1460736296-4ab996d8-4da9-4fdb-ad3c-753c55c1fb20

1. A transport watercraft comprising:
a transport floor connected to the transport watercraft;
an elevated drilling floor integrally connected to the transport floor; supporting a derrick comprising at least two rails for supporting a traveling top drive supported by a crown block connected to the derrick, a control panel comprising a power throttle for operating the top drive, a slip bowl for supporting drilling tubulars, and a hydraulic wrench for making up an breaking out the drilling tubulars generally in line with the slip bowl, wherein the elevated drilling floor has a height sufficient to permit the installation of well control equipment between the drilling floor and the transport watercraft;
a pipe-handler having at least two pipe grippers connected to the drilling floor for transporting the drilling tubulars from a horizontal storage position to the derrick for engagement with the traveling top drive; and
a moveable mat for supporting the transport floor while drilling.
2. The transport watercraft of claim 1, wherein the watercraft is a barge.
3. The transport watercraft of claim 2, wherein the barge comprises a propulsion system.
4. The transport watercraft of claim 1, wherein the transport floor further comprises an opening for receiving a hydraulic pipe handler when the pipe-handler raises pipe to the top drive for drilling.
5. The transport watercraft of claim 1, further comprising two control panels for allowing two people to simultaneously control a hydraulic system.
6. The transport watercraft of claim 1, further comprising at least one air caliper brake secured to the transport floor for additionally controlling movement of the top drive along the rails of the derrick.
7. The transport watercraft of claim 6, wherein the air caliper brake is air cooled.
8. The transport watercraft of claim 1, wherein the control panel further comprises an emergency all stop for stopping the top drive, the hydraulic wrench, and a hydraulic pipe handler.
9. The transport watercraft of claim 8, wherein the all stop control is a button, a switch, or a fuse.
10. The transport watercraft of claim 1, further comprising an auxiliary control panel allowing two people to simultaneously control a hydraulic system.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A cover lens assembly, comprising:
a base plate;
a viewing-area laminate structure formed on the base plate and comprising:
a sensing layer distributed on the base plate, wherein the sensing layer comprises a plurality of first-axis traces and a plurality of second-axis traces paced apart from the first-axis traces;
a plurality of conductive wires, wherein two ends of each of the conductive wires are electrically connected to the second-axis traces separately;
an insulating layer disposed adjoining the conductive wires; and
a protective layer covering the sensing layer, the insulating layer, and the conductive wire; and
a non-viewing-area laminate structure formed on the base plate and adjacent to the viewing-area laminate structure, wherein the non-viewing-area laminate structure comprises:
a microstructure layer having a first side and an opposite second side, wherein the microstructure layer has a plurality of prismatic structures and the base plate is adjacent to the first side of the microstructure layer; and
a shielding layer covering the second side of the microstructure layer.
2. The cover lens assembly according to claim 1, further comprising an adhesive layer provided between the base plate and the microstructure layer.
3. The cover lens assembly according to claim 2, further comprising a metal layer provided between the adhesive layer and the microstructure layer.
4. The cover lens assembly according to claim 2, wherein the adhesive layer comprises an optically clear adhesive.
5. The cover lens assembly according to claim 1, wherein the microstructure layer comprises a photo-curable or a thermally curable material.
6. The cover lens assembly according to claim 5, wherein the prismatic structures are formed by embossing processing.
7. The cover lens assembly according to claim 1, further comprising a surface treated thin film layer provided between the base plate and the microstructure layer.
8. The cover lens assembly according to claim 7, wherein the microstructure layer comprises a metallic material.
9. The cover lens assembly according to claim 8, wherein the prismatic structures are formed by laser holographic processing.
10. The cover lens assembly according to claim 1, wherein the material of the base plate is selected from the group consisting of glass, polyethylene terephthalate (PET), polycarbonate (PC), poly-methyl-methacrylate (PMMA), and silicon crystal.
11. A cover lens assembly, comprising:
a base plate;
a viewing-area laminate structure formed on the base plate and comprising:
a sensing layer distributed on the base plate, wherein the sensing layer comprises a plurality of first-axis traces and a plurality of second-axis traces spaced apart from the first-axis traces;
a plurality of conductive wires, wherein two ends of each of the conductive wires are electrically connected to the second-axis traces separately;
an insulating layer disposed adjoining the conductive wires; and
a protective layer covering the sensing layer, the insulating layer, and the conductive wire; and
a non-viewing-area laminate structure formed on the base plate and adjacent to the viewing-area laminate structure, wherein the non-viewing-area laminate structure comprises:
an adhesive layer formed on the base plate;
a metal layer formed on the adhesive layer;
a microstructure layer formed on the metal layer and having a first side and an opposite second side, wherein the microstructure layer comprises a plurality of prismatic structures and the metal layer touches the first side of the microstructure layer; and
a shielding layer covering the second side of the microstructure layer.
12. A cover lens assembly, comprising:
a base plate;
a viewing-area laminate structure formed on the base plate and comprising:
a sensing layer distributed on the base plate, wherein the sensing layer comprises a plurality of first-axis traces and a plurality of second-axis traces spaced apart from the first-axis traces;
a plurality of conductive wires, wherein two ends of each of the conductive wires are electrically connected to the second-axis traces separately;
an insulating layer disposed adjoining the conductive wires; and
a protective layer covering the sensing layer, the insulating layer, and the conductive wire; and
a non-viewing-area laminate structure formed on the base plate and adjacent to the viewing-area laminate structure, wherein the non-viewing-area laminate structure comprises:
a surface treated thin film layer formed on the base plate;
a microstructure layer formed on the surface treated thin film layer and having a first side and an opposite second side, wherein the microstructure layer comprises a plurality of prismatic structures and the surface treated thin film layer touches the first side of the microstructure layer; and
a shielding layer covering the second side of the microstructure layer.