Electrical device connector apparatus with power isolation capability
10916896 ยท 2021-02-09
Inventors
Cpc classification
H02M1/44
ELECTRICITY
H01R27/02
ELECTRICITY
H01R31/06
ELECTRICITY
H02M3/003
ELECTRICITY
International classification
Abstract
A connector apparatus with a power isolation capability that is designed to transmit electricity from a power source to an electrical device is provided. The connector apparatus includes a housing with an input connector designed to electrically couple to the power source and an output connector designed to electrically couple to the electrical device, and a power isolation chip disposed in the housing and having an input electrically coupled to the input connector of the housing and an output electrically coupled to the output connector of the housing. The power isolation chip is designed to isolate its negative and positive output terminals from its negative and positive input terminals, thereby minimizing the generation of interference in the connector apparatus that transfers to the electrical device.
Claims
1. A connector apparatus with a power isolation capability that is configured to transmit electricity from a power source to an electrical device, the connector apparatus configured to minimize the generation of undesirable interference in the connector apparatus that transfers to the electrical device, the connector apparatus comprising: a housing comprising an input connector configured to electrically couple to the power source and an output connector configured to electrically couple to the electrical device; a power isolation chip disposed in the housing and comprising an input and an output, the input of the power isolation chip comprising a negative input terminal and a positive input terminal, the output of the power isolation chip comprising a negative output terminal electrically coupled to the output connector and a positive output terminal electrically coupled to the output connector; and a step-up voltage chip disposed in the housing and comprising an input electrically coupled to the input connector of the housing and an output electrically coupled to the negative and positive input terminals of the power isolation chip; wherein electricity from the power source transmits through the input connector, step-up voltage chip, power isolation chip and output connector to the electrical device, wherein the power isolation chip is configured to isolate the negative and positive output terminals from the negative and positive input terminals, thereby minimizing the generation of interference in the connector apparatus that transfers to the electrical device.
2. The connector apparatus of claim 1, wherein the step-up voltage chip is configured to generate a voltage in the output of the step-up voltage chip within an approximate range of 9 V-24 V.
3. The connector apparatus of claim 2, wherein the step-up voltage chip is an IC voltage booster.
4. The connector apparatus of claim 2, wherein the step-up voltage chip is a charge pump.
5. The connector apparatus of claim 2, further comprising a bridge rectifier disposed in the housing and comprising an input electrically coupled to the input connector of the housing and an output electrically coupled to the input of the step-up voltage chip.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The detailed description of some embodiments of the invention will be made below with reference to the accompanying figures, wherein the figures disclose one or more embodiments of the present invention.
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DETAILED DESCRIPTION OF CERTAIN EMBODIMENTS
(9) In certain embodiments of the invention as depicted in
(10) In one embodiment as depicted in
(11) In one embodiment, input connector 115 of connector apparatus 110 comprises a female jack and output connector 105 of connector apparatus 110 comprises a 5.5 millimeter cylindrical cannon jack. However, it shall be appreciated that input connector 115 and output connector 105 may comprise any alternative types of electrical connectors known in the field to accommodate different power sources and/or electrical devices 100.
(12) In certain embodiments, connector apparatus 110 comprises one or more components disposed inside the housing and electrically coupled to input connector 115 and output connector 105. In one embodiment as depicted in
(13) Bridge rectifier 400 is configured to deliver an output with consistent electrical polarity (+ power and power) that transmits to step-up voltage chip 420 regardless of the electrical polarity at the input of bridge rectifier 400 from the connection between input connector 115 of connector apparatus 110 and supply voltage connector 305 of the power source.
(14) In certain embodiments, step-up voltage chip 420 is configured to increase the input voltage of the chip to the desired output voltage to accommodate electrical device 100. In one embodiment, step-up voltage chip 420 is an IC voltage booster or charge pump. The increase in voltage can vary in different embodiments. In certain embodiments, step-up voltage chip 420 is configured to generate a voltage in the output of the step-up voltage chip within an approximate range of 9V-24V. In certain embodiments, any of the following increases in voltage are permissible through step-up voltage chip 420: (1) 9V in, 12V out; (2) 9V in, 18V out; and (3) 9V in, 24V out.
(15) In one embodiment as depicted in
(16) In one embodiment, power isolation chip 500 comprises one or more components that are configured to interrupt ground loops in connector apparatus 110 by isolating chip positive and negative output terminals 520, 525 of power isolation chip 500 from chip positive and negative input terminals 510, 515 of power isolation chip 500. This greatly minimizes the generation of interference, hum, noise and/or signal disruption in connector apparatus 110 that transfers to electrical device 100.
(17) In the case where electrical device 100 is a guitar effects pedal, minimizing any interference in the pedal prevents the addition of undesirable disturbances and/or noise to the musical output generated in the guitar effects pedal. It shall be appreciated that the isolated circuit in connector apparatus 110 can include any components such as diodes, resistors, capacitors or other electrical components in alternative embodiments.
(18) In an alternative embodiment as depicted in
(19) It shall be appreciated that the components in connector apparatus 110 can vary. In one embodiment, connector apparatus 110 comprises solely power isolation chip 500 electrically coupled to input connector 115 and output connector 105. In one embodiment, connector apparatus 110 comprises step-up voltage chip 420 and power isolation chip 500 both electrically coupled to input connector 115 and output connector 105. In one embodiment, connector apparatus 110 comprises bridge rectifier 400, step-up voltage chip 420 and power isolation chip 500 electrically coupled to input connector 115 and output connector 105. In one embodiment, connector apparatus 110 comprises bridge rectifier 400 and power isolation chip 500 both electrically coupled to input connector 115 and output connector 105. These variations in design of connector apparatus 110 help to accommodate different user requirements and electrical devices 100.
(20) In operation, connector apparatus 110 as depicted in
(21) In certain embodiments, electricity from the power source transmits through input connector 115, bridge rectifier 400, step-up voltage chip 420, power isolation chip 500 and output connector 105 to electrical device 100. Connector apparatus 110 provides power to electrical device 100 with the desired voltage and electrical polarity regardless of the electrical polarity in the connection between supply voltage connector 305 and input connector 115 of connector apparatus 110. Connector apparatus 110 at the same time minimizes the transfer of any interference, hum, noise and/or signal disruption in connector apparatus 110 that transfers to electrical device 100.
(22) It shall be appreciated that the components of the connector apparatus described in several embodiments herein may comprise any alternative known materials in the field and be of any color, size and/or dimensions. It shall be appreciated that the components of the connector apparatus described herein may be manufactured and assembled using any known techniques in the field.
(23) Persons of ordinary skill in the art may appreciate that numerous design configurations may be possible to enjoy the functional benefits of the inventive systems. Thus, given the wide variety of configurations and arrangements of embodiments of the present invention, the scope of the invention is reflected by the breadth of the claims below rather than narrowed by the embodiments described above.