Cylindrical stamped electrical power terminal
High current, light, and low-cost electrical power terminals that can withstand many mating cycles. A socket or a pin may be formed from a monolithic metal sheet, which may be stamped and formed into a terminal with a hollow portion, such as a cylindrical barrel. Features defining the radius of the barrel may be stamped in the sheet with high precision. The socket and the pin are shaped such that the positions of the mating contact surfaces of each terminal, and therefore the interference between them, are positioned based on these features. The terminals may have a low and precise interference, enabling the terminals to be designed with a low contact force that enables a long lifespan, such as 10,000 mating cycles. The terminals may have a high current capacity, such as 50 A or higher, and may be used in high current applications, such as a charging station or an electric vehicle, or in an application that calls for charging or discharging a battery.
1 . An electrical power connector, comprising:
a housing comprising:
a chamber;
a first projection disposed in the chamber and having a first opening; and
a second projection disposed in the chamber and having a second opening;
a first power terminal exposed at the first opening and a second power terminal exposed at the second opening, each power terminal of the first and second power terminals having an insertion axis and comprising a metal sheet comprising:
a hollow portion comprising a portion of the sheet formed around the insertion axis;
a mounting contact coupled to the hollow portion;
a mating contact on an exterior portion of the hollow portion;
a plurality of signal terminals disposed between the first power terminal and the second power terminal.
2 . The electrical power connector of claim 1 , wherein:
the portion of the metal sheet formed into the hollow portion comprises a first edge and a second edge; and
the portion of the metal sheet is formed such that the first edge is adjacent to the second edge.
3 . The electrical power connector of claim 2 , wherein:
the first edge comprises a first engagement member;
the second edge comprises a second engagement member;
the first engagement member is engaged with the second engagement member; and
the first edge abuts the second edge.
4 . The electrical power connector of claim 2 , wherein:
the metal sheet comprises a distal edge perpendicular to the first edge and the second edge;
the distal edge of the sheet is coined such that an end of the hollow portion is chamfered; and
the terminal further comprises an insulative cap inserted into the hollow portion.
5 . The electrical power connector of claim 1 , further comprising:
plating selectively covering the mating contact.
6 . The electrical power connector of claim 1 , wherein:
the hollow portion is a cylindrical barrel and an outer diameter of the barrel is between 3.6 and 4.8 mm.
7 . The electrical power connector of claim 1 , wherein:
each of the first and second power terminals comprises a pin; and
the metal sheet is a single, integral sheet.
8 . A power terminal for an electrical connector, the terminal having an insertion axis and comprising:
a metal sheet comprising:
a base comprising a portion of the sheet formed around the insertion axis;
a mounting contact coupled to the base;
a plurality of deflectable beams extending from the base parallel to the insertion axis, wherein:
the plurality of deflectable beams is 8 to 16 deflectable beams;
each deflectable beam of the plurality of deflectable beams extends from the base to a cantilevered end opposite the base;
a ratio a length of each deflectable beam to a thickness of the metal sheet is between 27:1 and 8:1;
a ratio a length of each deflectable beam to a width of each deflectable beam is between 12:1 and 4:1;
each deflectable beam of the plurality of deflectable beams comprises a mating contact at the cantilevered end of the deflectable beam;
each deflectable beam of the plurality of deflectable beams comprises plating on the mating contact;
the plurality of deflectable beams are arranged around the insertion axis; and
the mating contact of each deflectable beam faces the insertion axis,
wherein each of the plurality of deflectable beams is configured to generate a contact force of about 0.1 to 1.0 N applied to the plating on the mating contact of the deflectable beam when the terminal is mated with a radial interference between 0.1 to 0.175 mm to a complementary power terminal.
9 . The terminal of claim 8 , wherein each deflectable beam extending from the base parallel to the insertion axis comprises a straight beam with an arced segment, with the mating contact formed at a distal end of the straight beam on the arced segment.
10 . The terminal of claim 8 , wherein:
the base comprises a portion of the metal sheet comprising a first edge and a second edge separated by a width; and
the portion of the metal sheet is rolled into a barrel with the first edge adjacent to the second edge; and
the plurality of deflectable beams are arranged in a circle around the insertion axis.
11 . The terminal of claim 8 , wherein the terminal is configured to undergo 10,000 mating cycles with a complementary power terminal.
12 . The terminal of claim 8 , wherein:
the metal sheet has a thickness of between 0.3 and 0.7 mm.
13 . The terminal of claim 8 , wherein:
each deflectable beam has a width of between 0.7 and 1.3 mm.
14 . The terminal of claim 8 , wherein:
each deflectable beam has a length of between 7 and 9 mm.
15 . An electrical power system, wherein the terminal of claim 8 is configured to mate with a complementary power terminal; the system comprising:
(a) an electric vehicle, (b) a system configured to charge and/or discharge a battery, (c) an electric vehicle charging station, or (d) a system configured to charge and/or discharge a battery, comprising:
the terminal or the complementary power terminal.
16 . The terminal of claim 8 , wherein the terminal is configured to transmit electrical power having a current of at least 75 A.
17 . The terminal of claim 8 , wherein the plating comprises: (a) silver or (b) a first layer comprising a palladium nickel alloy and a second layer comprising gold,
wherein the metal sheet comprises a copper alloy.
18 . An electrical power system comprising:
a first electrical connector comprising a first power terminal, the first terminal comprising a first stamped metal sheet formed around a first insertion axis, the first metal sheet comprising:
a first base;
a hollow portion comprising a portion of the first metal sheet formed around the first insertion axis;
a first mounting contact coupled to the first base;
a first mating contact on an exterior portion of the hollow portion,
a second electrical connector comprising a second power terminal, the second terminal configured to mate with the first power terminal, the second terminal comprising a second metal sheet formed around a second insertion axis, the second metal sheet comprising:
a second base comprising a portion of the second metal sheet formed around the second insertion axis;
a second mounting contact coupled to the second base;
a plurality of deflectable beams extending from the second base, wherein:
each deflectable beam of the plurality of deflectable beams comprises a second mating contact;
the plurality of deflectable beams are arranged in a circle around the second insertion axis; and
the second mating contact of each deflectable beam faces the second insertion axis,
wherein the first terminal and the second terminal have a radial interference between 0.1 to 0.175 mm when mated;
wherein each deflectable beam of the plurality of deflectable beams of the second terminal comprises plating on the second mating contact; and
wherein when the first power terminal is mated to the second power terminal, the radial interference of the first terminal and the second terminal generates, for each of the plurality of deflectable beams, a contact force of about 0.1 to 1.0 N applied to plating on the second mating contact of the deflectable beam.
19 . The electrical power system of claim 18 , wherein the hollow portion of the first terminal is a cylindrical barrel and the barrel has an outer diameter between 3.0 to 5.5 mm.
20 . The electrical power system of claim 18 , wherein each of the plurality of deflectable beams of the second terminal is configured such that, when the second power terminal is mated to the first power terminal, the deflectable beam deflects by an amount less than 50% of a deflection at an elastic limit of the deflectable beam.