Rotation-insensitive RFID devices and methods of forming the same
An RFID device includes a substrate and a lead frame secured to the substrate. The lead frame includes a pair of connection pads formed of a conductive material. An RFID chip and an antenna are electrically coupled to the lead frame. The width of the lead frame is substantially equal to the height of the lead frame. The connection pads of the lead frame may be oriented, among other options, along a direction parallel to a height of the substrate or along a direction parallel to a width of the substrate.
1. An RFID device comprising:
a substrate;
a lead frame secured to the substrate and comprising a pair of connection pads formed of a conductive material;
an RFID chip electrically coupled to the lead frame; and
an antenna electrically coupled to the lead frame, wherein a width of the lead frame is substantially equal to a height of the lead frame,
wherein the lead frame is positioned equidistant from two short edges of the substrate, and
the distance between the lead frame and each short edge of the substrate is substantially equal to the width of the lead frame.
2. The RFID device of claim 1 , wherein
the substrate includes two long edges extending in a direction parallel to a width of the substrate and two short edges extending in a direction parallel to a height of the substrate, and
the connection pads are oriented along a direction parallel to the height of the substrate.
3. The RFID device of claim 2 , wherein
the lead frame is positioned equidistant from the two short edges of the substrate, and
the distance between the lead frame and each short edge of the substrate is substantially equal to the width of the lead frame.
4. The RFID device of claim 2 , wherein the height of the lead frame is within 10% of the width of the lead frame.
5. The RFID device of claim 2 , wherein the height of the lead frame is within 5% of the width of the lead frame.
6. The RFID device of claim 1 , wherein
the substrate includes two long edges and the two short edges, wherein the two long edges extend in a direction parallel to a width of the substrate and the two short edges extend in a direction parallel to a height of the substrate, and
the connection pads are oriented along a direction parallel to the width of the substrate.
7. The RFID device of claim 1 , wherein the height of the lead frame is within 10% of the width of the lead frame.
8. The RFID device of claim 1 , wherein the height of the lead frame is within 5% of the width of the lead frame.
9. An RFID strap comprising:
a substrate;
a lead frame secured to the substrate, the lead frame comprising a pair of connection pads formed of a conductive material and configured to be electrically coupled to an antenna; and
an RFID chip electrically coupled to the lead frame, wherein a width of the lead frame is substantially equal to a height of the lead frame,
wherein the lead frame is positioned equidistant from two short edges of the substrate, and
the distance between the lead frame and each short edge of the substrate is substantially equal to the width of the lead frame.
10. The RFID strap of claim 9 , wherein
the substrate includes two long edges extending in a direction parallel to a width of the substrate and two short edges extending in a direction parallel to a height of the substrate, and
the connection pads are oriented along a direction parallel to the height of the substrate.
11. The RFID strap of claim 10 , wherein
the lead frame is positioned equidistant from the two short edges of the substrate, and
the distance between the lead frame and each short edge of the substrate is substantially equal to the width of the lead frame.
12. The RFID strap of claim 10 , wherein the height of the lead frame is within 10% of the width of the lead frame.
13. The RFID strap of claim 10 , wherein the height of the lead frame is within 5% of the width of the lead frame.
14. The RFID strap of claim 9 wherein
the substrate includes two long edges and the two short edges, wherein the two long edges extend in a direction parallel to a width of the substrate and the two short edges extend in a direction parallel to a height of the substrate, and
pair of connection pads are oriented along a direction parallel to the width of the substrate.
15. The RFID strap of claim 9 , wherein the height of the lead frame is within 10% of the width of the lead frame.
16. The RFID strap of claim 9 , wherein the height of the lead frame is within 5% of the width of the lead frame.
17. A method of manufacturing an RFID device, comprising:
providing a substrate;
securing a lead frame comprising a pair of connection pads formed of a conductive material to the substrate;
electrically coupling an RFID chip to the lead frame; and
electrically coupling an antenna to the lead frame, wherein a width of the lead frame is substantially equal to a height of the lead frame, and
wherein the lead frame is positioned equidistant from two short edges of the substrate, and
the distance between the lead frame and each short edge of the substrate is substantially equal to the width of the lead frame.
18. The method of claim 17 , wherein
the substrate includes two long edges and the two short edges, wherein the two long edges extend in a direction parallel to a width of the substrate and the two short edges extend in a direction parallel to a height of the substrate, and
said securing the lead frame to the substrate includes orienting the pair of connection pads along a direction parallel to the height of the substrate.
19. The method of claim 17 , wherein
the substrate includes two long edges and the two short edges, wherein the two long edges extend in a direction parallel to a width of the substrate and the two short edges extend in a direction parallel to a height of the substrate, and
said securing the lead frame to the substrate includes orienting the pair of connection pads along a direction parallel to the width of the substrate.