USPTO Examiner PAUL ANTONY M - Art Unit 2846

Recent Applications

Detailed information about the 100 most recent patent applications.

Application NumberTitleFiling DateDisposal DateDispositionTime (months)Office ActionsRestrictionsInterviewAppeal
19025203FAULT DETECTION RESPONSE IN A ROBOT ARMJanuary 2025March 2025Allow200NoNo
19013080FLEXIBLE SENSOR AND METHOD OF DETECTING BIAXIAL WRIST JOINT MOTION, AND ROBOTIC ARMJanuary 2025March 2025Allow200NoNo
18716540MOTOR CONTROL DEVICE AND MOTOR CONTROL SYSTEMJune 2024November 2024Allow500NoNo
18663960INVERTER CIRCUITS AND ELECTRICAL PROPULSION SYSTEMS FOR EVTOL AIRCRAFTMay 2024July 2024Allow200NoNo
18664029INVERTER CIRCUITS AND ELECTRICAL PROPULSION SYSTEMS FOR EVTOL AIRCRAFTMay 2024March 2025Allow1000NoNo
18587015DRIVE SYSTEM AND VEHICLEFebruary 2024November 2025Allow2000NoNo
18444269SYSTEMS AND METHODS FOR CONFIGURABLE ELECTRICAL INVERTERFebruary 2024February 2026Allow2410NoNo
18430403METHOD OF OPERATING AN INVERTER, INVERTER AND MOTOR VEHICLEFebruary 2024November 2025Allow2100NoNo
18293113PORT CARGO HANDLING DEVICE AND CONTROL METHOD THEREFORJanuary 2024October 2025Allow2000NoNo
18418838TRANSMISSION COMPONENT ASSEMBLYJanuary 2024September 2025Allow2000NoNo
18409825DYNAMIC POLE CONFIGURATION CONTROLJanuary 2024October 2025Allow2200NoNo
18405340ACTIVE TEMPERATURE CONTROL FOR GENERATOR IN POWER TRAINJanuary 2024September 2025Allow2000NoNo
18403021INVERTER CONTROL DEVICE AND PROGRAMJanuary 2024September 2025Allow2000NoNo
18403676MOTOR DRIVERJanuary 2024August 2025Allow2000NoNo
18398940ELECTRIC-ROTATING-MACHINE CONTROL APPARATUSDecember 2023August 2025Allow2000NoNo
18392160ELECTRICAL APPARATUSDecember 2023September 2025Allow2100NoNo
18393136Electric motor and electric generator.December 2023October 2025Allow2210NoNo
18543299ENHANCED DISTURBANCE REJECTION WITH NOISE IMMUNITY IN A CURRENT CONTROLLED ALTERNATING CURRENT MACHINE WITH USE OF CURRENT OBSERVERDecember 2023September 2025Allow2100NoNo
18540836CONTROL DEVICE AND COMMUNICATION METHOD IN CONTROL DEVICEDecember 2023September 2025Allow2100NoNo
18530325VEHICLEDecember 2023July 2025Allow2000NoNo
18527572ELECTRIC POWER CONVERTER FOR PROVIDING ELECTRIC POWER TO AT LEAST ONE ELECTRIC DEVICE AND METHOD FOR OPERATING THE ELECTRIC POWER CONVERTERDecember 2023October 2025Allow2310NoNo
18526831REMOTE ACTUATION SYSTEMS AND METHODSDecember 2023August 2025Allow2000NoNo
18522707Managing Regenerative Energy of Rod Pump System without Dynamic Braking ResistorNovember 2023July 2025Allow1900NoNo
18565311CELL BASED MULTILEVEL CONVERTER WITH MULTIPLE OPERATING MODES AND ASSOCIATED CONTROL METHODNovember 2023March 2026Allow2810NoNo
