The present invention relates to a flashlight with a flashlight casing and a push switch, latching switch or rotary switch mounted in an end cap having a switch housing in which a first and a second contact engage.
It is known to integrate a switch in the end cap that is screwed onto the flashlight casing, the battery (batteries) or the storage batteries being inserted into the flashlight casing with the end cap unscrewed. With flashlights of this type one contact of the switch is connected to a spiral spring that on the one hand fixes the batteries inside the flashlight and on the other hand forms a connection with one pole of the battery, so that the current flows via the spiral spring. In order to create a closed electric circuit in the switched-off state, usually the other contact is positioned by the end cap so that the electric current flows from there further via the thread or other electrical connections over the flashlight casing to the light source.
The disadvantage of circuits in conventional flashlights is on the one hand that the current is guided through a plurality of connections such that a specific contact resistance is effective at each connection. Furthermore, due to the current flow inside the spiral current a self-induction voltage is induced that counteracts the actual current flow. Both of these lead to a lower voltage being available for the light source, so light output of the light source is markedly reduced.
It is therefore the object of the present invention to create a flashlight with a switch in which the number of contacts is reduced and current flow is optimized, in particular current flow via a spiral spring is avoided.
This object is attained by the flashlight according to
Further embodiments of the invention are described below and in the subordinate claims.
In particular according to a preferred embodiment a light-emitting diode (LED) is provided as light source and at least one battery or a storage battery, i.e. at least one rechargeable battery, is provided as the power supply. Likewise, as is known according to the prior art, a stack of several batteries connected in series can also be used. Above all the use of an LED as a light source reduces the power consumption so that more energy is used to generate light.
According to a further development of the invention, the switch is contained in a subhousing having apertures through which the contacts of the switch project outward radially or at its front end where they are formed as leaf springs and form current-conducting electrical connections. The subhousing is preferably formed from plastic by injection molding so that production costs can be kept extremely low. The subhousing preferably has two parts and is preferably composed of two semicylindrical tube segments. In order to insert a switch into the subhousing, first the tube segments are separated from one another and the switch is placed inside one of the tube segments. Subsequently, the tube segments are joined again to form the subhousing, and the switch is contained and held inside the subhousing. So that the contacts of the switch can be guided out of the subhousing in order to render possible an electric contact, according to a preferred embodiment of the invention at least one of the connection surfaces of the tube segments is formed with grooves in which the contacts lie with the switch in place. Preferred positions of the cited grooves are explained in more detail below.
The subhousing preferably has a further hole through which in the assembled state a control button engages, with which the switch is actuated. The control button is a part of the end cap in which the control button is coaxially shiftable. Preferably, a flexible rubber seal is provided between the control button and the switch so that the switch and the contacts are supported in a dust-tight and moisture-tight manner.
As already indicated, according to a particularly preferred embodiment of the present invention, the subhousing is detachably fastened inside the end cap, to which end the subhousing preferably has an external thread and the end cap preferably has a complementary internal thread so that the subhousing can be screwed into the end cap. Alternatively, the subhousing could also be connected to the end cap by a plug connection, a latching connection or a bayonet connection. A stable option that is easy to assemble is hereby created for securely supporting the switch inside the end cap. One notable feature that results is the low number of parts used, since, in addition to the end cap, the two-part subhousing and the switch, no further parts have to be used in order to make up an operational end cap switch. This results in a reduction in the assembly as well as material costs.
In order to ensure a secure, trouble-free and current-conducting connection, the contacts, which project out of the subhousing as leaf springs, must be connected to current-conducting parts of the flashlight. In principle, two different options are provided for this purpose, which essentially differ through the embodiment of the first contact, without the present invention being restricted thereto.
In both embodiments the second contact engages through an aperture of the subhousing and forms on the front face thereof an electrical connection with a pole of the battery or the storage battery in the assembled state. On the one hand, this avoids the current flowing via a spiral spring, on the other hand, the contact is a bent leaf spring that can bear firmly on the pole to form a good connection therewith. To hold the second contact in a stable manner, the free end thereof is preferably fitted in an L-shaped aperture on the front face of the subhousing. Alternatively to this, the leaf spring can also be fixed via a small screw or other fastener.
