1. A method for modifying an information handling system (IHS) comprising:
providing a user trusted component (TC) on the IHS; and
providing a third party TC on the IHS.
2. The method of claim 1, further comprising:
establishing a third party foundation of trust (FOT) on the IHS using the third party TC.
3. The method of claim 2, wherein the TC is a trusted platform module (TPM) and the FOT is a root of trust (ROT).
4. The method of claim 1, wherein the TC is selected from the group consisting of a subscriber identity module (SIM), software module secure flash and smart card.
5. The method of claim 1, further comprising establishing third party ownership of the third party TC.
6. The method of claim 5, wherein establishing third party ownership of the TC further comprises creating data comprising at least one selected from the group consisting of a personal identification number (PIN), a private key, a public keys an endorsement key and presence indicator.
7. The method of claim 2: further comprising:
establishing a derivative FOT from the third party FOT.
8. The method of claim 1, further comprising:
receiving data at the third party TC from outside the IHS a remote location managing the third party TC.
9. The method of claim 1, further comprising:
receiving data at the IHS resetting the third party TC wherein the data is sent from a source selected from the group consisting of an IHS user, a third party vendor, and a third party trusted relationship manager.
10. An information handling system (IHS) comprising:
a memory on the IHS;
a processor on the IHS in data communication with the memory;
a user trusted component (TC) on the IHS for establishing a user owned foundation of trust (FOT); and
a third party TC on the IHS for establishing a third party owned FOT.
11. The system of claim 10, wherein the third party TC is a trusted platform module (TPM) and the user owned FOT and third party owned FOT each are a root of trust (ROT).
12. The system of claim 10, wherein the user TC and the third party TC are each selected from the group consisting of a SIM, software module, secure flash, and smart card.
13. The system of claim 10, wherein the third party has exclusive access to the third party TC.
14. The system of claim 10, wherein the third party owned FOT is a root of trust (ROT) that receives data establishing third party ownership.
15. The system of claim 14, wherein the data establishing third party ownership further comprises data comprising at least one selected from the group consisting of a personal identification code, private key, public key, endorsement key and presence indicator.
16. A computer readable medium having a data structure stored thereon, the data structure comprising;
a first data field for storing data indicative of an IHS identifier; and
a second data field for storing data indicative of a third party FOT; and
a third data field for storing data indicative of a user FOT.
17. The data structure of claim 16, further comprising:
a fourth data field for storing data indicative of a derivative FOT.
18. A computer readable medium containing a computer program, the computer program comprising:
instructions to establish a user foundation of trust (FOT) on an information handling system (IHS) using a user trusted component (TC); and
instructions to establish a third party FOT on the IHS using a third party TC.
19. The computer readable medium of claim 18, the computer program further comprising:
instructions to establish third party ownership of the third party TC.
20. A method for operating on data an IHS having a user owned foundation of trust (FOT) and a third party owned FOT the method comprising:
sending data to the HIS wherein the data is controlled by the third party FOT; and
operating on the data using the third party owned FOT.
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 pixel structure, comprising:
a data line and a scan line;
at least one active device electrically connected with the data line and the scan line, and each active device comprising a gate, a channel layer, a source, and a drain;
a first auxiliary electrode electrically insulated from the active device; and
a light emitting device disposed above the first auxiliary electrode, wherein the light emitting device comprises:
a first electrode layer electrically connected with the first auxiliary electrode;
a light emitting layer disposed on the first electrode layer; and
a second electrode layer disposed on the light emitting layer, wherein the second electrode layer is electrically connected with the active device.
2. The pixel structure according to claim 1, further comprising a first insulating layer covering the active device and the first auxiliary electrode, and the first electrode layer of the light emitting device being disposed on the first insulating layer, wherein the first insulating layer has a first contact window opening that exposes the first auxiliary electrode, and the first electrode layer is electrically connected with the first auxiliary electrode via the first contact window opening.
3. The pixel structure according to claim 2, further comprising a second insulating layer covering the first insulating layer and the first electrode layer of the light emitting device, and the second electrode layer of the light emitting device being disposed on the second insulating layer, wherein the second insulating layer has an opening that exposes the first electrode layer, and the light emitting layer of the light emitting device is disposed in the opening.
4. The pixel structure according to claim 3, wherein the first insulating layer and the second insulating layer further comprise a second contact window opening that exposes a portion of the active device, and the second electrode layer of the light emitting device is electrically connected with the active device via the second contact window opening.
5. The pixel structure according to claim 1, wherein the first auxiliary electrode is a single electrode layer.
6. The pixel structure according to claim 1, wherein the first auxiliary electrode comprises:
a bottom electrode layer; and
a top electrode layer electrically connected with the bottom electrode layer, wherein the first electrode layer of the light emitting device is electrically connected with the top electrode layer of the first auxiliary electrode.
7. The pixel structure according to claim 6, wherein the bottom electrode layer and the gate of the active device belong to the same layer.
8. The pixel structure according to claim 6, wherein the top electrode layer and the source and the drain of the active device belong to the same layer.
9. The pixel structure according to claim 1, further comprising an isolating structure disposed around the second electrode layer of the light emitting device, wherein a gap exists between the second electrode layer and the isolating structure.
10. The pixel structure according to claim 1, further comprising a second auxiliary electrode electrically insulated from the active device and disposed at a side of the light emitting device, wherein the second auxiliary electrode is electrically connected with the first electrode layer of the light emitting device.
11. The pixel structure according to claim 10, wherein the second auxiliary electrode and the second electrode layer of the light emitting device belong to the same layer, and the second auxiliary electrode and the second electrode layer of the light emitting device are electrically insulated from each other.
12. The pixel structure according to claim 1, wherein the light emitting device is a top-emission organic electroluminescent device.
13. The pixel structure according to claim 1, wherein a vertical projection of the light emitting layer of the light emitting device at least partially overlaps the first auxiliary electrode.