18519560METHOD OF DETECTING FORWARD AND REVERSE CONNECTION OF THREE-PHASE MOTOR AND SOLID-STATE MOTOR STARTERNovember 2023July 2025Allow2000NoNo
18506454MIXED CHEMISTRY BATTERY PACK POWER TRANSFER USING A MULTILEVEL FLYING CAPACITOR INVERTERNovember 2023October 2025Allow2400NoNo
18388810ELECTRONIC CONTROL DEVICE USING SHUNT RESISTOR AND CURRENT DETECTION CIRCUITNovember 2023June 2025Allow1900NoNo
18505167SYSTEM AND METHOD FOR DETERMINING AND UTILIZING TIME CONSTANTS FOR A VARIABLE FREQUENCY DRIVENovember 2023June 2025Allow1900NoNo
18559700In-Vehicle Control Device and Control Method for In-Vehicle Control DeviceNovember 2023September 2025Allow2300NoNo
18498753PREDICTIVE CURRENT CONTROL METHOD FOR A SIX-PHASE INDUCTION MOTOROctober 2023June 2025Allow2000NoNo
18385087DEVICE FOR CONTROLLING MOTOR FOR VEHICLEOctober 2023October 2025Allow2410NoNo
18495594TRACTION INVERTER DC-LINK ACTIVE DISCHARGE METHODOctober 2023June 2025Allow2000NoNo
18384293Oscillating Fan Control System And Control Method ThereofOctober 2023May 2025Allow1800NoNo
18491896SYSTEMS AND METHODS FOR CURRENT SENSING IN MOTOR CONTROL APPLICATIONSOctober 2023September 2025Allow2200NoNo
18486692MOTOR BUS SWITCHINGOctober 2023July 2025Allow2100NoNo
18377545POWER CONVERSION APPARATUSOctober 2023May 2025Allow1900NoNo
18285667DEVICE FOR CONTROLLING A LEAST ONE ELECTRIC MOTOR FOR AN AIRCRAFT-PROPELLING ASSEMBLYOctober 2023May 2025Allow1900NoNo
18376715MOTOR-ALTERNATOR-MOTOR (MAM) SYSTEMS AND METHODS FOR USING SAMEOctober 2023September 2025Allow2400NoNo
18479989ELECTRIC MOTOR CONTROLOctober 2023June 2025Allow2000NoNo
18479210METHOD FOR OPERATING A DRIVE SYSTEM, AND DRIVE SYSTEMOctober 2023May 2025Allow2000NoNo
18375022MOTOR CONTROLSeptember 2023April 2025Allow1900NoNo
18283941CONTROLLER FOR ROTARY ELECTRIC MACHINESeptember 2023April 2025Allow1900NoNo
18283712CONTROL DEVICE, INVERTER SYSTEM, CONTROL METHOD, AND PROGRAMSeptember 2023April 2025Allow1800NoNo
18551629MOTOR CONTROL DEVICE, MOTOR CONTROL METHOD, AND A NON-TRANSITORY STORAGE MEDIUM STORING A MOTOR CONTROL PROGRAM FOR A MOTOR CONTROL DEVICESeptember 2023July 2025Allow2200NoNo
18369317INVERTER DRIVING DEVICE AND METHOD OF CONTROLLING SAMESeptember 2023July 2025Allow2200NoNo
18368783ROTATABLE LINEAR ACTUATORSeptember 2023November 2025Allow2610NoNo
18467023ELECTRIC DRIVE SYSTEM, POWERTRAIN, HEATING METHOD, AND ELECTRIC VEHICLESeptember 2023October 2025Allow2500NoNo
18465535Switched Reconfigurable Multi-Converter Multi-Source Energy Storage System Configuration for Electrified Vehicles and Power Flow Control Scheme ThereofSeptember 2023September 2025Allow2400NoNo
18281023RF BAND POWER SUPPLY DEVICE AND PULSE WIDTH MODULATION CONTROL METHODSeptember 2023April 2025Allow1900NoNo
