US 12,204,971 B2
Metal, ceramic, or ceramic-coated transaction card with window or window pattern and optional backlighting
Adam Lowe, Somerset, NJ (US); and John Esau, Marlboro, NJ (US)
Assigned to CompoSecure, LLC, Somerset, NJ (US)
Filed by CompoSecure, LLC, Somerset, NJ (US)
Filed on Apr. 5, 2023, as Appl. No. 18/131,055.
Application 18/131,055 is a continuation of application No. 17/211,972, filed on Mar. 25, 2021, granted, now 11,669,708.
Application 17/211,972 is a continuation of application No. 16/751,285, filed on Jan. 24, 2020, granted, now 11,151,437, issued on Oct. 19, 2021.
Application 16/751,285 is a continuation in part of application No. PCT/US2018/052832, filed on Sep. 26, 2018.
Application 16/751,285 is a continuation in part of application No. 16/124,711, filed on Sep. 7, 2018, granted, now 10,885,419, issued on Jan. 5, 2021.
Claims priority of provisional application 62/686,358, filed on Jun. 18, 2018.
Claims priority of provisional application 62/610,745, filed on Dec. 27, 2017.
Claims priority of provisional application 62/573,789, filed on Oct. 18, 2017.
Claims priority of provisional application 62/555,367, filed on Sep. 7, 2017.
Prior Publication US 2023/0252259 A1, Aug. 10, 2023
This patent is subject to a terminal disclaimer.
Int. Cl. G06K 19/077 (2006.01); G06K 19/06 (2006.01)
CPC G06K 19/07701 (2013.01) [G06K 19/06196 (2013.01); G06K 19/07722 (2013.01); G06K 19/07747 (2013.01)] 16 Claims
OG exemplary drawing
 
1. A transaction card having opposite finished surfaces and a periphery, the transaction card comprising:
a metal layer having opposite surfaces and at least two openings, each opening extending through one or both of the opposite finished surfaces, the metal layer having a visual appearance;
a transponder module disposed in one of the at least two openings in the metal layer the transponder module comprising a component in a transaction circuit configured to communicate wirelessly with a card reader that is configured to emit radio frequency (RF) waves having energy, the transaction circuit configured to receive an incoming RF signal from the card reader, to respond with an outgoing RF signal, and to power the transaction circuit by harvesting energy from the RF waves;
a light emitting diode (LED) module disposed in another of the at least two openings in the metal layer and having a planar illuminated area visible from a finished surface of the transaction card, the LED module comprising: one or more LEDs configured to emit light and a light guide layer for distributing the light emitted by the one or more LEDs, the LED module comprising a component in an illumination circuit configured to harvest energy from the RF waves for powering the one or more LEDs;
a plurality of openings extending partially or entirely through the metal layer, wherein the plurality of openings may be partially or entirely filled with filler and wherein light emitted by the one or more LEDs shines into the light guide and is transmitted out through the plurality of openings; and
wherein the filler is non-transparent and non-translucent with an illuminable front face surface.