direction such that the dial pinches (101,102) over rides the profile (203, 204) and resting profile (205) rests in dial locking profile (106) of the dial (100) to lock with the compartment.
Still another object of the invention is to develop a method of assembling a dial locking system.
Still another object of the invention is to provide the mounting for light guide/compartment (200) with PCB (6) by using snap fit.
Accordingly the invention provides a dial locking system comprising a dial (100) having dial pinches (101, 102) at center and dial locking profile (106) at periphery; a compartment (200) having a central axis (7) with slots (201, 202) and resting profile (205) to accommodate the dial locking profile (106) for locking at periphery; and bulged profiles (203, 204) at the slots (201, 202) of the compartment (200) facing downwards for locking at center by the dial pinches (101,102); a method for locking a dial (100) with a compartment (200), said method comprising steps of: placing the dial (100) on the compartment (200) such that the dial pinches (101,102) are in align with the slots (201,202) of the compartment (200), and rotating the dial (100) about the central axis (7) in counter clockwise direction such that the dial pinches (101,102) over rides the profile (203, 204) and resting profile (205) rests in dial locking profile (106) of the dial (100) to lock with the compartment (200); a method of assembling a dial locking system, said method comprising steps of: mounting light guide/compartment (200) with PCB (6) by using snap fit; assembling of LCD (4) through the compartment (200) by soldering with the PCB (6); placing of dial (100) on the compartment (200) and matching dial pinches (101,102) with slots (201,202) provided in the compartment (200); and rotating the dial (100) about the central axis (7) in counter clockwise direction such that the dial pinches (101,102) over rides the profile (203, 204) and resting profile (205) rests in dial locking profile (106) of the dial (100) to lock with the compartment (200).
a: shows front view of the dial (100).
b: shows front view of dial pinches (101,102).
c: shows front view of the dial locking profile (106).
a: shows front view of the partially locked dial (100) with compartment (200).
b: shows isometric view of slots (201,202) of the compartment (200).
c: shows the front view of the partially locked locking area 2
a: shows the side view of the slots (201,202) and profile (203,204) of the compartment (200).
b: shows the isometric view of the part in which dial pinches (101,102) matches with slots (201,202) of the compartment (200).
a: shows the isometric view of the part in which the dial pinches (101,102) of the dial (100) is over riding the profile (203,204) of the compartment (200).
b: shows the isometric view of the part in which the dial pinches (101,102) of the dial (100) is over ridded the profile (203,204) of the compartment (200) and locked.
a: shows the front view of the part while the resting profile (205) of the compartment (200) is rubbing along the circumference of the dial (100).
b: shows the front view of the part when dial (100) gets locked after the resting profile (205) of the compartment (200) rests in dial locking profile (106).
The present invention is in relation to a dial locking system comprising a dial (100) having dial pinches (101, 102) at center and dial locking profile (106) at periphery; a compartment (200) having a central axis (7) with slots (201, 202) and resting profile (205) to accommodate the dial locking profile (106) for locking at periphery; and bulged profiles (203, 204) at the slots (201, 202) of the compartment (200) facing downwards for locking at center by the dial pinches (101,102).
In yet another embodiment of the present invention the dial pinches (101, 102) are in align with the slots (201, 202) of the compartment (200) in unlocked stage.
In still another embodiment of the present invention the dial (100) thickness ranges from about 0.5 mm to about 2 mm.
In still another embodiment of the present invention the dial (100) is rotatable preferably in counterclockwise direction about central axis (7) at an angle of about 50 degrees.
The present invention is in relation to a method for locking a dial (100) with a compartment (200), said method comprising steps of: placing the dial (100) on the compartment (200) such that the dial pinches (101,102) are in align with the slots (201,202) of the compartment (200), rotating the dial (100) about the central axis (7) in counter clockwise direction such that the dial pinches (101,102) over rides the profile (203, 204) and resting profile (205) rests in dial locking profile (106) of the dial (100) to lock with the compartment (200).
In still another embodiment of the present invention the resting profile (205) rubs along the circumference of the dial (100) during rotation.
In still another embodiment of the present invention the dial (100) is placed on the compartment and moved downwards by a predetermined depth preferably 1 mm.
In still another embodiment of the present invention the dial (100) is rotated in counterclockwise direction at about 45 degrees.
The present invention is in relation to a method of assembling a dial locking system, said method comprising steps of: mounting light guide/compartment (200) with PCB (6) by using snap fit (2), assembling of LCD (4) through the compartment (200) by soldering with the PCB (6), placing of dial (100) on the compartment (200) and matching dial pinches (101,102) with slots (201,202) provided in the compartment (200), rotating the dial (100) about the central axis (7) in counter clockwise direction such that the dial pinches (101,102) over rides the profile (203, 204) and resting profile (205) rests in dial locking profile (106) of the dial (100) to lock with the compartment (200).
Advantages of Instant Invention:
The dial locking System contains the following components, which holds the dial (100).
The assembly sequence is as follows below.
The Speedo or Tacho graduation offset noticed while assembling the dial with light guide by using screw. This may produce some problem during the pointer pressing and calibration of instrument cluster.
At Unlocked Stage of the Dial (100) with the Compartment (200).
b shows the dial (100) is placed on the compartment (200) matching the dial pinches (101,102) of the dial (100) (refer
Locked Stage of the Dial (100) with the Compartment (200)
Locking Area 1:
Referring to
Locking Area 2:
Referring to
This application is a continuation of and incorporates by reference PCT/IN2007/000428 filed Sep. 24, 2007.
Number | Name | Date | Kind |
---|---|---|---|
1311145 | Seindler | Jul 1919 | A |
1787684 | Jacobi | Jan 1931 | A |
2151089 | Douglas | Mar 1939 | A |
2272688 | Catron | Feb 1942 | A |
2745275 | Jacobi | May 1956 | A |
3287980 | Gilliland | Nov 1966 | A |
4227760 | Witek, Jr. | Oct 1980 | A |
4253486 | Hardin | Mar 1981 | A |
6144548 | Kerchaert | Nov 2000 | A |
6300563 | Kerchaert | Oct 2001 | B1 |
6325667 | Sawayanagi | Dec 2001 | B2 |
6710526 | Helbig | Mar 2004 | B1 |
7357669 | Gabet | Apr 2008 | B2 |
20100140419 | Brandt et al. | Jun 2010 | A1 |
Number | Date | Country |
---|---|---|
4314190 | Jan 1994 | DE |
19737787 | Mar 1999 | DE |
Number | Date | Country | |
---|---|---|---|
20100183368 A1 | Jul 2010 | US |
Number | Date | Country | |
---|---|---|---|
Parent | PCT/IN2007/000428 | Sep 2007 | US |
Child | 12727199 | US |