18549175MOTOR CONTROL DEVICESeptember 2023June 2025Allow2100NoNo
18460227POWER CONVERSION DEVICE AND POWER CONVERSION METHODSeptember 2023May 2025Allow2100NoNo
18548592MOTOR DRIVING SYSTEMSeptember 2023July 2025Allow2200NoNo
18238061Electromagnetic interference (EMI) mitigation in pulse width modulation (PWM) inverters using learning-based frequency modulated carriersAugust 2023March 2025Allow1900NoNo
18235625METHOD AND SYSTEM FOR CONTROLLING FAN, AND ELECTRONIC DEVICE EMPLOYING METHODAugust 2023January 2025Allow1700NoNo
18277265MOTOR CONTROL DEVICE AND ELECTRIC POWER STEERING DEVICEAugust 2023December 2023Allow400NoNo
18364666POWERTRAIN, CONTROL METHOD, AND HYBRID ELECTRIC VEHICLEAugust 2023July 2025Allow2410NoNo
18363535INVERTER CIRCUITS AND ELECTRICAL PROPULSION SYSTEMS FOR EVTOL AIRCRAFTAugust 2023March 2024Allow710YesNo
18354799FIRMWARE CONTROL PROVIDING A SOFT STOP ON COMPRESSION DRIVE NAILERJuly 2023April 2025Allow2100NoNo
18223189DIFFERENTIAL JOINT DEVICE FOR ROBOT, AND METHOD FOR DIAGNOSING STATE OF DIFFERENTIAL JOINT DEVICE FOR ROBOTJuly 2023August 2025Allow2500YesNo
18261863CONTROL DEVICE FOR ELECTRIC MOTORJuly 2023March 2025Allow2000NoNo
18271671POWER CONVERSION DEVICEJuly 2023March 2025Allow2000NoNo
18214459MOBILE APPLICATION WITH COMBINED BREAKER AND RELAYJune 2023April 2025Allow2110NoNo
18340215DRIVE DEVICE FOR ROTATING ELECTRIC MACHINE AND DRIVE METHOD FOR ROTATING ELECTRIC MACHINEJune 2023October 2025Allow2800NoNo
18259217MOTOR DRIVE APPARATUS, REFRIGERATION CYCLE APPARATUS, AIR CONDITIONER, WATER HEATER, AND REFRIGERATORJune 2023April 2025Allow2200NoNo
18258944MOTOR DRIVE DEVICEJune 2023March 2025Allow2000NoNo
18336345THERMAL SENSING AND CONTROL OF A TRANSISTOR BOARDJune 2023June 2025Allow2410YesNo
18257388METHOD AND DEVICE FOR OPERATING AN ELECTRIC MACHINEJune 2023February 2025Allow2000NoNo
18209163HEAD-MOUNTED DISPLAY APPARATUS AND METHOD FOR CONTROLLING THE HEAD-MOUNTED DISPLAY APPARATUSJune 2023December 2024Allow1800NoNo
18334196SYSTEMS AND METHODS FOR DEMAGNETIZATION OF A PERMANENT MAGNET ROTORJune 2023May 2025Allow2300NoNo
18207306MID-DRIVE E-BIKEJune 2023April 2025Allow2200NoNo
18206126MULTI-FAN CONTROL SYSTEMJune 2023August 2025Allow2700NoNo
18265524AN INTERLEAVED SWITCHING METHOD OF CONTROL FOR A POLYPHASE INDUCTIVE LOADJune 2023December 2024Allow1800NoNo
18326557MULTI-PHASE CASCADED BRIDGE FOR DC/DC, AC/DC, AND DC/AC APPLICATIONSMay 2023February 2025Allow2100NoNo
18255347INVERTER, ELECTRIC DRIVE, VEHICLE AND METHOD FOR CONTROLLING CONTROLLABLE SWITCHES OF AN INVERTER AND CORRESPONDING COMPUTER PROGRAM PRODUCTMay 2023February 2025Allow2000NoNo
18253996POWER CONVERTER, MOTOR DRIVER, AND REFRIGERATION CYCLE APPLIED EQUIPMENTMay 2023March 2025Allow2200NoNo
