Patent classifications
B41F1/16
SECURITY SYMBOLS PRINTED ON A SUBSTRATE
A substrate is printed with front side and back side markings. The front side when viewed with reflected light includes: a first marking printed with a first gradient of two colors; a second marking printed with a second gradient of two colors; a first symbol printed with a third gradient of two colors; a second symbol printed with a fourth gradient of two colors; a third symbol printed with a fifth gradient of two colors; and a fourth symbol printed with a sixth gradient of two colors. The back side when viewed with reflected light includes: a third marking printed with the fourth gradient; a fourth marking printed with the third gradient; a fifth symbol printed with the second gradient; a sixth symbol printed with the first gradient; a seventh symbol printed with the sixth gradient; and an eighth symbol printed with the fifth gradient.
SUBSTRATE OF OFFSET PRINTING UTILIZING IMAGE MOVEMENT
A substrate is printed with front side and back side markings in a first color ink. The front side when viewed with reflected light includes a first marking printed in a first saturation and a first symbol printed in the first saturation. The back side when viewed with reflected light includes: a second marking printed in a second saturation; a second symbol printed in the second saturation; a third marking printed in the first saturation; and a third symbol printed in the first saturation. The first marking, the second marking, and the third marking are printed to provide an interlocking pattern of low saturation color and high saturation color when viewed with transmitted light. The second symbol is visible, and the first symbol and the third symbol are visible and indistinguishable, when viewed with transmitted light.
SUBSTRATE OF OFFSET PRINTING UTILIZING IMAGE MOVEMENT
A substrate is printed with front side and back side markings in a first color ink. The front side when viewed with reflected light includes a first marking printed in a first saturation and a first symbol printed in the first saturation. The back side when viewed with reflected light includes: a second marking printed in a second saturation; a second symbol printed in the second saturation; a third marking printed in the first saturation; and a third symbol printed in the first saturation. The first marking, the second marking, and the third marking are printed to provide an interlocking pattern of low saturation color and high saturation color when viewed with transmitted light. The second symbol is visible, and the first symbol and the third symbol are visible and indistinguishable, when viewed with transmitted light.
Efficient distributed network imaging of instant lottery tickets
A computer-implemented method and system are provided for enabling digital imaging of both secure and non-secure areas of instant lottery tickets on demand across a geographically diverse network. Instant lottery tickets produced with this system accommodate smaller volume print runs, process color, and a greater level of customization.
Efficient distributed network imaging of instant lottery tickets
A computer-implemented method and system are provided for enabling digital imaging of both secure and non-secure areas of instant lottery tickets on demand across a geographically diverse network. Instant lottery tickets produced with this system accommodate smaller volume print runs, process color, and a greater level of customization.
LIGHT IRRADIATION MODULE
A light irradiation module includes: a substrate; n wiring patterns (n is an integer of 2 or more) on the substrate; and LED elements. Each wiring pattern includes: first to third strip-shaped portions; a first connecting portion connecting the first and second strip-shaped portions; and a second connecting portion connecting the second and third strip-shaped portions. The first strip-shaped portion of an (i+1)-th wiring pattern (i is an integer of 1 to n?1) is disposed between the second and third strip-shaped portions of an i-th wiring pattern. The LED elements are disposed on the second and third strip-shaped portions of each wiring pattern. One electrode of each LED element is connected to the second or third strip-shaped portion immediately thereunder. Other electrodes of the LED elements on the second and third strip-shaped portions of the i-th wiring pattern are connected to the first strip-shaped portion of the (i+1)-th wiring pattern.
Microprinting techniques for printing security symbols on a substrate
Examples are directed toward anticounterfeit markings printed on a substrate. A method includes determining with a microprocessor running computer executable code non-transitorily stored on tangible computer readable media that: a first microprinting appears on a front side of the substrate as front side markings of first portions of a plurality of characters having dimensions in a micrometer range when viewed from the front side with reflected light, a second microprinting appears on a back side of the substrate as back side markings of second portions of the plurality of characters having dimensions in the micrometer range when viewed from the back side with reflected light, and the first microprinting and the second microprinting in combination appear as microprinting of whole characters of the plurality of characters when viewed with transmitted light.
Microprinting techniques for printing security symbols on a substrate
Examples are directed toward anticounterfeit markings printed on a substrate. A method includes determining with a microprocessor running computer executable code non-transitorily stored on tangible computer readable media that: a first microprinting appears on a front side of the substrate as front side markings of first portions of a plurality of characters having dimensions in a micrometer range when viewed from the front side with reflected light, a second microprinting appears on a back side of the substrate as back side markings of second portions of the plurality of characters having dimensions in the micrometer range when viewed from the back side with reflected light, and the first microprinting and the second microprinting in combination appear as microprinting of whole characters of the plurality of characters when viewed with transmitted light.
Security symbols printed on a substrate
A substrate is printed with front side and back side markings. The front side when viewed with reflected light includes: a first marking printed with a first gradient of two colors; a second marking printed with a second gradient of two colors; a first symbol printed with a third gradient of two colors; a second symbol printed with a fourth gradient of two colors; a third symbol printed with a fifth gradient of two colors; and a fourth symbol printed with a sixth gradient of two colors. The back side when viewed with reflected light includes: a third marking printed with the fourth gradient; a fourth marking printed with the third gradient; a fifth symbol printed with the second gradient; a sixth symbol printed with the first gradient; a seventh symbol printed with the sixth gradient; and an eighth symbol printed with the fifth gradient.
Security symbols printed on a substrate
A substrate is printed with front side and back side markings. The front side when viewed with reflected light includes: a first marking printed with a first gradient of two colors; a second marking printed with a second gradient of two colors; a first symbol printed with a third gradient of two colors; a second symbol printed with a fourth gradient of two colors; a third symbol printed with a fifth gradient of two colors; and a fourth symbol printed with a sixth gradient of two colors. The back side when viewed with reflected light includes: a third marking printed with the fourth gradient; a fourth marking printed with the third gradient; a fifth symbol printed with the second gradient; a sixth symbol printed with the first gradient; a seventh symbol printed with the sixth gradient; and an eighth symbol printed with the fifth gradient.