USPTO Examiner AGARED GABRIEL T - Art Unit 2846

Recent Applications

Detailed information about the 100 most recent patent applications.

Application NumberTitleFiling DateDisposal DateDispositionTime (months)Office ActionsRestrictionsInterviewAppeal
19267068Improvements to Switch Housing Remote ControlJuly 2025September 2025Allow200YesNo
19179874SYSTEMS AND METHODS FOR ELECTRIC DAMPING OF AIRCRAFT FLIGHT CONTROL SURFACES AND PROPELLERSApril 2025September 2025Allow510YesNo
19090954Online Fault Identification Method for Current Sensor, Diagnosis Apparatus, and Fault-tolerant Control SystemMarch 2025August 2025Allow410NoNo
18731781BATTERY-POWERED STAND-ALONE MOTOR UNITJune 2024December 2024Allow600YesNo
18677110METHODS AND SYSTEM FOR POSITION STABILIZATIONMay 2024March 2025Allow1010NoNo
18637694GRINDER WITH LOSS OF CONTROL DETECTIONApril 2024January 2026Allow2100YesNo
18698901CONTROL METHOD FOR SMART FURNITUREApril 2024February 2026Allow2200YesNo
18624043DIRECT LOCATING METHOD FOR CALCULATING POSITION OF PERMANENT MAGNET SYNCHRONOUS MOTORApril 2024December 2025Allow2100YesNo
18603822MOTOR DRIVING REDUNDANCY DEVICE FOR ELECTRONIC PARKING BRAKEMarch 2024March 2026Allow2410NoNo
18599483MOTOR DRIVER CIRCUIT, POSITIONING DEVICE USING IT, AND HARD DISK DEVICEMarch 2024October 2025Allow1900YesNo
18599769STEPPING MOTOR CONTROL DEVICE, MOVEMENT, WATCH, AND STEPPING MOTOR CONTROL METHODMarch 2024November 2025Allow2000NoNo
18689867CONTROL DEVICEMarch 2024October 2025Allow1900NoNo
18595450MOTOR SYSTEM OF ACCURATE BACK-ELECTROMOTIVE FORCE DETECTION AND OPERATION METHOD THEREOFMarch 2024October 2025Allow1900NoNo
18590657MOTOR SAFETY CONTROL METHOD AND ROBOT FOR IMPLEMENTING THE SAMEFebruary 2024January 2026Allow2310NoNo
18586554FAST ROTOR POSITION ESTIMATION METHOD FOR PERMANENT MAGNET MOTOR BASED ON N-DIVISION APPROACHFebruary 2024September 2025Allow1900YesNo
18581684CURRENT MEASUREMENT APPARATUS, CURRENT MEASUREMENT PROGRAM, AND CURRENT MEASUREMENT METHODFebruary 2024January 2026Allow2310NoNo
18443241MOTOR STARTING CIRCUIT HAVING DEAD TIME SETTING MECHANISMFebruary 2024October 2025Allow2000NoNo
18683320CONTROL DEVICE AND METHOD FOR CONTROLLING A POWER CONVERTER, AND ELECTRICAL DRIVE SYSTEMFebruary 2024January 2026Allow2310YesNo
18433474SENSORLESS CONTROL METHOD OF PERMANENT MAGNET SYNCHRONOUS MOTORFebruary 2024December 2025Allow2210YesNo
18430178Motor Angular Position ControlFebruary 2024August 2024Allow600YesNo
18422744SYSTEM AND METHOD FOR DETERMINING AN ANGULAR POSITION OF AN ELECTRIC MOTORJanuary 2024March 2026Allow2510YesNo
18419063ATHERECTOMY SYSTEM CURRENT SENSING, PROCESSING AND DISPLAYJanuary 2024April 2025Allow1420YesNo
18415842VEHICLE ELECTRONIC DEVICE, METHOD FOR PROTECTING VEHICLE ELECTRONIC DEVICE AND NON-TRANSITORY COMPUTER-READABLE STORAGE MEDIUMJanuary 2024March 2026Allow2601NoNo