18253976ELECTRIC MOTOR DRIVE DEVICE AND REFRIGERATION CYCLE APPLICATION DEVICEMay 2023December 2024Allow1900NoNo
18199373PHASE COMPENSATION METHOD OF BRUSHLESS DIRECT CURRENT MOTOR AND MOTOR SYSTEM UTILIZING THE SAMEMay 2023November 2024Allow1800NoNo
18318193ELECTRIC MACHINES WITH EFFICIENT TORQUE TRANSITIONSMay 2023September 2024Allow1600NoNo
18035296POWER CONVERSION DEVICE, MOTOR DRIVE SYSTEM, AND DISCONNECTION DETECTION METHOD FOR SIGNAL TRANSMISSION CABLEMay 2023November 2023Allow600NoNo
18034866POWER CONVERTER DEVICE AND CONTROL METHOD THEREFORMay 2023July 2023Allow300NoNo
18306614Electrified Vehicle with Inverter Controlled to Heat Traction BatteryApril 2023January 2025Allow2100NoNo
18136122DEVICE FOR AUTOMATICALLY PRODUCING SCREW CONNECTIONSApril 2023June 2025Allow2600NoNo
18249299MOTOR CONTROL DEVICE, ELECTRO-MECHANICAL INTEGRATED UNIT, HYBRID SYSTEM, AND ELECTRIC POWER STEERING SYSTEMApril 2023January 2025Allow2100NoNo
18299300METHOD FOR CONTROLLING A BLDC MOTOR AND CORRESPONDING CONTROL CIRCUITApril 2023January 2025Allow2100NoNo
18031042MINIMIZING DC-LINK CURRENT RIPPLE AND ACOUSTIC NOISE, AND REDUCING DC-LINK CAPACITOR REQUIREMENT, FOR ELECTRIC MOTORSApril 2023October 2024Allow1800NoNo
18127379ROTOR AND SENSORLESS CONTROL METHOD FOR ROTORMarch 2023December 2024Allow2000NoNo
18189611MULTI-LOSS MODE ELECTRIC MOTOR TORQUE CONTROL TECHNIQUES FOR ELECTRIFIED VEHICLESMarch 2023February 2025Allow2300NoNo
18187301INVERTER UNITMarch 2023November 2024Allow2000NoNo
18121414ESCROW CLUTCH PROTECTIONMarch 2023September 2024Allow1800NoNo
18183278LOW IMPEDANCE SNUBBER CAPACITOR ARRANGEMENT IN A CONVERTER MODULEMarch 2023November 2024Allow2000NoNo
18245173ELECTRIC POWER CONVERTERMarch 2023August 2025Allow2900NoNo
18180973MOTOR CONTROL DEVICE, MOTOR DRIVE CONTROL DEVICE, MOTOR DEVICE, AND MOTOR CONTROL PROGRAMMarch 2023September 2024Allow1800NoNo
18179375MOTOR DRIVER USING MOTOR MAGNETIC POLE REFERENCE CONTROLLING MECHANISMMarch 2023September 2024Allow1800NoNo
18178553MOTOR DRIVING METHOD, APPARATUS, AND SYSTEMMarch 2023October 2024Allow1900NoNo
18115550MOTOR CONTROLLERFebruary 2023October 2024Allow2000NoNo
18023148FAULT DETECTION SYSTEM FOR MULTIPHASE MACHINESFebruary 2023December 2024Allow2110YesNo
18042776PARAMETER SETTING DEVICE FOR SETTING PARAMETER OF ELECTRIC MOTOR MODELFebruary 2023August 2024Allow1800NoNo
18170899MOTOR DRIVE APPARATUSFebruary 2023September 2024Allow1900NoNo
18168106SYSTEMS AND METHODS FOR MULTIPLE OUTPUT INTEGRATED GATE DRIVER FOR INVERTER FOR ELECTRIC VEHICLEFebruary 2023February 2025Allow2410NoNo
18166873METHOD FOR AVOIDING STALLED MOTOR IN A STAND MIXER WITH SENSORLESS BLDC DRIVEFebruary 2023March 2025Allow2510NoNo

