Johns, PA
Albert D. Johns, Saylorsburg, PA US
Patent application number | Description | Published |
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20080242525 | FORMING DIE ASSEMBLY WITH ENHANCED STOP - A die assembly for producing paperboard pressware includes an obliquely angled, continuous ring, and/or annular stop member between an inner die member and an outer die ring. Increased surface area of contact between stop components provides greater wear resistance, and the angled contact face maintains alignment of the die components. | 10-02-2008 |
Christine Johns, Allison Park, PA US
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20090204538 | USER INTERFACE AND SYSTEM INCLUDING SAME - A graphical user interface including a controller for redistributing funds between a first account and a second account. The controller includes a slidable element positionable over a fixed background element to define a first segment and a second segment of the background element. A length of the first segment is representative of a balance of the first account, and a length of the second segment is representative of a balance of the second account. | 08-13-2009 |
David Johns, Greenville, PA US
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20090153799 | Vision Screener - An article and method for screening vision are described that does not require verbal input from a test person or the test person to maintain a fixed position during the screening. The article includes an image capture device, at least one test light, a processing unit that includes an interpretive program, and a display. The method comprises capturing an image of a person's eyes, verifying the image, studying the image, evaluating the image, and displaying the results. Conveniently, the article and method require no special training by an operator. | 06-18-2009 |
Douglas Martin Johns, Penn Run, PA US
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20080224546 | METHOD TO ANALYZE SYSTEM RECONFIGURATION FOR AUTOMATED ISOLATION OF DISTURBANCES TO THE POWER DISTRIBUTION SYSTEM - A method and system where, by tabulating the known values and parameters of a distribution system and its automated equipment in a specific manner, the automated system reconfiguration can quickly identify and thereby implement the optimal system reconfiguration for service restoration. | 09-18-2008 |
Earl Chrzaszcz Johns, Sewickley, PA US
Patent application number | Description | Published |
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20080259779 | Probe Head With Narrow Read Element - An apparatus includes a storage medium, and a transducer positioned adjacent to the storage medium, wherein the transducer includes a first electrode and a second electrode, with the width of the first electrode being less than the width of the second electrode. A method including: applying a first voltage to a transducer to write data to a storage medium, and applying a second voltage to the transducer to read data from the storage medium, wherein the magnitude of the first voltage is greater than the magnitude of the second voltage. | 10-23-2008 |
20090009906 | Transducer Assembly and Data Storage Device Including the Transducer Assembly - An apparatus includes a storage medium, a transducer positioned adjacent to the storage medium and along an axis, and first and second support members connected to the transducer at positions that are spaced apart in the direction of the axis. | 01-08-2009 |
20090010144 | Transducer Assembly and Data Storage Apparatus Including the Transducer Assembly - An apparatus includes a storage medium, a transducer including an electrode positioned along an axis and having a curved end positioned adjacent to the storage medium, a wear-resistant coating surrounding the electrode, and an actuator for providing relative movement between the storage medium and the transducer. | 01-08-2009 |
20100173176 | Recording Media Having a Nanocomposite Protection Layer and Method of Making Same - An apparatus includes a substrate, a recording layer on the substrate, and a nanocomposite layer on the recording layer, the nanocomposite layer including a wear-resistant material and a solid lubricant material, wherein the atomic percentage of the solid lubricant material in the nanocomposite layer is in a range from about 5% to about 99%. A method of making the apparatus is also provided. | 07-08-2010 |
20120003399 | Recording Media Having a Nanocomposite Protection Layer and Method of Making Same - A method includes: forming a recording layer on a substrate and depositing a nanocomposite layer on the recording layer, the nanocomposite layer including a wear-resistant material and a solid lubricant material, wherein the atomic percentage of the solid lubricant material in the nanocomposite layer is in a range from about 5% to about 99%. | 01-05-2012 |