18409246POSITION DETECTION DEVICE AND IMAGING DEVICEJanuary 2024February 2026Abandon2510NoNo
18407603MOTOR CONTROL SYSTEMJanuary 2024August 2025Allow1900NoNo
18577730CONTROL DEVICE FOR ROTATING MACHINEJanuary 2024August 2025Allow1900NoNo
18405105Rotor-To-Stator Reduction Factor Evaluation for Externally-Excited Synchronous MachinesJanuary 2024December 2025Allow2410NoNo
18576522ROTARY MACHINE CONTROL DEVICEJanuary 2024August 2025Allow1900NoNo
18400800MULTIPIVOT USER INTERFACE DEVICES AND RELATED VEHICLE SYSTEMS AND METHODSDecember 2023March 2026Allow2610NoNo
18575682TEMPERATURE DETERMINATION METHOD FOR MAGNET TEMPERATURES ON MAGNETS OF ELECTRIC MOTORSDecember 2023August 2025Allow1900NoNo
18397258APPARATUS AND METHOD OF CONTROLLING A MOTORDecember 2023November 2025Allow2310YesNo
18574399ESTIMATION OF THE TORQUE OF AN ELECTRIC MACHINEDecember 2023December 2025Allow2410YesNo
18574360METHOD AND DEVICE FOR INJECTING HIGH FREQUENCY CURRENT VECTORDecember 2023November 2025Allow2310YesNo
18394781PAIRING FEATURE FOR DRIVING DC MOTORS WITH PARALLEL CAPACITORS IN OVERCURRENT RECOVERY MODEDecember 2023August 2025Allow2000YesNo
18395427CONTROLLER FOR A SWITCHED RELUCTANCE MACHINEDecember 2023December 2025Allow2410NoNo
18391734MOTOR CONTROL CIRCUITDecember 2023December 2025Allow2310NoNo
18392189SHUNTLESS MOTOR CONTROL FOR DC MOTORSDecember 2023September 2025Allow2110NoNo
18543777METHODS FOR IMPROVING RATE OF RISE OF TORQUE IN ELECTRIC MACHINES WITH STATOR CURRENT BIASINGDecember 2023March 2025Allow1520YesNo
18570815PILING HAMMER AND METHOD FOR STRIKING PILEDecember 2023October 2025Allow2210NoNo
18535301VARIABLE SPEED DRIVE CONTROLDecember 2023December 2025Allow2410YesNo
18531930METHOD OF MODULATION OF TORQUE BY VEHICLE PROPULSION MOTORDecember 2023December 2025Allow2410YesNo
18566715Systems and Methods for a Resolver and Motor Control with Enhanced Speed and Direction MonitoringDecember 2023October 2025Allow2310NoNo
18527667HIGH-INTEGRITY ACTUATOR CONTROLLER AND CONTROL SYSTEMSDecember 2023July 2025Allow1900YesNo
18525650METHODS AND APPARATUS TO CONTROL ENGINE SPEED OF A POWER SYSTEMNovember 2023October 2024Allow1110YesNo
18525389WIDE VOLTAGE ADAPTABLE DRIVE AND CONTROL CIRCUIT FOR HAIRDRYERSNovember 2023March 2026Allow2810NoNo
18565657INVERTER CONTROL DEVICE AND INVERTER CONTROL METHODNovember 2023July 2025Allow1900NoNo
18522693CONTROL METHOD FOR STEPPING MOTOR OF THERMAL PRINTERNovember 2023July 2025Allow1900YesNo
18522309MOTOR CONTROL CIRCUIT AND CONTROL METHODNovember 2023December 2025Allow2510NoNo
18520874DRIVERNovember 2023December 2025Abandon2510NoNo
18514519CONTROL CIRCUIT OF A STEPPER MOTOR CAPABLE OF DETECTING AN EXTERNAL MAGNETIC FIELDNovember 2023June 2025Allow1900YesNo
