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Gerard W Leeman

from Stoneham, MA

Gerard Leeman Phones & Addresses

  • 3 Country Club Rd, Stoneham, MA 02180 (781) 481-9030
  • 6 Rhuland Rd, Stoneham, MA 02180
  • Hauppauge, NY
  • 136 Avalon Cir, Smithtown, NY 11787 (631) 724-6991
  • 48 Abbot Rd, Smithtown, NY 11787 (631) 724-6991
  • Somerville, MA

Work

Company: Merck kgaa, darmstadt, germany Jan 2019 Position: Global head of compliance, life science

Education

Degree: Bachelors, Bachelor of Science School / High School: Bentley University Sep 1994 to May 1998 Specialities: Accountancy

Skills

Fcpa • Due Diligence • Sarbanes Oxley Act • Forensic Accounting • Financial Analysis • Auditing • Internal Controls • Internal Audit • Accounting • Fraud • Sec Filings • Risk Management • Corporate Governance • Enterprise Risk Management • Us Gaap • Litigation Support • Business Valuation • Cpa • Anti Kickback Statute • Forensic Analysis • Marketing Compliance • Municipal Budgeting

Industries

Accounting

Resumes

Resumes

Gerard Leeman Photo 1

Global Head Of Compliance, Life Science

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Location:
3 Country Club Rd, Stoneham, MA 02180
Industry:
Accounting
Work:
Merck Kgaa, Darmstadt, Germany
Global Head of Compliance, Life Science

Emd Performance Materials
Compliance Officer, North America

Emd Millipore
Compliance Officer, Americas

Emd Serono, Inc. Apr 2011 - Dec 2016
Associate Director, Compliance

Deloitte Apr 2005 - Apr 2011
Senior Manager - Forensic and Dispute Services
Education:
Bentley University Sep 1994 - May 1998
Bachelors, Bachelor of Science, Accountancy
Skills:
Fcpa
Due Diligence
Sarbanes Oxley Act
Forensic Accounting
Financial Analysis
Auditing
Internal Controls
Internal Audit
Accounting
Fraud
Sec Filings
Risk Management
Corporate Governance
Enterprise Risk Management
Us Gaap
Litigation Support
Business Valuation
Cpa
Anti Kickback Statute
Forensic Analysis
Marketing Compliance
Municipal Budgeting

Publications

Us Patents

Apparatus And Method For Transferring Samples From A Source To A Target

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US Patent:
7534081, May 19, 2009
Filed:
May 24, 2005
Appl. No.:
11/135962
Inventors:
Hans-Jörg Zobel - New York NY, US
Gerard William Leeman - Stoneham MA, US
Amir Porat - Gany-Yehuda, IL
Moshe Gombinsky - Bat-Yam, IL
Assignee:
Festo Corporation - Hauppauge NY
International Classification:
G01N 33/497
US Classification:
41422201, 210695
Abstract:
A control system for transferring a sample from a source vessel to a target vessel generally includes a vessel unit, a primary transfer unit, an x-drive, a y-drive, a z-drive and a control unit for controlling the drives. The vessel unit includes a support plate for supporting the source vessel and the target vessel thereon and the transfer unit includes at least one transfer device for transferring the sample from the source vessel to the target vessel. The x-, y- and z-drives reciprocally translate one of the support plate and the transfer device in a respective x-direction, y-direction and z-direction, wherein the x, y and z directions define a three axis Cartesian coordinate system.

Apparatus And Method For Transferring Samples From A Source To A Target

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US Patent:
7597520, Oct 6, 2009
Filed:
Dec 19, 2005
Appl. No.:
11/311558
Inventors:
Hans-Jörg Zobel - New York NY, US
Gerard William Leeman - Stoneham MA, US
Amir Porat - Gany-Yehuda, IL
Moshe Gombinsky - Bat-Yam, IL
Assignee:
Festo Corporation - Hauppauge NY
International Classification:
G01N 37/497
US Classification:
41422201, 210695
Abstract:
A transfer unit for transferring a sample from a source vessel to a target vessel. The transfer unit includes a transfer device having a pin tip with a central bore terminating at a bottom wall, an actuating element movably disposed in the pin tip bore, an actuator rod for moving the actuating element and a compensating device connected between the actuating element and the actuator rod. The actuator rod moves the actuating element between a first position adjacent the tip bottom wall and a second position away from the bottom wall. Movement of the actuating element causes a sample in proximity to the pin tip to be alternately collected and released from the pin tip. Such movement also defines a stroke length for the actuator rod, wherein the compensating device compensates for any variations in the actuator rod stroke length. The transfer unit further includes a tip ejector for removing the disposable tips from the transfer device and a tip loading station for applying the tips to the transfer device.

Method For Transferring Magnetic Samples From A Source To A Target

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US Patent:
7841824, Nov 30, 2010
Filed:
May 14, 2009
Appl. No.:
12/454227
Inventors:
Hans-Jörg Zobel - New York NY, US
Gerard William Leeman - Stoneham MA, US
Amir Porat - Gany-Yehuda, IL
Moshe Gombinsky - Bat-Yam, IL
Assignee:
Festo Corporation - Hauppauge NY
International Classification:
G01N 33/497
US Classification:
414806, 210695
Abstract:
A control system for transferring a sample from a source vessel to a target vessel generally includes a vessel unit, a primary transfer unit, an x-drive, a y-drive, a z-drive and a control unit for controlling the drives. The vessel unit includes a support plate for supporting the source vessel and the target vessel thereon and the transfer unit includes at least one transfer device for transferring the sample from the source vessel to the target vessel. The x-, y- and z-drives reciprocally translate one of the support plate and the transfer device in a respective x-direction, y-direction and z-direction, wherein the x, y and z directions define a three axis Cartesian coordinate system.

Fluid Power Interlock System

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US Patent:
20020056363, May 16, 2002
Filed:
Oct 25, 2001
Appl. No.:
10/039548
Inventors:
Gerard Leeman - Smithtown NY, US
Frank Langro - Port Washington NY, US
Assignee:
Festo Corporation
International Classification:
F15B011/00
US Classification:
091/508000
Abstract:
A fluid power interlock system and method for providing same including a circuit having a first valve shiftable between a first and second state having an input and a pair of selectively operable first outputs. One of the first outputs is operatively connectable to a first actuator and the other of the first outputs is operatively connected to a second valve shiftable between a first and second state. The second valve has a pair of selectively operable outputs, one of the second valve outputs is operatively connectable to a second actuator, and the other of the second valve outputs is operatively connected to the first valve and provides a pilot signal thereto for permitting the first valve to shift from a first state to a second state. Shifting state of either of the first and second valves interrupts the pilot signal thereby preventing the non actuated valve from being actuated and shifting state. The system may also include a manifold, wherein the first and second valves are secured to the manifold.
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