1460735607-720c8a96-bd3b-44c0-b2af-174e7e156cdc

1. An integrated circuit package system comprising:
a support structure including an electrical contact;
a solder mask over the support structure, the solder mask including a solder mask flange, the solder mask flange directly on a support structure first surface;
an integrated circuit over the support structure; and
encapsulant over the integrated circuit and in contact with the solder mask flange.
2. The system as claimed in claim 1 further comprising an encapsulant flash adjacent the encapsulant and on the solder mask.
3. The system as claimed in claim 1 wherein the solder mask is around the integrated circuit and the electrical contact.
4. The system as claimed in claim 1 wherein the solder mask flange faces the encapsulant.
5. The system as claimed in claim 1 wherein the solder mask flange is in contact with the encapsulant.

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

What is claimed:

1. A method for archiving data stored in a plurality of linked web pages, comprising:
traversing the plurality of web pages by recursively following the links to identify each of the individual web pages to be archived;
making a list of web pages to be archived;
sequentially retrieving the contents of each web page on the list;
forming a digital image of the visible content of each web page; and
creating a visually perceptible archival copy of each web page from the digital image on a durable, readable medium.
2. The method for archiving data stored in a plurality of linked web pages of claim 1 in which the step of making a list of web pages to be archived comprises making a list of the URL’s of the pages to be archived.
3. The method for archiving data stored in a plurality of linked web pages of claim 1 in which making a list of web pages to be archived comprises selecting individual web pages from the identified web pages.
4. The method for archiving data stored in a plurality of linked web pages of claim 1 in which making a list of web pages to be archived comprises adding an unique identifier to each selected individual web page from the identified web pages.
5. The method for archiving data stored in a plurality of linked web pages of claim 1 in which making a list of web pages to be archived comprises adding a second identifier to selected groups of individual web pages from the identified web pages.
6. The method for archiving data stored in a plurality of linked web pages of claim 3 in which selecting individual web pages from the identified web pages comprises presenting a list of identified web pages to a user and receiving an indication from the user to include or exclude each identified web page from the list of web pages to be archived.
7. The method for archiving data stored in a plurality of linked web pages of claim 1 further comprising the step of storing the visually perceptible archival copy of each web page in a durable, human readable medium.
8. The method for archiving data stored in a plurality of linked web pages of claim 7 further comprising the step of retrieving a digital image from the visually perceptible archival copy of each web page.
9. A website digital archiver for archiving data stored in a plurality of linked web pages, comprising:
software that comprises steps of:
traversing the plurality of web pages by recursively following the links to identify each of the individual web pages to be archived;
making a list of web pages to be archived;
sequentially retrieving the contents of each web page on the list; and
forming a digital image of the visible content of each web page.
10. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 9 further comprising a CD writer that allows the user to write the image on a CD for short term storage.
11. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 9 further comprising a microfilm writer that allow the user to write electronic images.
12. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 10 further wherein the microfilm writer is a microfiche writer.
13. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 12 in which the electronic file is a TIFF file.
14. A website digital archiver for archiving data stored in a plurality of linked web pages, of claim 12 further comprising a storage writer to create the electronic file to a visually perceptible archival copy of each web page from the digital image for archival storage.
15. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 14 in which the storage is on a durable, human readable medium such as microfilm.
16. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 15, further comprising a reader to retrieve a digital image from the visually perceptible archival copy of each web page on the durable, human readable medium.
17. A website digital archiver for archiving data stored in a plurality of linked web pages of claim 16 in which the digital image is a TIFF file.

