1. A method of at least one of storing and reading out data of a fuel metering system, comprising:
assigning data regarding at least one of a fuel pump and an injector to at least one electronic component;
controlling with a control unit the fuel metering system by taking the assigned data into account, wherein the at least one electronic component is at least one of mechanically and electrically connected to the control unit during a first interval of time and is at least one of mechanically and electrically detached from at least one of the control unit and a fuel metering unit during a second interval of time, wherein there is an electrical interruption of the line to the at least one electronic component after the readout of data.
2. The method according to claim 1, further comprising:
severing at least one feeder line to the electronic component after the readout of data.
3. The method according to claim 1, further comprising:
removing the electronic component after the readout of data.
4. The method according to claim 1, wherein the electronic component is integrated into a plug, and wherein the plug is removed after the readout of data.
5. The method according to claim 1, wherein the electronic component is integrated into a plug having at least two latch positions.
6. The method according to claim 5, wherein a first latch position is used for readout of data and a second latch position is used in normal operation.
7. A device for at least one of storing and reading out data of a fuel metering system, comprising:
at least one electronic component configured to receive data regarding at least one of a fuel pump and an injector; and
a control unit configured to take into account the data to control the fuel metering system,
wherein the electronic component is at least one of mechanically and electrically connected to the control unit during a first interval of time and is at least one of mechanically and electrically detached from at least one of the control unit and a fuel metering unit during a second interval of time, wherein there is an electrical interruption of the line to the at least one electronic component after the readout of data.
8. The device according to claim 7, wherein the electronic component is one of a resistor, a capacitor and an EEPROM.
9. The method according to claim 2, wherein the at least one feeder line is severed by an automatic severing of a rupture joint in the at least one feeder line due to at least one of a longer-lasting current load and a voltage rise.
10. The method according to claim 2, further comprising:
supplying the at least one electronic component with at least one of a high current and high voltage so that an automatic severing of a rupture joint occurs.
11. The method according to claim 10, wherein the at least one electronic component is one of a resistor, a capacitor and an EEPROM.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A brush body comprising a plurality of bristle bundles on a brush head, wherein:
the plurality of bristle bundles includes a bristle that includes a core, which is formed by a conductive member, and a sheath, which covers the core and is formed by an insulative member; and
the core projects from the sheath at a tip portion of the bristle and functions as an electrode that energizes an oral cavity.
2. The brush body according to claim 1, wherein a portion inserted into the oral cavity is at least partially covered by the insulative member.
3. The brush body according to claim 2, wherein the brush body includes a front surface on which the bristle bundles are embedded and a rear surface opposite to the front surface, wherein the insulative member covers at least the rear surface.
4. The brush body according to claim 2, wherein the portion inserted into the oral cavity excluding the tip portion of the bristle is covered by an insulative member.
5. The brush body according to claim 1, wherein the tip portion of the bristle has a pointed shape and at least part of the pointed shape is formed by the core.
6. The brush body according to claim 1, wherein the tip portion of the bristle has a semispherical shape, and at least part of the semispherical shape is formed by the core.
7. The brush body according to claim 1, wherein the sheath of the bristle is formed by a material having a lower hardness than a material that forms the core.
8. The brush body according to claim 1, wherein the electrode generates chlorine having a sterilization effect through electrolysis of oral cavity fluid that is proximal to the electrode.
9. A toothbrush comprising:
the brush body according to claim 1; and
an energizing means for supplying the electrode of the bristle with current for local energizing.
10. The toothbrush according to claim 9, further comprising an oscillation actuator that oscillates the brush head.