Snap fit sensor mounting bracket
An improved mounting bracket for securing a sensor element to a frame, the mounting bracket also adapted for quick release of a damaged sensor. One embodiment has ledges formed at the upper intersections of a pair of sidewalls and the back wall with a depending rail to exert a downward pressure on a vertically mounted sensor while an alternate embodiment has a pair of upwardly extending flexible tabs and two rounded fingers sized and distanced apart to match thru-holes in the sensor, thereby enabling a horizontally mounted sensor to be accurately positioned upon the base.
1 . A bracket for securing a horizontally oriented sensor to a frame, the sensor having a pair of thru-holes therein, said plate comprising:
a planar base having front, side and back portions; opposed side walls formed in said side portions and an end wall formed in said back portion;
a tapered through-hole in said central portion of the base; and,
a pair of upwardly extending flexible tabs formed in said side portions.
2 . The bracket of claim 1 further comprising two rounded fingers extending upwardly from said base, the fingers sized and distanced apart to match the thru-holes in the sensor, thereby enabling the sensor to be accurately and securely positioned upon the base.
3 . The bracket of claim 1 wherein the tabs comprising a notch at the upper end thereof, the notch having an inclined upper surface intersecting a flat lower surface parallel to the said base, thereby enabling the sensor to be secured thereon by the flexible tabs.
4 . The bracket of claim 1 wherein said through-hole is sized to accept a standard machine screw.
5 . The bracket of claim 1 comprising an engineering plastic material.
6 . A plate for securing a vertically oriented sensor to a frame, said bracket comprising:
a planar base having front, side and back portions;
opposed side walls formed in said side portions and an end wall formed in said back portion;
a tapered through-hole in said central portion of the base; and,
overhanging ledges formed at the upper intersections of the sidewalls and the back wall, wherein said ledges have a depending rail adapted to exert a downward pressure on a sensor secured in said bracket.
7 . The plate of claim 6 further comprising a flexible tab formed in the front portion of the planar base.
8 . The plate of claim 7 wherein the tab has a ramp with an inclined surface to facilitate insertion of a sensor into the bracket and a lip to retain said sensor within said bracket.
9 . The plate of claim 6 further comprising a pair of mounting tabs protruding downwards from said base.
10 . The plate of claim 6 wherein said through-hole is sized to accept a standard machine screw.
11 . The plate of claim 6 comprising an engineering plastic material.