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Mark Szostkiewicz Phones & Addresses

  • Irvine, CA
  • Surprise, AZ
  • Manchester, NH
  • 46 Bonnies Way, Hampstead, NH 03841
  • 48 Bonnies Way, Hampstead, NH 03841
  • East Hampstead, NH
  • Dedham, MA
  • Alexandria, VA
  • Wilmington, MA

Publications

Us Patents

Chip-Scale Coils And Isolators Based Thereon

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US Patent:
20030042571, Mar 6, 2003
Filed:
Aug 8, 2002
Appl. No.:
10/214883
Inventors:
Baoxing Chen - Chelmsford MA, US
Geoffrey Haigh - Boxford MA, US
Mark Szostkiewicz - Hampstead NH, US
Ronn Kliger - Lexington MA, US
International Classification:
H01L029/00
H01L023/60
US Classification:
257/531000, 336/200000, 257/660000, 257/537000
Abstract:
Coil structures and isolators using them. A coil(s) is (are) used as a magnetic field-generating element(s) paired with another coil(s) or other magnetic field-receiving element(s). The coil(s) is(are) formed in or on a substrate which does not include some or all of the driver (i.e., input) or receiver (i.e., output) circuits. The coil(s) and magnetic field-receiving element(s) thus can be manufactured separately from the driver and/or receiver circuitry, using different processes, instead of subjecting the chip areas containing both input and output circuits to post processing to form the coil(s). Isolators can be assembled using such coils with a resultant lower cost. Isolators also can be assembled using transformers made from such coils wherein the transformers can be driven on either of their windings in order to provide bi-directional isolation with a single transformer.

Self-Heating Trim Techniques For Improved Ldo Accuracy Over Load And Temperature

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US Patent:
20160070280, Mar 10, 2016
Filed:
Sep 10, 2014
Appl. No.:
14/482228
Inventors:
- Norwood MA, US
Mark Szostkiewicz - Hampstead NH, US
International Classification:
G05F 1/625
G01K 7/00
Abstract:
In one example, a method for compensating for a temperature effect during operation of a voltage regulator circuit includes applying a load current at an output of the voltage regulator circuit, measuring a first output voltage at the output, measuring a reference current or voltage, increasing the load current, measuring a change in the reference current or voltage corresponding to the increased load current, measuring a second output voltage when the measured change in the reference current exceeds a threshold, and determining a temperature coefficient (TC) value based on the measured second output voltage.
Mark A Szostkiewicz from Irvine, CA, age ~63 Get Report