High frequency RFID printer
View Patent ↗There is disclosed a printer having a print head and a high frequency magnetic coupler to magnetically couple with high frequency RFID transponders in a web at or near the print head. The coupler couples magnetically to only one transponder at a time that is generally aligned with one or more inductors, and magnetic radiation from the inductor(s) may be at least partly shielded from upstream transponders, and a ground conductor in the upstream side of the coupler diminishes radiation to upstream transponders.
1. A printer comprising:
a print head,
a single web path for a longitudinally extending web of record members having longitudinally spaced high frequency RFID transponders, the web path extending in a downstream direction to the print head, and
a high frequency magnetic coupler disposed along the web path, the coupler being capable of magnetically coupling with the transponders by writing to and/or reading the transponders one-at-a-time, the coupler including at least one inductor capable of radiating or receiving magnetic energy,
each inductor having a magnetizable core and an energizable winding surrounding the core, and the coupler being disposed to radiate or receive magnetic energy at a level to write to or read a transponder in the web generally aligned with ‘the core but insufficient to write to or read any transponder in the web not generally aligned with at least one core; and
wherein the printer has a cylindrical magnetizable shield surrounding each core and its winding to shield magnetic radiation to RFID transponders upstream of the shield(s).
2. A printer as defined in claim 1 , including a magnetizable shield adjacent the core(s) and the respective winding(s) to shield magnetic radiation to RFID transponders upstream and/or downstream of the coupler.
3. A printer as defined in claim 1 , including at least one grounded conductor upstream of the core(s) to diminish magnetic radiation to transponders upstream of the conductor(s).
4. A printer as defined in claim 1 , including
a shield adjacent each core and the respective winding, and
a grounded conductor extending transversely of the path and disposed at an upstream position relative to the core(s) to diminish magnetic radiation to transponders upstream of the core(s).
5. A printer as defined in claim 1 , wherein each core comprises
a central elongate core portion,
an end plate joined to each end of the core portion, the winding being wrapped about the central core portion between the end plates.
6. A printer as defined in claim 1 , wherein the coupler includes a plurality of the inductors extending in a direction transverse to the web path.
7. A printer as defined in claim 1 , wherein the coupler includes a plurality of the inductors extending in a direction transverse to the web path, and
at least one grounded conductor extending in a direction transversely across the web path at an upstream position relative to the inductors to diminish magnetic radiation to RFID transponders upstream of the conductor(s).
8. A printer as defined in claim 1 , wherein the coupler includes a plurality of inductors connected in series.
9. A printer as defined in claim 8 , wherein the inductors are mounted on a circuit board.
10. A printer as defined in claim 1 , wherein the core(s) extending along a line generally perpendicular to the web path.
11. A printer as defined in claim 1 , a circuit board to mount the inductor(s), the circuit board having a grounded conductive trace on the upstream side of the inductor(s).
12. A printer as defined in claim 11 , wherein the grounded trace is at least co-extensive in length with the span of the inductors.
13. A printer as defined in claim 1 ,
a circuit board extending transversely to the web path, wherein the coupler includes a plurality of transversely spaced inductors disposed across the web path and mounted to the circuit board, and the circuit board having a grounded. conductive trace separate from the inductors extending substantially across the width of the web path at the upstream side of the inductors.