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Richard Alexander Ryer, 445267 Robinwood Ln, Hales Corners, WI 53130

Richard Ryer Phones & Addresses

5267 Robinwood Ln, Hales Corners, WI 53130    414-4251347   

9725 W Meadow Park Dr, Hales Corners, WI 53130    414-2329210   

2253 Vesterheim St, Eau Claire, WI 54703   

Milwaukee, WI   

Waukesha, WI   

Orange Pk, FL   

Middleton, WI   

Work

Company: Richard ryer Address: 2800 Apple Tree Ct, Waukesha, WI 53188 Phones: 414-5493008 Position: Chief executive Industries: Title Abstract Offices

Mentions for Richard Alexander Ryer

Richard Ryer resumes & CV records

Resumes

Richard Ryer Photo 18

Richard Ryer

Richard Ryer Photo 19

Quality Manager At Saint Vrain Manufacturing

Publications & IP owners

Us Patents

Bacnet Conversion Of Water Management Data For Building Management Solutions

US Patent:
2022024, Aug 4, 2022
Filed:
Apr 25, 2022
Appl. No.:
17/728649
Inventors:
- Milwauke WI, US
Richard Ryer - Milwaukee WI, US
International Classification:
H04L 65/102
H04L 67/12
F24F 11/30
F24F 11/56
E03B 7/07
Abstract:
Methods and systems of monitoring and managing a facility including a plurality of end point devices. One system includes a first gateway device. The first gateway device includes a first electronic processor configured to receive fixture data from at least one electro-mechanical element of a fixture associated with the facility, the fixture data related to an operation of the fixture, and enable transmission of the fixture data to a remote device for virtual processing. The system also includes a second gateway device communicatively coupled with the first gateway device. The second gateway device includes a second electronic processor configured to receive, from the first gateway device, the processed fixture data. The second electronic processor configured to convert the processed fixture data pursuant to a networking protocol associated with a building management system and transmit the converted fixture data for display via a visual dashboard associated with the building management system.

Kickback Control Methods For Power Tools

US Patent:
2021029, Sep 30, 2021
Filed:
Jun 14, 2021
Appl. No.:
17/346800
Inventors:
- Brookfield WI, US
Timothy R. Obermann - Waukesha WI, US
Benjamin R. Suhr - Milwaukee WI, US
Richard A. Ryer - Hales Corners WI, US
Maxwell L. Merget - Fayetteville AR, US
Douglas R. Fieldbinder - Greendale WI, US
International Classification:
B25F 5/00
B25D 16/00
H02K 7/00
H02K 11/21
B25F 5/02
B25B 21/02
H02K 7/14
Abstract:
Kickback control methods for power tools. One power tool includes a movement sensor configured to measure an angular velocity of the housing of the power tool, and an orientation sensor configured to measure an orientation of the housing. The power tool includes an electronic processor coupled to a switching network and a trigger. To implement the kickback control, the electronic processor is configured to receive measurements of the angular velocity of the housing, receive measurements of the orientation of the housing, determine a binding condition of the power tool based on the measurements of the angular velocity and the measurements of orientation, and control the switching network to cease driving of the brushless DC motor.

Kickback Control Methods For Power Tools

US Patent:
2019012, May 2, 2019
Filed:
Oct 25, 2018
Appl. No.:
16/170836
Inventors:
- Brookfield WI, US
Timothy R. Obermann - Waukesha WI, US
Benjamin R. Suhr - Milwaukee WI, US
Richard A. Ryer - Hales Corners WI, US
Maxwell L. Merget - Fayetteville AR, US
Douglas R. Fieldbinder - Greendale WI, US
International Classification:
B25F 5/00
B25F 5/02
H02K 7/14
H02K 7/00
H02K 11/21
Abstract:
Kickback control methods for power tools. One power tool includes a movement sensor configured to measure an angular velocity of the housing of the power tool about the rotational axis. The power tool includes an electronic processor coupled to the switching network and the movement sensor and configured to implement kickback control of the power tool. To implement the kickback control, the electronic processor is configured to control the switching network to drive the brushless DC motor, receive measurements of the angular velocity of the housing of the power tool from the movement sensor, determine that a plurality of the measurements of the angular velocity of the housing of the power tool exceed a rotation speed threshold, and control the switching network to cease driving of the brushless DC motor in response to determining that the plurality of the measurements of the angular velocity exceed the rotation speed threshold.

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