ENERGY STORAGE CONNECTOR
An energy storage connector includes an integrated socket and a signal connector plug. The integrated socket includes a socket body and a rear-mounted insert mounted at the socket body and configured to be plugged with an energy storage device. The signal connector plug includes a signal plug body. One end of the signal plug body is detachably mounted at the socket body and plugged with the rear-mounted insert, and another end of the signal plug body is configured to be plugged with a signal cable.
1 . An energy storage connector, comprising:
an integrated socket, the integrated socket comprising a socket body and a rear-mounted insert mounted at the socket body and configured to be plugged with an energy storage device; and
a signal connector plug, the signal connector plug comprising a signal plug body, one end of the signal plug body being detachably mounted at the socket body and plugged with the rear-mounted insert, and another end of the signal plug body being configured to be plugged with a signal cable.
2 . The energy storage connector according to claim 1 , wherein:
the signal connector plug further comprises a locking hook and a plug case, and the locking hook and the signal plug body are both fixed at the plug case;
the socket body is provided with a protruding annular stopper, and an outer wall of the annular stopper is provided with a protruding locking block; and
the one end of the signal plug body is configured to be inserted into the annular stopper along a direction along which the locking block and the locking hook are arranged in sequence and abut against each other to clamp the one end of the signal plug body in the annular stopper.
3 . The energy storage connector according to claim 1 , wherein:
the socket body is provided with a hanging slot; and
one end of the rear-mounted insert is detachably mounted in the hanging slot and plugged with the one end of the signal plug body, and another end of the rear-mounted insert is configured to be plugged with the energy storage device.
4 . The energy storage connector according to claim 3 , wherein:
the rear-mounted insert is provided with a protruding hanging platform;
an inner wall of the hanging slot is provided with a stopper;
the one end of the rear-mounted insert is configured to be inserted into the hanging slot along a concave direction of the hanging slot;
the stopper and the hanging platform are arranged in sequence along the concave direction of the hanging slot and abut against each other, so as to clamp the one end of the rear-mounted insert in the hanging slot; and
the hanging platform is configured to be retracted along a direction opposite to a protruding direction of the hanging platform to be separated from the stopper.
5 . The energy storage connector according to claim 1 , further comprising:
a maintenance switch, comprising:
a switch body detachably mounted at the socket body; and
a maintenance inserting piece fixed at the switch body;
wherein:
the integrated socket further comprises a slot assembly mounted at the socket body and configured to be electrically connected to a conductive loop of the energy storage device; and
the maintenance inserting pieces is inserted in the slot assembly.
6 . The energy storage connector according to claim 5 , wherein:
the maintenance switch further comprises:
a maintenance handle fixed to the switch body; and
two sliding rails oppositely arranged at two sides of the maintenance handle; and
the integrated socket further comprises two oppositely arranged rotating shafts fixed at the socket body, the two rotating shafts being slidably arranged at the two sliding rails, respectively.
7 . The energy storage connector according to claim 5 , wherein:
the integrated socket further comprises a socket buckle cover fixed to the slot assembly, the socket buckle cover being provided with a protruding buckle platform;
the socket body is provided with a buckle groove, and an inner wall of the buckle groove is provided with a stopper;
at least part of the slot assembly and the socket buckle cover are configured to be inserted into the buckle groove along a concave direction of the buckle groove; and
the stopper and the buckle platform are arranged in sequence along the concave direction of the buckle groove and abut against each other, so as to clamp the at least part of the slot assembly and the socket buckle cover in the buckle groove.
8 . The energy storage connector according to claim 7 , wherein:
the slot assembly comprises:
a slot member plugged with the maintenance inserting piece; and
an adapter inserting piece, one end of the adapter inserting piece being configured to be inserted into the slot member after passing through the socket buckle cover, and another end of the adapter inserting piece being configured to be electrically connected to the conductive loop of the energy storage device;
the slot member and the socket buckle cover are configured to be inserted into the buckle groove along the concave direction of the buckle groove; and
the socket buckle cover is provided with a position-limiting piece, the position-limiting piece and the slot member are arranged in sequence along the concave direction of the buckle groove and abut against each other, so as to clamp the slot member in the buckle groove.
9 . The energy storage connector according to claim 8 , wherein:
the adapter inserting piece comprises a protruding position-limiting side tooth;
the socket buckle cover is provided with a protruding positioning spring tooth;
the adapter inserting piece is configured to be inserted into the socket buckle cover along a direction along which the positioning spring tooth and the position-limiting side tooth are arranged in sequence and abut against each other; and
the positioning spring tooth is configured to be retracted along a direction opposite to a protruding direction of the positioning spring tooth and separated from the position-limiting side tooth.
10 . The energy storage connector according to claim 8 , wherein:
the slot member comprises two oppositely arranged walls and two elastic pieces located between the two walls, and the two elastic pieces protrude along a direction in which the two elastic pieces approach each other; and
one end of the adapter inserting piece is inserted between the two elastic pieces and configured to cause one elastic piece of the two elastic pieces to elastically deform under pressing of the adapter inserting piece and one of the two walls that is fixed to the one elastic piece.
11 . The energy storage connector according to claim 5 , wherein:
the maintenance inserting piece is one of two maintenance inserting pieces of the maintenance switch that are fixed at the switch body;
the maintenance switch further comprises a connection structure fixed at the switch body, located between the two maintenance inserting pieces, and electrically connected to the two maintenance inserting pieces;
the slot assembly is one of two slot assemblies of the integrated socket that are mounted at the socket body and configured to be electrically connected to the conductive loop of the energy storage device; and
the two maintenance inserting pieces are inserted in the two slot assemblies, respectively.
12 . The energy storage connector according to claim 11 , wherein the connection structure includes a fuse.
13 . The energy storage connector according to claim 1 , further comprising:
a current connector plug;
wherein:
the integrated socket further comprises a lot assembly mounted at the socket body and configured to be plugged with one of a positive electrode and a negative electrode of the energy storage device;
the current connector plug comprises a current plug body, one end of the current plug body being detachably mounted at the socket body and plugged with the slot assembly, and another end of the current plug body being configured to be plugged with a cable.
14 . The energy storage connector according to claim 13 , wherein:
the current connector plug further comprises:
a plug handle fixed to the current plug body; and
two sliding rails oppositely arranged at two sides of the plug handle; and
the integrated socket further comprises two oppositely arranged rotating shafts fixed at the socket body, the two rotating shafts being slidably arranged at the two sliding rails, respectively.
15 . The energy storage connector according to claim 1 , wherein the integrated socket further comprises a flange sealing ring mounted at the socket body and configured to abut against the energy storage device, and the flange sealing ring surrounds the rear-mounted insert.
16 . The energy storage connector according to claim 15 , wherein the socket body is provided with an annular groove, a part of the flange sealing ring is clamped in the annular groove, and another part of the flange sealing ring is used configured to abut against the energy storage device.
17 . The energy storage connector according to claim 1 , wherein the integrated socket further comprises a plurality of insert nuts integrally formed with the socket body by injection molding and configured to fix the energy storage device.
18 . The energy storage connector according to claim 1 , wherein:
the socket body is provided with:
a first mounting surface; and
a second mounting surface opposite to the first mounting surface and configured to be mounted to the energy storage device;
the rear-mounted insert is arranged at the second mounting surface; and
the signal connector plug is mounted at the first mounting surface.