18512300MOTOR DRIVING APPARATUS AND METHOD OF CONTROLLING THE SAMENovember 2023October 2025Allow2310NoNo
18512119SINGLE-WIRE CONTROL DEVICE FOR BRUSHLESS DIRECT CURRENT MOTORNovember 2023August 2025Allow2110NoNo
18561476METHOD FOR ESTIMATING THE MAGNET TEMPERATURE IN AN ELECTRICAL MACHINE, METHOD FOR CONTROLLING SAID ELECTRICAL MACHINE, ELECTRONIC DEVICE FOR ESTIMATING THE MAGNET TEMPERATURE IN AN ELECTRICAL MACHINE AND SYSTEM FOR CONTROLLING SAID ELECTRICAL MACHINENovember 2023January 2026Allow2610YesNo
18389511REGULATION DEVICENovember 2023March 2026Allow2810NoNo
18504272ELECTRIC MOTORNovember 2023June 2025Allow1900NoNo
18502436Method for Operating a Permanently Excited Synchronous Motor of a Hand-Held Working Device, and Hand-Held Working DeviceNovember 2023November 2025Allow2410YesNo
18498132MOTOR CONTROL APPARATUS THAT PERFORMS FAILURE DETERMINATION AND DETERMINATION OF ROTATIONAL POSITION OF ROTOR, AND IMAGE FORMING APPARATUSOctober 2023October 2024Allow1110NoNo
18289019NUMERICAL CONTROL DEVICE AND COMPUTER-READABLE STORAGE MEDIUMOctober 2023August 2025Allow2110NoNo
18491383AIRCRAFT ENGINE START USING MULTIPLE COMMON MOTOR CONTROLLERSOctober 2023June 2025Allow1900NoNo
18491691CONTROL SYSTEMS AND METHODS WITH HAPTIC FEEDBACKOctober 2023May 2025Allow1900YesNo
18382039METHOD FOR CONTROLLING OPERATION OF PERMANENT-MAGNET SYNCHRONOUS MOTOR THROUGH SENSORLESS VECTOR CONTROLOctober 2023May 2025Allow1900YesNo
18487641MOTOR CONTROL SYSTEM FOR ENERGIZING A LOW-VOLTAGE MOTOR FROM A HIGH-VOLTAGE SOURCEOctober 2023May 2025Allow1900NoNo
18486245MOTOR DRIVING METHODOctober 2023November 2025Abandon2510NoNo
18481438ELECTRIC MOTOR CONTROLOctober 2023November 2025Allow2510YesNo
18481267POWER CONVERSION DEVICE, ESTIMATION DEVICE, AND ESTIMATION METHODOctober 2023April 2025Allow1900NoNo
18375005SYSTEMS, APPARATUSES, AND METHODS TO PERFORM STARTUP STEP DETECTION IN AN INTERNAL PERMANENT MAGNET SYNCHRONOUS MACHINESeptember 2023October 2025Allow2510YesNo
18477955SENSORLESS TRAPEZOIDAL MOTOR CONTROLSeptember 2023October 2025Allow2401NoNo
18474342IMAGE READING DEVICE AND CONTROL METHOD FOR IMAGE READING DEVICESeptember 2023January 2026Allow2820NoNo
18370582TRANSISTOR CONTROL CIRCUITSeptember 2023October 2025Allow2510NoNo
18466555METHODS AND SYSTEM FOR POSITION STABILIZATIONSeptember 2023April 2024Allow700YesNo
18281731Synchronous Machine Control Device, Synchronous Machine Control Method, and Electric VehicleSeptember 2023June 2025Allow2110NoNo
18281627Compensation NetworkSeptember 2023August 2025Allow2410YesNo
18463910ELECTRIC MOTOR ENABLING SPEED CHANGE AND EFFICIENT RANGE CHANGE ACCORDINGLYSeptember 2023January 2026Abandon2810NoNo
18549659MOTOR CONTROL CIRCUIT AND MEDICAL DEVICESeptember 2023June 2025Allow2110NoNo
