Inventor
Jimin Zhang
Inventor
San Jose, CA, US
Overview
Patents· 49 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
B24Bprimary
B24BMachines, devices, or processes for grinding or polishing19%
A61BDiagnosis15%
A61NElectrotherapy15%
H10PGeneric processes or apparatus for the manufacture or treatment of devices covered by class h106%
G10KSound-producing devices5%
H01LSemiconductor devices4%
A61FFilters implantable into blood vessels3%
A61KPreparations for medical, dental or toiletry purposes3%
A61MDevices for introducing media into, or onto, the body3%
A61HPhysical therapy apparatus, e.g. devices for locating or stimulating reflex points in the body2%
PatentTitleYear
10,968,313Amine polymer and preparation method and use thereof202110,891,293Parameterized continuous query templates202110,842,710Therapeutic ultrasound for eye disorders202010,799,210Dental imaging apparatus and method202010,589,397Endpoint control of multiple substrate zones of varying thickness in chemical mechanical polishing202010,525,083Nucleic acid molecules encoding chimeric antigen receptors comprising a CD20 binding domain202010,464,184Modifying substrate thickness profiles201910,350,723Overpolishing based on electromagnetic inductive monitoring of trench depth201910,253,086CD20 therapies, CD22 therapies, and combination therapies with a CD19 chimeric antigen receptor (CAR)-expressing cell201910,076,817Orbital polishing with small pad20189,296,084'Polishing control using weighting with default sequence'20169,248,544'Endpoint detection during polishing using integrated differential intensity'20169,220,488'System and method for treating a therapeutic site'20159,138,858'Thin polishing pad with window and molding process'20159,119,951'Energetic modulation of nerves'20159,005,999'Temperature control of chemical mechanical polishing'20158,992,447'Energetic modulation of nerves'20158,986,231'Energetic modulation of nerves'20158,986,211'Energetic modulation of nerves'20158,860,932'Detection of layer clearing using spectral monitoring'20148,755,928'Automatic selection of reference spectra library'20148,694,144'Endpoint control of multiple substrates of varying thickness on the same platen in chemical mechanical polishing'20148,666,665'Automatic initiation of reference spectra library generation for optical monitoring'20148,622,937'Controlled high efficiency lesion formation using high intensity ultrasound'20148,616,935'Control of overpolishing of multiple substrates on the same platen in chemical mechanical polishing'20138,562,389'Thin polishing pad with window and molding process'20138,517,962'Energetic modulation of nerves'20138,475,228'Polishing pad with partially recessed window'20138,465,342'Method of making and apparatus having windowless polishing pad and protected fiber'20138,388,535'Methods and apparatus for focused ultrasound application'20138,372,009'System and method for treating a therapeutic site'20138,295,967'Endpoint control of multiple-wafer chemical mechanical polishing'20128,292,691'Use of pad conditioning in temperature controlled CMP'20128,277,398'Methods and devices to target vascular targets with high intensity focused ultrasound'20128,167,805'Systems and methods for ultrasound applicator station keeping'20128,157,614'Method of making and apparatus having windowless polishing pad and protected fiber'20128,137,274'Methods to deliver high intensity focused ultrasound to target regions proximate blood vessels'20127,942,724'Polishing pad with window having multiple portions'20117,815,495'Pad conditioner'20107,768,659'Determining copper concentration in spectra'20107,754,689'Finger-1 peptide analogs of the TGF-β superfamily'20107,470,241'Controlled high efficiency lesion formation using high intensity ultrasound'20087,074,109'Chemical mechanical polishing control system and method'20067,063,666'Ultrasound transducers for imaging and therapy'20066,991,516'Chemical mechanical polishing with multi-stage monitoring of metal clearing'20066,719,694'Ultrasound transducers for imaging and therapy'20046,656,136'Use of focused ultrasound for vascular sealing'20036,626,855'Controlled high efficiency lesion formation using high intensity ultrasound'20036,461,958'Polishing memory disk substrates with reclaim slurry'2002Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2002–2020Based in San Jose, CA, US· patent location history
2003–2020Based in Bellevue, WA, US· patent location history
2006–2020Patents assigned to APPLIED MATERIALS INC (24)· patent assignee history
2010–2020Based in Chestnut Hill, MA, US· patent location history
2012–2016Patents assigned to ZHANG JIMIN (26)· patent assignee history
2012–2015Patents assigned to KONA MEDICAL INC (12)· patent assignee history
2012–2015Patents assigned to PEROZEK DAVID M (7)· patent assignee history
2012–2014Patents assigned to SWEDEK BOGUSLAW A (6)· patent assignee history
2019Based in Cambridge, MA, US· patent location history
2021Based in Beijing, CN· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| ZHANG JIMINself | 26 | 2012–2016 |
| APPLIED MATERIALS INC | 24 | 2006–2020 |
| KONA MEDICAL INC | 12 | 2012–2015 |
| PEROZEK DAVID M | 7 | 2012–2015 |
| SWEDEK BOGUSLAW A | 6 | 2012–2014 |
Locations
| Location | Patents | Span |
|---|---|---|
| San Jose, California, US | 25 | 2002–2020 |
| Bellevue, Washington, US | 19 | 2003–2020 |
| Beijing, CN | 2 | 2021 |
| Chestnut Hill, Massachusetts, US | 2 | 2010–2020 |
| Cambridge, Massachusetts, US | 1 | 2019 |