ADJUSTABLE IMPEDANCE HIGH SPEED DATA CONNECTOR, AND METHODS OF ASSEMBLING AND OPERATING THEREOF
20190013632 ยท 2019-01-10
Assignee
Inventors
Cpc classification
Y02P70/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01R31/06
ELECTRICITY
H05K2201/1034
ELECTRICITY
H01R13/516
ELECTRICITY
H05K5/0069
ELECTRICITY
H01R33/94
ELECTRICITY
H05K2201/0999
ELECTRICITY
H05K5/0052
ELECTRICITY
H01R13/66
ELECTRICITY
International classification
H01R31/06
ELECTRICITY
H01R43/20
ELECTRICITY
Abstract
An adjustable impedance high speed data connector, and methods for assembling and operating thereof. The adjustable impedance high speed data connector of this invention includes a printed circuit board accommodated within, or printed or stamped onto, a tray, the printed circuit board including sets of terminals respectively extending on opposite ends of the printed circuit board. Mounted onto the printed circuit board and electrically connected thereto is at least one electric module having a fixed or adjustable capacitance or a fixed or adjustable inductance, which may be combined in any desired combination to achieve a desired impedance for the connector. By adjusting the variable capacitance or inductance of the electric module (or the variable combinations of capacitance and/or inductance of a plurality of electric modules), the impedance within the connector is adjustable for allowing the connector to operate at various ranges of bandwidths.
Claims
1. An adjustable impedance high speed data connector, comprising: a cover having at least a first protruding latch; a tray having at least a second protruding latch; a printed circuit board mounted onto a floor of the tray, the printed circuit board having first and second sets of terminals extending on opposite ends thereof; and at least an electric module mounted onto the printed circuit board and connected thereto, the electric module having at least a capacitance or an inductance, wherein the printed circuit board is housed within the cover and the tray with the first and second protruding latches connected to each other.
2. The adjustable impedance high speed data connector as in claim 1, wherein the electric module has a fixed capacitance or a fixed inductance.
3. The adjustable impedance high speed data connector as in claim 2, wherein the electric module has an adjustable capacitance or an adjustable inductance.
4. The adjustable impedance high speed data connector as in claim 2, wherein a plurality of electric modules includes a combination of at least a capacitance and an inductance to achieve a resulting adjustable impedance for the connector.
5. The adjustable impedance high speed data connector as in claim 3, wherein a plurality of electric modules each having at least an adjustable capacitance or an adjustable inductance to achieve a resulting adjustable impedance for the connector.
6. The adjustable impedance high speed data connector as in claim 1, wherein the printed circuit board is patterned or sketched into the floor of the tray.
7. A method for assembling an adjustable impedance high speed data connector, comprising the steps of: providing a cover having at least a first protruding latch; providing a tray having at least a second protruding latch; housing a printed circuit board within the cover and the tray, the printed circuit board having first and second sets of terminals extending on opposite ends thereof; mounting a plurality of electric modules onto the printed circuit board, each of the electric modules having at least a capacitance or an inductance; and varying the combination of the plurality of electric modules to achieve a resulting adjustable impedance for the connector.
8. The method for assembling the adjustable impedance high speed data connector as in claim 7, wherein the step of varying the combination of the plurality of electric modules includes the step of adjusting the conductance or inductance of each of the plurality of electric modules.
9. The method for assembling the adjustable impedance high speed data connector as in claim 8, wherein the step of adjusting the conductance or inductance of each of the plurality of electric modules includes the step of mechanically or electrically adjusting the conductance or inductance of each of the plurality of electric modules.
10. A method for operating an adjustable impedance high speed data connector, comprising the steps of: adjusting an impedance of a printed circuit board housed within a cover and a tray latched onto each other; and connecting one end of the connector to a first connector assembly and another end of the connector to a second connector assembly.
11. The method for operating the adjustable impedance high speed data connector as in claim 10, wherein the step of adjusting the impedance of the printed circuit board includes the step of adjusting a combination of electric modules connected onto the printed circuit board, each of the electric modules having a conductance or an inductance.
12. The method for operating an adjustable impedance high speed data connector as in claim 10, wherein the step of adjusting the impedance of the printed circuit board includes the step of adjusting a conductance or an inductance of at least an electric module connected onto the printed circuit board.
13. The method for operating the adjustable impedance high speed data connector as in claim 10, further comprising the step of matching an input impedance on the one end of the connector to an output impedance on the another end of the connector to reduce noise or interference in the signal through the connector.
14. The method for operating the adjustable impedance high speed data connector as in claim 13, wherein the step of matching the input impedance and the output impedance of the connector includes the step of maximizing power in the connector.