Edward Holland Johns, Philadelphia, PA US
Patent application number | Description | Published |
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20150288694 | METHOD AND SYSTEM FOR SECURE AUTHENTICATION - A method and system for accessing a resource associated with a resource control entity that includes receiving, by a ledger, a request, corresponding to a user, to access the resource; obtaining, in response to the request, user metadata; sending to the user a ledger authentication token, which a credential application uses to verify that the ledger is a valid ledger; receiving, from the credential application, a public key encrypted payload including signature entries; decrypting, by the ledger, the encrypted payload using a payload secret key to obtain the signature entries and other user data; obtaining results of a verification by successively verifying each of the signature entries until a scoring threshold associated with the resource is met, and transmitting, to the resource control entity, a notification including the results of the verification, which the resource control entity uses to determine whether to grant the user access to the resource. | 10-08-2015 |
Philip Jake Johns, Pittsburgh, PA US
Patent application number | Description | Published |
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20100218624 | DEVICE FOR PIPE INSPECTION AND METHOD OF USING SAME - A device. The device includes a sensor portion and a chassis portion. The sensor portion includes a plurality of sensing devices. The chassis portion is connected to the sensor portion and includes a first track and a second track. The second track is positioned adjacent the first track. The first and second tracks cooperate to substantially cover an entire width of the chassis portion. | 09-02-2010 |
20130327162 | DEVICE FOR PIPE INSPECTION AND METHOD OF USING SAME - A device is described that includes a sensor portion and a chassis portion. The sensor portion includes a plurality of sensing devices. The chassis portion is connected to the sensor portion and includes a first track and a second track. The second track is positioned adjacent the first track. The first and second tracks cooperate to substantially cover an entire width of the chassis portion. | 12-12-2013 |
20130332088 | DEVICE FOR PIPE INSPECTION AND METHOD OF USING SAME - A device is described that includes a sensor portion and a chassis portion. The sensor portion includes a plurality of sensing devices. The chassis portion is connected to the sensor portion and includes a first track and a second track. The second track is positioned adjacent the first track. The first and second tracks cooperate to substantially cover an entire width of the chassis portion. | 12-12-2013 |
Robert A. Johns, Kennett Square, PA US
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20130276671 | PROCESS FOR CONTROLLING PARTICLE SIZE AND SILICA COVERAGE IN THE PREPARATION OF TITANIUM DIOXIDE - The present disclosure relates to a vapor phase process for producing a substantially anatase-free titanium dioxide pigment comprising reacting a vaporous titanium dioxide precursor and an oxygen containing gas in a reactor; and introducing a mixture of liquid silicon halide and liquid titanium dioxide precursor into the reactor at a point downstream of the addition of the vaporous titanium dioxide precursor, and the oxygen containing gas, and at a process temperature of about 1200° C. to about 1600° C. to produce titanium dioxide particles that are substantially encapsulated in silicon dioxide. | 10-24-2013 |
20130284067 | PROCESS FOR CONTROLLING PARTICLE SIZE AND ADDITIVE COVERAGE IN THE PREPARATION OF TITANIUM DIOXIDE - The present disclosure relates to a vapor phase process for producing a substantially anatase-free titanium dioxide pigment comprising: reacting a vaporous titanium dioxide precursor and an oxygen containing gas in a reactor; and introducing a mixture of liquid titanium dioxide precursor and a liquid or finely divided solid compound comprising a element selected from the group consisting of Li, Be, B, Na, Mg, Al, P, 5, K, Ca, Sc, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Ge, As, Se, Rb, Sr, Y, Zr, Nb, Mo, Ru, Rh, Pd, Ag, Cd, In, Sn, Sb, Te, Cs, Ba, La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, Hf, Ta, W, Re, Os, Ir, Pt, Au, Hg, Tl, and Pb, into the reactor at a point downstream of the addition of the vaporous titanium dioxide precursor, and the oxygen containing gas, and at a process temperature of about 1200 ° C. to about 1600 CC to produce titanium dioxide particles that are coated by the oxide formed from the element. | 10-31-2013 |