1460735600-753fa29d-7662-4294-bb0e-67093de2bde2

1. A sawing blade comprising flat parallel sides and peripheral forward-positioned teeth as cutting elements that project laterally beyond the plane of the sides of the blade, wherein the improvement being distinct disconnected tiers, spaced apart from one another of finishing elements projecting from both sides of the blade having flat working surfaces all rubbing incrementally tier by tier against the entire kerf as the sawing action of the blade thrusts them through, and wherein each tier consist of a plurality of separately spaced finishing elements and disjoins the material addressed, with
said tiers being distinct from the peripheral forward positioned cutting elements, with
said tiers parallel to and stepping back from the plane of the continuum of the peripheral forward positioned cutting elements, with
said tiers in their receding progression from the peripheral forward positioned cutting elements projecting laterally from the center plane of the saw blade slightly further than any previous lateral projection in tier by tier increments, with
said finishing elements having similarly textured working surfaces on any individual tier, with
said tiers having dissimilar working surfaces relative to each other, with
said tiers in their receding progression from the peripheral forward positioned cutting elements having working surfaces of coarse abrasive on the first tier and progressing tier by tier to surfaces of fine abrasive and to surfaces that are smooth, with
said tiers, each in turn bearing against the entire kerf on its side of the blade, performing a distinct step in a collective finishing process, whereby
a cutting process using said sawing blade renders both newly cut surfaces with flat, abraded and burnished planes parallel to each other.
2. The sawing blade as recited in claim 1, wherein said finishing elements are elemental part of the saw blade created with the blade as it was machined.
3. The sawing blade as recited in claim 1, wherein said finishing elements are made of the same material as the saw blade.
4. The sawing blade as recited in claim 1, wherein said finishing elements are attached to the saw blade by means selected from the group consisting of welding, and brazing, and riveting, and screwing.
5. The sawing blade as recited in claim 1, wherein said finishing elements comprise design characteristics selected from the group consisting of flared sides, and square edged sides, and beveled sides.
6. The sawing blade as recited in claim 1, wherein the working surfaces of said finishing elements comprise design characteristics selected from the group consisting of, surfaced with abrasive elements, and smooth surfaced.

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 32-way valve for controlling the injection of fuel in a common rail injection system of an internal combustion engine, having a control piston (44) guided in a housing (53), in which the control piston (44), in a first switching position, opens a hydraulic connection between an injector (7) and a fuel return (42), and in a second switching position the control piston (44) opens a hydraulic connection between the injector (7) and a high-pressure fuel reservoir (3), and means for force balancing the control piston (44, 70), wherein the control piston (44, 70) has two guides, with a larger guide diameter and a smaller guide diameter; wherein the control piston (44, 70) has a control edge cooperating with the smaller guide diameter; wherein a blind bore (50, 62) is embodied in the end, remote from the control edge, of the control piston (44, 70); wherein the blind bore (50, 62) can be subjected to pressure via a bore (51); and wherein a throttle is provided in the bore (51).
2. The 32-way valve claim 1, further comprising an additional piston (52) guided in the blind bore (50, 62).
3. The 32-way valve of claim 2, further comprising a circumferential groove (73) embodied on the control piston (70), the groove (73), in the assembled state of the 32-way valve, being disposed in the region of at least one fuel return opening (68).
4. The 32-way valve of claim 2, wherein the control piston (44, 70) comprises a valve seat (46) whose diameter is equivalent to the larger guide diameter.
5. The 32-way valve of claim 2, wherein the control piston (44, 70) is prestressed by a closing spring (45).
6. The 32-way valve of claim 2, wherein the control piston (44, 70) is actuated via a piezoelectric actuator.
7. The 32-way valve of claim 1, further comprising a circumferential groove (73) embodied on the control piston (70), the groove (73), in the assembled state of the 32-way valve, being disposed in the region of at least one fuel return opening (68).
8. The 32-way valve of claim 7, wherein the control piston (44, 70) comprises a valve seat (46) whose diameter is equivalent to the larger guide diameter.
9. The 32-way valve of claim 7, wherein the control piston (44, 70) is prestressed by a closing spring (45).
10. The 32-way valve of claim 7, wherein the control piston (44, 70) is actuated via a piezoelectric actuator.
11. The 32-way valve of claim 1, wherein the control piston (44, 70) comprises a valve seat (46) whose diameter is equivalent to the larger guide diameter.
12. The 32-way valve of claim 11, wherein the control piston (44, 70) is prestressed by a closing spring (45).
13. The 32-way valve of claim 1, wherein the control piston (44, 70) is prestressed by a closing spring (45).
14. The 32-way valve of claim 1, wherein the control piston (44, 70) is actuated via a piezoelectric actuator.
15. The 32-way valve of claim 1, combination with an injection nozzle or a nozzle holder.