The present invention relates to a fuel injector that includes a solenoid, an armature, and an axially displaceable valve part which is enclosed by a plastic extrusion coat, and an RFID chip that is attached to the plastic extrusion coat at an advantageous position.
There are methods that relate to a fuel injector on which data are written using a data matrix code. The data matrix code contains customer-relevant information which the customer may read, evaluate, and immediately use.
A disadvantage is that the storage capacity of the data matrix code attached to the fuel injector is small, so that only a limited, selective amount of customer-relevant information is able to be relayed to the customer.
An object of the present invention, therefore, is to provide a fuel injector having a storage medium with a high storage capacity. The storage medium, which is to be reliably attached to the fuel injector, is designed to store data generated during production of the fuel injector as well as data essential for operating the fuel injector.
This object may be achieved according to the exemplary embodiments and/or exemplary methods of the present invention by use of a fuel injector having an RFID chip at a favorable position.
The fuel injector according to the present invention contains a microchip on which specific data may be written, the microchip attached to the fuel injector initially being provided on the fuel injector without data content. It is advantageous that the microchip is an RFID chip having a high storage capacity.
A further advantage of the fuel injector according to the present invention is that the RFID chip is irreversibly attached to the fuel injector, a favorable position for attachment being provided in the extrusion-coated plastic element in the injector housing. It is advantageous that great flexibility is provided in selecting the favorable position, since the relative positioning of the RFID chip need not be spatially aligned with a writing and reading unit; i.e., it is not necessary for the RFID chip and the writing and reading unit provided for same to be positioned in the immediate vicinity of one another.
The RFID chip advantageously includes a transmitter and a responder, which allows data to be written on and deleted from the RFID chip in a contactless manner via a suitable writing and reading unit.
In addition to the high storage capacity of the RFID chip attached to the fuel injector, the fuel injector according to the present invention has the advantage that the RFID technology may be implemented more economically than a data matrix code to be attached to a fuel injector.
Advantageous refinements and improvements of the fuel injector stated in claim 1 and of the method stated in claim 11 are made possible by the measures recited in the subclaims.
It is also advantageous that during use, the fuel injector according to the present invention may be unambiguously identified during the production process, since the RFID chip on which specific data may be written but which is initially provided without data content may be read before each production step, or may be further written on after each production step. As a result, it is advantageous that complicated linking of the manufacturing process may be omitted, thereby also reducing the quantity of rejects generated.
Installation defects may advantageously be avoided by individually writing on each produced fuel injector, since the individual data for the fuel injector may also be read by the customer before each particular step.
One exemplary embodiment of the present invention is illustrated in simplified form in the drawings and is explained in greater detail in the following description.
One possible favorable position, as shown in
The method according to the present invention for identifying fuel injectors 1 is directed to the attachment of RFID chip 10, on which specific data may be written, at a favorable position on corresponding fuel injector 1, RFID chip 10 initially being without data content. RFID chip 10 is irreversibly cast or glued onto plastic extrusion coat 7.
At the end of production line 18, a test station 22 is provided which tests the end product, i.e., fuel injector 1, in a targeted manner on the basis of the specific data transferred, in particular injector characteristics. If a test yields a negative result, negatively tested fuel injector 1 is sorted into a container 23 for rejects. Positively tested fuel injectors 1, i.e., fuel injectors 1 which meet the quality requirements, are sorted according to their identification, which is contained on RFID chip 10, into various packaging cartons 26, 27, 28.
RFID chip 10 may be glued to plastic extrusion coat 7 or may be cast with same.
The present invention is not limited to the illustrated exemplary embodiments and may also be used, for example, for fuel injectors which inject into an intake manifold which leads to a combustion chamber. the fuel injectors designed according to the present invention may be used in spark-ignition or compression-ignition internal combustion engines.
| Number | Date | Country | Kind |
|---|---|---|---|
| 10 2005 050 567.8 | Oct 2005 | DE | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/EP2006/066912 | 9/29/2006 | WO | 00 | 3/10/2009 |