Dr. Gomez graduated from the University of Illinois, Chicago College of Medicine in 1994. He works in Santa Paula, CA and specializes in Family Medicine. Dr. Gomez is affiliated with Ventura County Medical Center.
Dr. Gomez graduated from the University of the East - Ramon Magsaysay Memorial Medical Center, Quezon City, Philippines in 1978. He works in Danville, VA and specializes in Emergency Medicine. Dr. Gomez is affiliated with Danville Regional Medical Center.
Us Patents
Apparatus And Method For Reducing Phase Noise In Oscillator Circuits
A resonant oscillator circuit includes an active device and a resonator that causes the active device to oscillate at a resonant frequency of the resonator. The active device includes one or more transistors that are DC biased using one or more resistors. The bias resistors generate thermal noise that is proportional to the resistance value. An external inductor circuit is connected across the output terminals of the active device and in parallel with the resonator. The external inductor circuit shorts-out at least some of the thermal noise that is generated by the bias resistors, and thereby reduces the overall phase noise of the resonant oscillator.
Apparatus And Method For Phase Lock Loop Gain Control Using Unit Current Sources
A gain compensator compensates for the gain variation of a varactor-tuned voltage tuned oscillator (VCO) in a phase lock loop (PLL). The VCO includes a parallel LC circuit having multiple fixed capacitors that can be switched-in or switched-out of the LC circuit according to a capacitor control signal to perform band-select tuning of the VCO. The gain compensator compensates for the variable VCO gain by generating a charge pump reference current that is based on the same capacitor control signal that controls the fixed capacitors in the LC circuit. The gain compensator generates the charge pump reference current by replicating a reference scale current using unit current sources. The number of times the reference scale current is replicated is based on the fixed capacitance that is switched-in to the LC circuit and therefore the frequency band of the PLL. The reference scale current is generated based on a PLL control that specifics certain PLL characteristics such as reference frequency, loop bandwidth, and loop damping. Therefore, the reference pump current can be efficiently optimized for changing PLL operating conditions, in addition to compensating for variable VCO gain.
Apparatus And Method For Reducing Phase Noise In Oscillator Circuits
A resonant oscillator circuit includes an active device and a resonator that causes the active device to oscillate at a resonant frequency of the resonator. The active device includes one or more transistors that are DC biased using one or more resistors. The bias resistors generate thermal noise that is proportional to the resistance value. An external inductor circuit is connected across the output terminals of the active device and in parallel with the resonator. The external inductor circuit short-out at least some of the thermal noise that is generated by the bias resistors, and thereby reduces the overall phase noise of the resonant oscillator.
Systems And Methods For Digital Upconversion For Television Signals
Ramon A. Gomez - San Juan Capistrano CA Donald McMullin - Laguna Hills CA
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H03M 166
US Classification:
341144, 455112, 455118
Abstract:
Systems and methods for digital upconversion of baseband television signals that can be used in cable television headend systems are provided. In one embodiment, the system includes a digital frequency adjustment system and a digital to analog conversion system. In a feature of the embodiment, the digital frequency adjustment system consists of set of digital upconversion and upsample elements that shift upwards the frequency of baseband signals. In a further feature of the embodiment, a tree structure of sets of upsample and upconversion elements is used. In another embodiment, the system includes digital and analog frequency adjustment systems in which the frequencies of the input signals are partially upshifted within both the digital and analog domains. Methods for digital upconversion of television signals are also provided.
Apparatus And Method For Reducing Phase Noise In Oscillator Circuits
A resonant oscillator circuit includes an active device and a resonator that causes the active device to oscillate at a resonant frequency of the resonator. The active device includes one or more transistors that are DC biased using one or more resistors. The bias resistors generate thermal noise that is proportional to the resistance value. An external inductor circuit is connected across the output terminals of the active device and in parallel with the resonator. The external inductor circuit shorts-out at least some of the thermal noise that is generated by the bias resistors, and thereby reduces the overall phase noise of the resonant oscillator.
Apparatus And Method For Phase Lock Loop Gain Control Using Unit Current Sources
A gain compensator compensates for the gain variation of a varactor-tuned voltage tuned oscillator (VCO) in a phase lock loop (PLL). The VCO includes a parallel LC circuit having multiple fixed capacitors that can be switched-in or switched-out of the LC circuit according to a capacitor control signal to perform band-select tuning of the VCO. The gain compensator compensates for the variable VCO gain by generating a charge pump reference current that is based on the same capacitor control signal that controls the fixed capacitors in the LC circuit. The gain compensator generates the charge pump reference current by replicating a reference scale current using unit current sources. The number of times the reference scale current is replicated is based on the fixed capacitance that is switched-in to the LC circuit and therefore the frequency band of the PLL. The reference scale current is generated based on a PLL control that specifics certain PLL characteristics such as reference frequency, loop bandwidth, and loop damping. Therefore, the reference pump current can be efficiently optimized for changing PLL operating conditions, in addition to compensating for variable VCO gain.
Multiple Layer Inductor And Method Of Making The Same
Ramon A. Gomez - San Juan Capistrano CA, US Lawrence M. Burns - Laguna Hills CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H01F 500
US Classification:
336200, 336 83, 336 84 R, 336 84 C, 336232
Abstract:
A multiple layer inductor has a first spiral conductive pattern disposed on a first surface; a second spiral conductive pattern disposed on a second surface; a continuing interconnection coupled to the first and second spiral conductive patterns; an interface coupled to the first and second spiral conductive patterns; and a conductive shield pattern disposed on a third surface that is adjacent to the second surface. The interface includes a first terminal disposed on the first surface that is coupled to the first spiral conductive pattern. The interface also includes a second terminal that is disposed on the first surface and coupled to said second spiral conductive pattern.
