Shield terminal including structures having different dielectric constants
A shield terminal is provided with a pair of female inner conductors including box-shaped connecting portions into which tabs of male inner conductors are inserted, a female dielectric configured by uniting a first member and a second member made of a material having a lower dielectric constant than the first member, the pair of female inner conductors being accommodated in the female dielectric while being arranged in parallel, and a front separation wall portion formed in the second member and disposed to partition between a pair of the box-shaped connecting portions. Since the female dielectric is divided into the first member and the second member and the front separation wall portion is formed in the second member having a lower dielectric constant, a material cost can be reduced as compared to the case where the both members are made of a material having a low dielectric constant.
1. A shield terminal, comprising:
a pair of female inner conductors including box-shaped connecting portions into which tabs of male inner conductors are inserted;
a female dielectric configured by uniting a first structure and a second structure made of a material having a lower dielectric constant than the first structure, the pair of female inner conductors being accommodated in the female dielectric while being arranged in parallel;
a separation wall portion formed in the second structure, the separation wall portion being disposed to partition between a pair of the box-shaped connecting portions; and
a front wall portion formed on the first structure, the front wall portion including insertion openings through which the tabs are inserted,
wherein:
air layers are formed between outer side surfaces of the separation wall portion and inner side surfaces of the box-shaped connecting portions, and
ribs projecting toward the box-shaped connecting portions are formed on the separation wall portion.
2. The shield terminal according to claim 1 , further comprising a locking portion formed on the first structure, the locking portion holding the female dielectric and an outer conductor in an assembled state by being locked to the outer conductor.
3. A shield terminal, comprising:
a pair of female inner conductors including box-shaped connecting portions into which tabs of male inner conductors are inserted;
a female dielectric configured by uniting a first structure and a second structure made of a material having a lower dielectric constant than the first structure, the pair of female inner conductors being accommodated in the female dielectric while being arranged in parallel;
a separation wall portion formed in the second structure, the separation wall portion being disposed to partition between a pair of the box-shaped connecting portions; and
a front wall portion formed on the first structure, the front wall portion including insertion openings through which the tabs are inserted,
wherein:
the separation wall portion is cantilevered from a base plate portion of the second structure, and
the first structure is formed with a receiving groove into which an extending end part of the separation wall portion is fit.
4. The shield terminal according to claim 3 , further comprising ribs formed on the separation wall portion, the ribs projecting from surfaces of the separation wall portion facing the box-shaped connecting portions.
5. The shield terminal according to claim 3 , further comprising a locking portion formed on the first structure, the locking portion holding the female dielectric and an outer conductor in an assembled state by being locked to the outer conductor.
6. A shield terminal, comprising:
a pair of female inner conductors including box-shaped connecting portions into which tabs of male inner conductors are inserted;
a female dielectric configured by uniting a first structure and a second structure made of a material having a lower dielectric constant than the first structure, the pair of female inner conductors being accommodated in the female dielectric while being arranged in parallel;
a separation wall portion formed in the second structure, the separation wall portion being disposed to partition between a pair of the box-shaped connecting portions; and
a front wall portion formed on the first structure, the front wall portion including insertion openings through which the tabs are inserted,
wherein:
the separation wall portion extends in a uniting direction with the first structure from a base plate portion of the second structure, and
the first structure is formed with a guide groove to be brought into sliding contact with the separation wall portion in a process of uniting with the second structure.
7. The shield terminal according to claim 6 , further comprising ribs formed on the separation wall portion, the ribs projecting from surfaces of the separation wall portion facing the box-shaped connecting portions.
8. The shield terminal according to claim 6 , further comprising a locking portion formed on the first structure, the locking portion holding the female dielectric and an outer conductor in an assembled state by being locked to the outer conductor.
9. A shield terminal, comprising:
a pair of female inner conductors including box-shaped connecting portions into which tabs of male inner conductors are inserted;
a female dielectric configured by uniting a first structure and a second structure made of a material having a lower dielectric constant than the first structure, the pair of female inner conductors being accommodated in the female dielectric while being arranged in parallel;
a separation wall portion formed in the second structure, the separation wall portion being disposed to partition between a pair of the box-shaped connecting portions; and
a front wall portion formed on the first structure, the front wall portion including insertion openings through which the tabs are inserted,
wherein the separation wall portion is cantilevered in a uniting direction with the first structure from a base plate portion of the second structure and becomes gradually thinner in an extending direction.
10. The shield terminal according to claim 9 , further comprising ribs formed on the separation wall portion, the ribs projecting from surfaces of the separation wall portion facing the box-shaped connecting portions.
11. The shield terminal according to claim 9 , further comprising a locking portion formed on the first structure, the locking portion holding the female dielectric and an outer conductor in an assembled state by being locked to the outer conductor.