18279937METHOD FOR OPERATING A DRIVE SYSTEM AND DRIVE SYSTEM FOR CARRYING OUT THE METHODSeptember 2023August 2025Allow2410YesNo
18239994EFFICIENCY OPTIMIZATION CONTROL METHOD AND SYSTEM FOR PERMANENT MAGNET SYNCHRONOUS MOTORAugust 2023May 2025Allow2110NoNo
18279271CONTROL DEVICE FOR SYNCHRONOUS MOTORAugust 2023July 2025Allow2310NoNo
18239731MONITORING, CONTROLLING, OR MONITORING AND CONTROLLING AN ELECTRO-MECHANICAL DEVICEAugust 2023September 2025Abandon2510NoNo
18278389METHOD OF CONTROLLING A THREE-PHASE PERMANENT-MAGNET MOTORAugust 2023September 2025Abandon2510NoNo
18278385METHOD FOR DETERMINING AN INITIAL POSITION OF A ROTOR OF A BRUSHLESS MOTOR AND BRUSHLESS MOTORAugust 2023September 2025Abandon2510NoNo
18278384BRUSHLESS PERMANENT MAGNET MOTORAugust 2023July 2025Allow2310NoNo
18453270MOTOR DRIVER CIRCUIT HAVING REVERSE CURRENT DETECTION MECHANISMAugust 2023April 2025Allow2010NoNo
18452050ROTOR FLUX TIME DELAY REDUCTION THROUGH INITIAL ROTOR CURRENT FOR ELECTRICALLY EXCITED SYNCHRONOUS MACHINESAugust 2023November 2025Abandon2711YesNo
18264758BRAKE CONTROL DEVICE AND MOTOR DRIVE DEVICEAugust 2023March 2025Allow1900NoNo
18264163SENSORLESS MOTOR ASSEMBLY AND METHOD OF CONTROLLING THE SAMEAugust 2023June 2025Allow2210NoNo
18262570MOTOR CONTROL SYSTEM, MOTOR CONTROL DEVICE, AND MOTOR CONTROL METHODJuly 2023March 2025Allow2000NoNo
18355717POWER TRANSFER FOR ELECTRIC MOTORS WITH SEGMENTED WINDINGSJuly 2023March 2025Allow2000NoNo
18222620SHOOT THROUGH PROTECTION IN MOTOR DRIVES WITH SINGLE SUPPLY GATE DRIVESJuly 2023June 2025Allow2310NoNo
18270357DRIVE SYSTEM, CONTROL METHOD, AND CONTROL PROGRAMJune 2023September 2025Allow2620YesNo
18344056SENSORLESS OBSERVER WITH HARMONIC COMPENSATIONJune 2023June 2025Abandon2410NoNo
18340895MOTOR CONTROL DEVICE AND ELECTRIC PUMP DEVICEJune 2023December 2024Allow1800NoNo
18337035MOTOR CONTROL DEVICE, MOTOR DEVICE, WIPER DEVICE, AND MOTOR CONTROL METHODJune 2023June 2025Allow2410YesNo
18267375LOAD TESTING DEVICEJune 2023January 2024Allow700YesNo
18330700DUAL MOTOR ACTUATOR AND METHOD OF CONTROLLING THE SAMEJune 2023July 2025Allow2510NoNo
18265942VOLTAGE REGULATION AND SPEED REGULATION CONTROL CIRCUIT OF AN AIR PUMPJune 2023June 2025Allow2510NoNo
18206365MULTILAYER PRINTED CIRCUIT BOARD DVDT FILTER WITH POWDER CORE TOROIDSJune 2023January 2025Allow1900YesNo
18038868METHOD FOR OPERATING A DC MOTORMay 2023November 2024Allow1800NoNo
18038215METHOD FOR REDUCING ELECTROMAGNETIC VIBRATION OF PERMANENT MAGNET MOTOR WITH FRACTIONAL SLOT CONCENTRATED WINDINGMay 2023June 2024Allow1310YesNo
18322457MOTOR CONTROL DEVICE AND IMAGE FORMING APPARATUSMay 2023March 2026Allow3411NoNo
18200969WIRELESS POWER TRANSMISSION SYSTEM COMPRISING WIRELESS POWER RECEIVER AND WIRELESS POWER DEVICEMay 2023October 2025Allow2920YesNo

