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Jonas P Weiland

from Del Mar, CA
Age ~64

Jonas Weiland Phones & Addresses

  • 13390 Portofino Dr, Del Mar, CA 92014 (858) 356-9171
  • 2723 Avenida De Anita #95, Carlsbad, CA 92010 (858) 792-8062
  • San Diego, CA
  • 13390 Portofino Dr, Del Mar, CA 92014 (858) 663-1291

Work

Company: On semiconductor 2008 Position: System architect and technical marketing

Education

School / High School: Linköping University 1981 to 1986

Skills

Marketing • Semiconductors

Emails

Industries

Semiconductors

Resumes

Resumes

Jonas Weiland Photo 1

System Architect And Technical Marketing

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Location:
13390 Portofino Dr, Del Mar, CA 92014
Industry:
Semiconductors
Work:
On Semiconductor
System Architect and Technical Marketing

On Semiconductor Oct 2002 - Nov 2004
Strategic Marketing Manager

Microsemi Corporation Aug 1999 - Oct 2002
Manager Business Development

Abb Hafo 1985 - 2002
Manager
Education:
Linköping University 1981 - 1986
The Institute of Technology at Linköping University 1981 - 1985
Master of Science, Masters, Applied Physics, Electronics
Linköping University 1981 - 1985
Master of Science, Masters, Applied Physics, Electronics
Skills:
Marketing
Semiconductors

Publications

Us Patents

Apparatus For Controlling A High Voltage Circuit Using A Low Voltage Circuit

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US Patent:
20030071322, Apr 17, 2003
Filed:
Oct 11, 2001
Appl. No.:
09/976700
Inventors:
Alain Comeau - Carlsbad CA, US
Jonas Weiland - Del Mar CA, US
International Classification:
H01L029/00
US Classification:
257/500000
Abstract:
Disclosed is a capacitively coupled bridge circuit for using a low-voltage circuit to operate a high-voltage circuit. The invention maintains isolation between the high-and low-voltage sections by using a capacitor. Also disclosed is the use of the invention in an inplantable cardiac defibrillator.

Trimmable Variable Compression Amplifier For Hearing Aid

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US Patent:
58388079, Nov 17, 1998
Filed:
Oct 19, 1995
Appl. No.:
8/545406
Inventors:
Olle Andersson - Jarfalla, SE
Jonas Weiland - La Jolla CA
Mehrdad Negahban - Irvine CA
Assignee:
Mitel Semiconductor, Inc. - San Diego CA
International Classification:
H04R 2500
US Classification:
381321
Abstract:
An improved analog hearing aid is provided which incorporates a current source transconductance amplifier as an input stage. The gain defining bias current of the input stage transconductance amplifier is adjusted upon the application of battery power to the hearing aid to define a low input signal gain, and is then reduced by two gain regulators to define a compression threshold and compression ratio, and to provide a maximum output ceiling. Also provided is a method of trimming the low signal gain of the hearing aid at the time battery power is applied.

Low Noise Differential Amplifier

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US Patent:
20200007089, Jan 2, 2020
Filed:
Sep 13, 2019
Appl. No.:
16/570213
Inventors:
- Phoenix AZ, US
Jonas WEILAND - Del Mar CA, US
Assignee:
SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC - Phoenix AZ
International Classification:
H03F 1/26
H03F 3/45
Abstract:
In one general aspect, an amplifier can include an input amplifier circuit configured to receive a bias current and receive, as an input, a signal pair connected differentially to the input amplifier circuit, the input amplifier circuit configured to output a differential output signal pair based on the received differential input signal pair, a feedback amplifier circuit configured to receive an average of the differential output signal pair and configured to provide a bias setting output for controlling the bias current, and an output buffer circuit configured to buffer the differential output signal pair, the buffering resulting in a buffered differential output signal pair capable of driving a resistive load.

Low Noise Differential Amplifier

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US Patent:
20190273471, Sep 5, 2019
Filed:
Mar 1, 2018
Appl. No.:
15/909098
Inventors:
- Phoenix AZ, US
Jonas WEILAND - Del Mar CA, US
Assignee:
SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC - Phoenix AZ
International Classification:
H03F 1/26
H03F 3/45
Abstract:
In one general aspect, an amplifier can include an input amplifier circuit configured to receive a bias current and receive, as an input, a signal pair connected differentially to the input amplifier circuit, the input amplifier circuit configured to output a differential output signal pair based on the received differential input signal pair, a feedback amplifier circuit configured to receive an average of the differential output signal pair and configured to provide a bias setting output for controlling the bias current, and an output buffer circuit configured to buffer the differential output signal pair, the buffering resulting in a buffered differential output signal pair capable of driving a resistive load.
Jonas P Weiland from Del Mar, CA, age ~64 Get Report