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Srinivasan Arjun Tekalur

age ~43

from Morrisville, NC

Also known as:
  • Srinivasan A Tekalur
  • Srinivasana A Tekalur
  • Arjun Tekalur
  • Arjur T Srinivasan

Srinivasan Tekalur Phones & Addresses

  • Morrisville, NC
  • 3930 Hazy Ln, Okemos, MI 48864 • 517 203-0610
  • 3943 Sun Rapids Dr, Okemos, MI 48864
  • Muskegon, MI
  • Alpena, MI
  • Twin Lake, MI
  • Kingston, RI
  • Glendale, CA
  • Pasadena, CA
  • 3930 Hazy Ln, Okemos, MI 48864

Us Patents

  • Power Distribution And Circuit Protection For A Mobile Application Having A High Efficiency Inverter

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  • US Patent:
    20200274375, Aug 27, 2020
  • Filed:
    Mar 23, 2020
  • Appl. No.:
    16/827116
  • Inventors:
    - Dublin 4, IE
    Nilesh Surase - Pune, IN
    Ritika Shetty - Pune, IN
    Shalini Tripathy - Bhubaneswar, IN
    Somdut Dey - Katwa, IN
    Madhavi Gupta - Haryana, IN
    Mayura Madane - Pune, IN
    Sadiya Qureshi - Pune, IN
    Toseed Khan - Pune, IN
    Amit Chavan - Pune, IN
    Kumar Prasad Telikepalli - Pune, IN
    Atul Solvande - Pune, IN
    Hao Wang - Suzhou, CN
    Jiong Chen - Shanghai, CN
    Yueyue Deng - Shanghai, CN
    Jason Carroll - Bloomfield Hills MI, US
    Srinivasan Arjun Tekalur - Okemos MI, US
    Jacob William Green - Clackamas OR, US
    Chakravarthi Kandru - Guntur, IN
    Cheng Luo - Shanghai, CN
    Tianyang Jiang - Shanghai, CN
    Cheng Wan - Shanghai, CN
    Ye Zhu - Shanghai, CN
    John Trublowski - Troy MI, US
    Robert Stephen Douglass - Wildwood MO, US
    Rajen Modi - Senoia GA, US
    Nilay Mehta - Peachtree City GA, US
    Laura Natali Valencia Fritsch - Lake Oswego OR, US
    Han Li - Shanghai, CN
    Dongxin Jin - Shanghai, CN
    Lewei Qian - Novi MI, US
    Jun Li - Cary NC, US
    Hongrae Kim - Cary NC, US
    Daniel R. Ouwenga - Portage MI, US
    Patrick Herranz - Tassin La Demi Lune, FR
    Miroslav Horejs - Miskovice, CZ
    Rohit Baranwal - Oak Park MI, US
    Zhe Zhang - Ann Arbor MI, US
    Martin Wayne Mensch - Livonia MI, US
    Brandon William Fisher - Portland OR, US
    Austin Robert Zurface - Dowling MI, US
    Jeff Howard Urian - Troy MI, US
    James David - Portage MI, US
    Bharath Kumar Suda - Munich, DE
    Asheesh Kumar Soni - Bonn, DE
    Rene Guy Gallet - Montrottier, FR
    Michael Scott Sullivan - Chelsea MI, US
    Karsten Gerving - Bonn, DE
    Guido Völlmar - Köln, DE
    Gerd Schmitz - Niederkassel, DE
    Christoph Bausch - Bonn, DE
    Ute Molitor - Bad Neuenahr-Ahrweiler, DE
    Lutz Friedrichsen - Langerwehe, DE
    Kai Schroeder - Niederkassel, DE
    Julia Otte - Köln, DE
    Madeline Philipsohn - Eitorf, DE
    Norbert Roesner - Sankt Augustin, DE
    Volker Lang - Bonn, DE
    Johannes Meissner - Bonn, DE
    Paolo D'Amico - Pescara, IT
    Jalpa Shah - Woodbury MN, US
    Meng Wang - Chanhassen MN, US
    Damrongrit Piyabongkarn - Plymouth MN, US
    Niles Stephen Ramseyer - Portland OR, US
    Dennis Dukaric - Oregon City OR, US
    Matt Haylock - Oregon City OR, US
    Anvaya R. Hingangave - Vijaynagar, IN
    Devendra Patil - Oak Park MI, US
  • International Classification:
    H02J 7/00
    B60R 16/033
  • Abstract:
    A power electronics assembly for a mobile application includes a first power electronics component selectively coupled to a high source on a first side and coupled to a high voltage battery on a second side, a second power electronics component selectively coupled to one of a low load or a low voltage battery on a first side and coupled to the high voltage battery on a second side; and a controller, including an operating mode circuit structured to determine a discharge operating mode for the mobile application, a power electronics configuration circuit structured to provide a switch state value for the first power electronics component and the second power electronics component in response to the discharge operating mode, and wherein the first power electronics component and the second power electronics component are responsive to the switch state value to coupled selected ones of the high source, low load, and low voltage battery to the high voltage battery.
  • Swaging Tool And Method Ofmanufacturing Same

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  • US Patent:
    20180339333, Nov 29, 2018
  • Filed:
    May 25, 2018
  • Appl. No.:
    15/989626
  • Inventors:
    - Cleveland OH, US
    Christopher T. Cantrell - Jackson MI, US
    Emmanuel Matthews - Laurel MD, US
    Srinivasan A. Tekalur - Okemos MI, US
    Lucas Stahl - Livonia MI, US
    David St. John - Detroit MI, US
    Gregory Kiernan - Grass Lake MI, US
  • International Classification:
    B21J 7/18
    B21D 39/04
  • Abstract:
    A method of manufacturing a swaging tool includes forming a body of the swaging tool via additive manufacturing, forming a jaw of the swaging tool, and connecting the jaw with the body. Forming the body may include providing a portion of the body with a lattice structure. The portion may be internal and may not be externally accessible. Forming the body may include adding material to form at least one recess in an outer surface of the body. The method may include conducting a stress analysis. The at least one recess may be formed based on or according to the stress analysis.

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