Integrated Switchless Programmable Attenuator And Low Noise Amplifier
Klaas Bult - Bosch en Duin, NL Ramon A. Gomez - San Juan Capistrano CA, US
Assignee:
Broadcom Corporation - Irvine CA
International Classification:
H04B007/00
US Classification:
4552321, 4552341, 330284, 333 81 R
Abstract:
An integrated receiver with channel selection and image rejection substantially implemented on a single CMOS integrated circuit is described. A receiver front end provides programmable attenuation and a programmable gain low noise amplifier. Frequency conversion circuitry advantageously uses LC filters integrated onto the substrate in conjunction with image reject mixers to provide sufficient image frequency rejection. Filter tuning and inductor Q compensation over temperature are performed on chip. The filters utilize multi track spiral inductors. The filters are tuned using local oscillators to tune a substitute filter, and frequency scaling during filter component values to those of the filter being tuned. In conjunction with filtering, frequency planning provides additional image rejection. The advantageous choice of local oscillator signal generation methods on chip is by PLL out of band local oscillation and by direct synthesis for in band local oscillator.
2012 to 2000 Field Service Technician, TurbinesCertificates and Documents 2000 to Jan 2012Quality Construction and Production Lafayette, LA 2004 to 2012 Structural Shop Forman, Fitter / WelderGlobal Industries, LTD New Iberia, LA 2001 to 2004 Shop WelderAquatica Inc Lafayette, LA 1999 to 2001 Diver Welder, Shop welder, and Radio / Video RepairOceaneering International Morgan City, LA 1994 to 1999 Diver Welder, Mechanic TechnicianField Service Technician
Education:
Vericore New Orleans, LA 2012 to 2012 Level 1 maintanence in TF-40 TurbineLafourche Campus 2001 E.M.T in Medical TechnicianParker Hannifin Corp 1998 Hydraulics, Mechanical Maintanence in Industrial Hydraulic Technology and R.O.V. HydraulicsSafety Consulting Associates 1997 40 Hour Hazwoper 29 CFR 1910.120 (e) level B, Basic Hydrogen Sulfide SafetyCollege of Oceaneering San Pedro, CA 1993 to 1994 Commercial Diving in Commercial Diving of Underwater WeldingPetroleum Education Council Inc. 1994 On and Offshore SafetySan Pedro High school San Pedro, CA 1986 to 1989 High School, Bronze Seal Academic Award, Who's Who Among High School Students. in Marine Sceince
Mar 2007 to 2000 Field Service EngineerCore Power Services (CPS) Fremont, CA Jun 2006 to Mar 2007 Technical Support EngineerBank of America Concord, CA Jun 2005 to Jun 2006 Customer Service Account ManagerLand Resource and Development Corporation Pleasant Hill, CA Aug 2003 to Jun 2005 Office Manager for Vice President of MarketingFarmers Rice Co-op Sacramento, CA Sep 2000 to Aug 2003 Quality & Maintenance EngineerArizona Republic Surprise, AZ Jan 1998 to Mar 2000 Assistant District Service Manager
Education:
KELLER GRADUATE SCHOOL OF MANAGEMENT Phoenix, AZ 2010 Master of Business Administration in Project ManagementDEVRY UNIVERSITY Fremont, CA 2007 Bachelor of Science in Electronic Engineering Technology
Skills:
Self-motivated, independent Willing to embrace challenges Flexible and adaptable Able to cope with diverse problems and situations Communication skills (listening & communicating carefully to overcome language barriers) Independence, self-reliance Problem-solving, crisis management Ability to deal with ambiguity Inquisitiveness, open-mindedness General travel and navigational skills Foreign language skills Perseverance and resourcefulness Creative initiative, tenacity, a willingness to take risks and an adventurous spirit
Name / Title
Company / Classification
Phones & Addresses
Ramon Gomez President, Director
Ramon's Painting, Inc
Ramon N Gomez Manager
PLATFORM, LLC
Pmb, Phoenix, AZ 85018 4529 E Turney Ave, Phoenix, AZ 85018
Ramon Gomez Radiology
Kaiser Foundation Hospitals Medical Doctor's Office · Trust Management · Family Doctor · Offices and Clinics of Medical Doctors
5119 Pomona Blvd, Los Angeles, CA 90022 3238815516, 8004644000
Ramon N Gomez
RADIUS CONTRACTORS, LLC
Suite SUITE F, Scottsdale, AZ 85250 Pmb, Phoenix, AZ 85018
Ramon G. Gomez
Potable Media, LLC Software Games and Mobile Media · Communication Services
132 N Clark Dr, Beverly Hills, CA 90211 906 Torrance Blvd, Redondo Beach, CA 90277
Ramon N Gomez
ANDREWGLEN DEVELOPMENT, LLC
1615 W Yellowstone Way, Chandler, AZ 85248 5740 S Arville St #216, Las Vegas, NV 89118 4529 E Turney Ave, Phoenix, AZ 85018
Ramon Gomez Owner
Gomez, Ramon Attorney at Law Legal Services Office
1317 W Foothill Blvd, Upland, CA 91786 215 N 2 Ave, Upland, CA 91786 9099466338
, where they operate their services in data centers hosted by big companies. But Ramon Gomez, a security professional at a hosting provider, sounded the alarm and said that vendors should do a better job of telling users when large numbers of them are suffering the same kinds of problems or attacks.
Date: Aug 07, 2011
Category: Sci/Tech
Source: Google
Youtube
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