According to a first preferred embodiment of the first contact, it through an aperture in the subhousing and in the assembled state forms an electrical connection with the flashlight casing. To this end, the aperture is on the front face of the subhousing and is a bent leaf spring that engages through the aperture and has a projecting part at least partially engaging around the cylindrical wall of the subhousing on the front, so that there is an electrical connection with the flashlight casing that to this end preferably has a socket-shaped projection as a mounting surface and electric contact surface. Because the end cap can be screwed onto the flashlight casing, the pressure with which the first contact is pushed onto the socket-shaped projection can be selected as desired so that an extremely strong and secure contact is created there. Furthermore, with this embodiment the advantage results that the current is not guided via the end cap but directly onto the flashlight casing, so that a connection interface, namely from the end cap to the flashlight casing, is eliminated compared to conventional flashlights.
According to an alternative embodiment, the first contact engages through an aperture in the subhousing and in the assembled state forms an electrical connection with the end cap. To this end, the aperture is on the outer surface of the subhousing and engages through this aperture and the end of the contact projecting out of the aperture lies on an annular shoulder face that projects at least in some regions radially from the wall surface of the subhousing so that in the assembled state there is an electrical connection with the end cap in which the subhousing is detachably fixed. The bearing surface can here be an annular extension of the front face of the subhousing. In other words, the first contact is clamped between a bearing surface of the subhousing and the end cap, so that when the subhousing is screwed into the end cap a secure connection is created by high pressure. Although with this embodiment the current is guided via the end cap, so that further connection interface is formed between the end cap and the flashlight casing, the first contact with this embodiment is supported more securely free from dust and dirt, so that a battery change above all in a dusty and dirty environment is associated with a low risk of soiling the contact surface, and the electric contact could be impaired under some circumstances.
The switch has a simple plastic housing from which, in addition to the contacts, an actuating element also projects. According to a preferred embodiment, the actuating element is axially moveable and/or has an electrically conductive contact plate on its front and engageable with both contacts at the same time. A simple option is created hereby for forming a press switch with as few contacts as possible.
Alternatively to this, one of the contact can be formed inside the housing as a bent leaf spring that in the relaxed state is spaced from the other contact, and both contacts can be connected by movement the actuating element against the force of the leaf spring. Through this measure a further contact interface is eliminated compared to the alternatives with a contact plate. In both alternative embodiments, however, in an advantageous manner that the actuating element is a push button or a rotary knob that is axially moveable against the force of a spiral spring. The actuating element in the relaxed state is spaced from the contacts so that an accidental switching on or off of the flashlight is prevented.
Finally, according to a further advantageous embodiment of the invention, snap-in elements are provided on the actuating element, so that a touch function or optionally a permanent switch function is adjustable. This means that not only the handling of the flashlight but also the functionality is improved. Concrete embodiments as well as further advantageous embodiments of the present invention are described below with reference to the drawings. Therein:
a-g show individual parts of a flashlight separately and when assembled,
a-g show alternative embodiments of the individual parts,
a and 3b each show a respective embodiment of a switch, and
a and 4b show the operation of a switch.
A switch 1, as preferably used in the circuit according to the invention or in the flashlight according to the invention, has a housing 2 as well as an axially displaceable actuating element 3 formed as a latch or push button. Furthermore, a first contact 4 as well as a second contact 5 are provided that both can be bent leaf springs (see
As already explained above, essentially two options are provided for closing the connection between the first contact 4 and the flashlight casing 7 that are shown in particular in
In the alternative embodiment (
In order to protect the interior of the flashlight as well as the circuit from the entry of dirt and moisture, a rubber seal ring 113 is provided between the subhousing 13 and a control button 112.
The circuit is formed by the battery 8, the switch 1 with the contacts 4 and 5, the flashlight casing 7 and a light source 11. If only one contact is available inside the switch, only five contact connections 121, 122, 123, 125 and 125 are provided in the circuit according to
a and b each shows an embodiment of a switch 1, as it is preferably used in the circuit according to the invention. The actuating element 3 is axially moveable and is held at a spacing from the contacts 4 and 5 by the force of a spiral spring 21. The actuating element 3 according to
Number | Date | Country | Kind |
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10 2009 054 119.5 | Nov 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/DE2010/001345 | 11/19/2010 | WO | 00 | 6/16/2011 |