Appeals Overview

This analysis examines appeal outcomes and the strategic value of filing appeals for examiner AGARED, GABRIEL T.

Patent Trial and Appeal Board (PTAB) Decisions

Total PTAB Decisions
1
Examiner Affirmed
0
(0.0%)
Examiner Reversed
1
(100.0%)
Reversal Percentile
95.3%
Higher than average

What This Means

With a 100.0% reversal rate, the PTAB has reversed the examiner's rejections more often than affirming them. This reversal rate is in the top 25% across the USPTO, indicating that appeals are more successful here than in most other areas.

Strategic Value of Filing an Appeal

Total Appeal Filings
6
Allowed After Appeal Filing
2
(33.3%)
Not Allowed After Appeal Filing
4
(66.7%)
Filing Benefit Percentile
53.3%
Higher than average

Understanding Appeal Filing Strategy

Filing a Notice of Appeal can sometimes lead to allowance even before the appeal is fully briefed or decided by the PTAB. This occurs when the examiner or their supervisor reconsiders the rejection during the mandatory appeal conference (MPEP § 1207.01) after the appeal is filed.

In this dataset, 33.3% of applications that filed an appeal were subsequently allowed. This appeal filing benefit rate is above the USPTO average, suggesting that filing an appeal can be an effective strategy for prompting reconsideration.

Strategic Recommendations

Appeals to PTAB show good success rates. If you have a strong case on the merits, consider fully prosecuting the appeal to a Board decision.

Filing a Notice of Appeal is strategically valuable. The act of filing often prompts favorable reconsideration during the mandatory appeal conference.

Examiner AGARED, GABRIEL T - Prosecution Strategy Guide

Executive Summary

Examiner AGARED, GABRIEL T works in Art Unit 2846 and has examined 161 patent applications in our dataset. With an allowance rate of 86.3%, this examiner has an above-average tendency to allow applications. Applications typically reach final disposition in approximately 35 months.

Allowance Patterns

Examiner AGARED, GABRIEL T's allowance rate of 86.3% places them in the 64% percentile among all USPTO examiners. This examiner has an above-average tendency to allow applications.

Office Action Patterns

On average, applications examined by AGARED, GABRIEL T receive 1.76 office actions before reaching final disposition. This places the examiner in the 39% percentile for office actions issued. This examiner issues fewer office actions than average, which may indicate efficient prosecution or a more lenient examination style.

Prosecution Timeline

The median time to disposition (half-life) for applications examined by AGARED, GABRIEL T is 35 months. This places the examiner in the 40% percentile for prosecution speed. Prosecution timelines are slightly slower than average with this examiner.

Interview Effectiveness

Conducting an examiner interview provides a +18.4% benefit to allowance rate for applications examined by AGARED, GABRIEL T. This interview benefit is in the 61% percentile among all examiners. Recommendation: Interviews provide an above-average benefit with this examiner and are worth considering.

Request for Continued Examination (RCE) Effectiveness

When applicants file an RCE with this examiner, 36.4% of applications are subsequently allowed. This success rate is in the 83% 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 32.8% of cases where such amendments are filed. This entry rate is in the 48% percentile among all examiners. Strategic Recommendation: This examiner shows below-average receptiveness to after-final amendments. You may need to file an RCE or appeal rather than relying on after-final amendment entry.

Pre-Appeal Conference Effectiveness

When applicants request a pre-appeal conference (PAC) with this examiner, 0.0% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 13% percentile among all examiners. Note: Pre-appeal conferences show limited success with this examiner compared to others. While still worth considering, be prepared to proceed with a full appeal brief if the PAC does not result in favorable action.

Appeal Withdrawal and Reconsideration

This examiner withdraws rejections or reopens prosecution in 83.3% of appeals filed. This is in the 76% percentile among all examiners. Of these withdrawals, 20.0% occur early in the appeal process (after Notice of Appeal but before Appeal Brief). Strategic Insight: This examiner frequently reconsiders rejections during the appeal process compared to other examiners. Per MPEP § 1207.01, all appeals must go through a mandatory appeal conference. Filing a Notice of Appeal may prompt favorable reconsideration even before you file an Appeal Brief.

Petition Practice

When applicants file petitions regarding this examiner's actions, 40.0% are granted (fully or in part). This grant rate is in the 30% percentile among all examiners. Strategic Note: Petitions show below-average success regarding this examiner's actions. Ensure you have a strong procedural basis before filing.

Examiner Cooperation and Flexibility

Examiner's Amendments: This examiner makes examiner's amendments in 0.0% of allowed cases (in the 25% percentile). This examiner makes examiner's amendments less often than average. You may need to make most claim amendments yourself.

Quayle Actions: This examiner issues Ex Parte Quayle actions in 1.4% of allowed cases (in the 65% 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:

  • 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.
  • Appeal filing as negotiation tool: This examiner frequently reconsiders rejections during the appeal process. Filing a Notice of Appeal may prompt favorable reconsideration during the mandatory appeal conference.

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.