15. The method for operating the adjustable impedance high speed data connector as in claim 10, wherein the step of adjusting the impedance of the printed circuit board within the connector allows the connector to operate at various ranges of bandwidths.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0018]
[0019] When the cover 3 is secured onto the tray 5 with the first and second protruding latches 14, 16 the adjustable impedance high speed data connector 1 includes a first inlet 20 passing through a first end 21 of the connector 1 and a second inlet 22 passing through a second end 23 of the connector 1, the first end 21 and the second end 23 being at opposite ends of the connector 1. As further illustrated in
[0020] The first embodiment of the adjustable impedance high speed data connector 1 illustrated in
[0021] Secured onto the tray 5 is the printed circuit board 8 having sets of end terminals 50, 52, circuit elements 54, and electric modules 55. The printed circuit board 8 is secured onto the tray 5 by the guide members 10 extending from the inner sides 12 of the tray 5, while the end terminals 50, 52 are secured within upstanding member 60, 62, respectively. The end terminals 50 connect to the first connector assembly 25 (or the second connector assembly 27) (see,
[0022] Electric modules 55 are mounted onto the printed circuit board 8 and connected thereto (by solder, glue, or the like). Each of the electric modules 55 may be an adjustable capacitance modules or an adjustable inductance modules, and includes on an upper portion thereof a rotatable screw-type head portion 58. The rotatable screw-type head portion 58 of the module 55 may be rotated by a tool (a screwdriver, or the like) for adjusting therein the capacitance or the inductance of the electric module 55. The adjustments of the capacitances or inductances of the various electric modules 55, at varying degrees, allows for the impedance of the printed circuit board to be adjusted to a desired value.
[0023]
[0024] The upstanding members 60, 62 of the tray 5 are for securing and mounting thereon the sets of end terminals 50, respectively, of the printed circuit board 8. Upon assembly, the leg portions 37 of the cover 3 respectively mount onto the cover ledge portions 46 of the tray 5. The bottom end portions 75 of the cover 3 mount on respective end ledge portions 77 of the tray 5. The side ledge portions 44 of the cover 3 rests onto the corresponding side ledge portions 48 of the tray 5. As discussed earlier with respect to
[0025] Upon assembling the printed circuit board 8 within the cover 3 and the tray 5 of the connector 1, the printed circuit board 8, having the circuit elements 54 and the electric modules 55 thereon, are visible through the elongated window 35 of the cover 3 (as illustrated in
[0026]
[0027] Shown in
[0028] A second embodiment of the adjustable impedance high speed data connector of this invention, generally designated as reference number 80, is shown in
[0029] As seen in
[0030] As in the first embodiment (see,
[0031]
[0032] The printed circuit board 90 of the third embodiment of this invention includes circuit patterns or traces 94 stamped into a floor 89 of the tray 5; and electric modules 95 are subsequently mounted onto the printed circuit board 90 and connected thereto (by solder, glue, or the like). The electric modules 95 may be similar to the electric modules 55 of the first embodiment or the electric modules of the second embodiment. Each of the electric modules 95 may, as in the second embodiment, have a conductance or an inductance that may vary so as to achieve an adjustable or varying resulting impedance for the connector.
[0033] Alternatively, the electric modules 95 may each, as in the first embodiment, include the rotatable screw-type head portion 58 (see,
[0034] The cover 3, as described above with respect to the first and second embodiments, may be similarly used in the third embodiment of this invention. The printed circuit board 90 of the third embodiment similarly includes sets of terminals 100, 102 and become available for connecting with the first connector assembly 25 and the second connector assembly 27 (see,
[0035] With respect to the above-described first, second, and third embodiments of this invention, the adjustment of the impedance of the connector of this invention allows for impedance matching (i.e., Z.sub.input=Z.sub.output, Z.sub.input being the input impedance and Z.sub.output being the output impedance of the connector), which in turn allows for the reduction in noise or interference conducive to a favorable environment for a high speed signal passing through the connector of this invention. With the reduction of noise or interference and allowing for a high speed signal to pass through the connector of this invention, power can be maximized.
[0036] By adjusting the variable capacitance or inductance of the electric module (or the variable combinations of capacitance and/or inductance of the plurality of electric modules 55, 88, 95), the impedance within the connector is adjustable for allowing the connector to operate at various ranges of bandwidths.
[0037] Although the foregoing description is directed to the preferred embodiments of the invention, it is noted that other variations and modifications will be apparent to those skilled in the art, and may be made without departing from the spirit or scope of the invention. Moreover, features described in connection with one embodiment of the invention may be used in conjunction with other embodiments, even if not explicitly stated above.