Appeals Overview

No appeal data available for this record. This may indicate that no appeals have been filed or decided for applications in this dataset.

Examiner PAUL, ANTONY M - Prosecution Strategy Guide

Executive Summary

Examiner PAUL, ANTONY M works in Art Unit 2846 and has examined 370 patent applications in our dataset. With an allowance rate of 98.4%, this examiner allows applications at a higher rate than most examiners at the USPTO. Applications typically reach final disposition in approximately 17 months.

Allowance Patterns

Examiner PAUL, ANTONY M's allowance rate of 98.4% places them in the 91% percentile among all USPTO examiners. This examiner is more likely to allow applications than most examiners at the USPTO.

Office Action Patterns

On average, applications examined by PAUL, ANTONY M receive 0.59 office actions before reaching final disposition. This places the examiner in the 3% percentile for office actions issued. This examiner issues significantly fewer office actions than most examiners.

Prosecution Timeline

The median time to disposition (half-life) for applications examined by PAUL, ANTONY M is 17 months. This places the examiner in the 97% percentile for prosecution speed. Applications move through prosecution relatively quickly with this examiner.

Interview Effectiveness

Conducting an examiner interview provides a -2.0% benefit to allowance rate for applications examined by PAUL, ANTONY M. This interview benefit is in the 9% percentile among all examiners. Note: Interviews show limited statistical benefit with this examiner compared to others, though they may still be valuable for clarifying issues.

Request for Continued Examination (RCE) Effectiveness

When applicants file an RCE with this examiner, 38.6% of applications are subsequently allowed. This success rate is in the 88% percentile among all examiners. Strategic Insight: RCEs are highly effective with this examiner compared to others. If you receive a final rejection, filing an RCE with substantive amendments or arguments has a strong likelihood of success.

After-Final Amendment Practice

This examiner enters after-final amendments leading to allowance in 69.6% of cases where such amendments are filed. This entry rate is in the 92% percentile among all examiners. Strategic Recommendation: This examiner is highly receptive to after-final amendments compared to other examiners. Per MPEP § 714.12, after-final amendments may be entered "under justifiable circumstances." Consider filing after-final amendments with a clear showing of allowability rather than immediately filing an RCE, as this examiner frequently enters such amendments.

Petition Practice

When applicants file petitions regarding this examiner's actions, 77.6% are granted (fully or in part). This grant rate is in the 83% percentile among all examiners. Strategic Note: Petitions are frequently granted regarding this examiner's actions compared to other examiners. Per MPEP § 1002.02(c), various examiner actions are petitionable to the Technology Center Director, including prematureness of final rejection, refusal to enter amendments, and requirement for information. If you believe an examiner action is improper, consider filing a petition.

Examiner Cooperation and Flexibility

Examiner's Amendments: This examiner makes examiner's amendments in 0.8% of allowed cases (in the 65% percentile). This examiner makes examiner's amendments more often than average to place applications in condition for allowance (MPEP § 1302.04).

Quayle Actions: This examiner issues Ex Parte Quayle actions in 1.6% of allowed cases (in the 66% percentile). This examiner issues Quayle actions more often than average when claims are allowable but formal matters remain (MPEP § 714.14).

Prosecution Strategy Recommendations

Based on the statistical analysis of this examiner's prosecution patterns, here are tailored strategic recommendations:

  • Consider after-final amendments: This examiner frequently enters after-final amendments. If you can clearly overcome rejections with claim amendments, file an after-final amendment before resorting to an RCE.
  • RCEs are effective: This examiner has a high allowance rate after RCE compared to others. If you receive a final rejection and have substantive amendments or arguments, an RCE is likely to be successful.

Relevant MPEP Sections for Prosecution Strategy

  • MPEP § 713.10: Examiner interviews - available before Notice of Allowance or transfer to PTAB
  • MPEP § 714.12: After-final amendments - may be entered "under justifiable circumstances"
  • MPEP § 1002.02(c): Petitionable matters to Technology Center Director
  • MPEP § 1004: Actions requiring primary examiner signature (allowances, final rejections, examiner's answers)
  • MPEP § 1207.01: Appeal conferences - mandatory for all appeals
  • MPEP § 1214.07: Reopening prosecution after appeal

Important Disclaimer

Not Legal Advice: The information provided in this report is for informational purposes only and does not constitute legal advice. You should consult with a qualified patent attorney or agent for advice specific to your situation.

No Guarantees: We do not provide any guarantees as to the accuracy, completeness, or timeliness of the statistics presented above. Patent prosecution statistics are derived from publicly available USPTO data and are subject to data quality limitations, processing errors, and changes in USPTO practices over time.

Limitation of Liability: Under no circumstances will IronCrow AI be liable for any outcome, decision, or action resulting from your reliance on the statistics, analysis, or recommendations presented in this report. Past prosecution patterns do not guarantee future results.

Use at Your Own Risk: While we strive to provide accurate and useful prosecution statistics, you should independently verify any information that is material to your prosecution strategy and use your professional judgment in all patent prosecution matters.