1461171039-984920d5-07d1-4603-9f79-010b3fade4eb

1. A seed of soybean variety D5123854, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
2. A plant of soybean variety D5123854, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
3. A plant part of the plant of claim 2.
4. The plant part of claim 3, further defined a protoplast, ovule, cell, pollen grain, embryo, cotyledon, hypocotyl, meristem, root, pistil, anther, flower, stem, pod or petiole.
5. A tissue culture of regenerable cells of soybean variety, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
6. The tissue culture of claim 5, wherein the regenerable cells are from embryos, meristematic cells, pollen, leaves, roots, root tips, anther, pistil, flower, seed, boll or stem.
7. A soybean plant regenerated from the tissue culture of claim 5, wherein the regenerated soybean plant expresses all of the physiological and morphological characteristics of the soybean variety D5123854, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
8. A method of producing soybean seed, comprising crossing a plant of soybean variety D5123854 with itself or a second soybean plant, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
9. The method of claim 8, further defined as a method of preparing hybrid soybean seed, comprising crossing a plant of soybean variety D5123854 with a second, distinct soybean plant, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
10. An F1 hybrid seed produced by the method of claim 9.
11. A method of producing a plant of soybean variety D5123854 comprising an added desired trait, the method comprising introducing a transgene conferring the desired trait into a plant of soybean variety D5123854, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
12. The method of claim 11, wherein the desired trait is selected from the group consisting of male sterility, herbicide tolerance, insect or pest resistance, disease resistance, modified fatty acid metabolism, modified carbohydrate metabolism and modified soybean fiber characteristics.
13. The method of claim 12, wherein the desired trait is herbicide tolerance and the tolerance is conferred to an herbicide selected from the group consisting of glyphosate, sulfonylurea, imidazalinone, dicamba, glufosinate, phosphinothricin, phenoxy proprionic acid, cycloshexone, triazine, benzonitrile and broxynil.
14. The method of claim 11, wherein the desired trait is insect resistance and the transgene encodes a Bacillus thuringiensis (Bt) endotoxin.
15. The method of claim 12, wherein the desired trait is modified fatty acid metabolism.
16. A plant produced by the method of claim 11.
17. A method of introducing a single locus conversion into soybean variety D5123854 comprising:
(a) crossing a plant of soybean variety D5123854 with a second plant comprising a desired single locus to produce F1 progeny plants, representative seed of said soybean variety having been deposited under ATCC Accession No. ______;
(b) selecting at least a first progeny plant from step (a) that comprises the single locus to produce a selected progeny plant;
(c) crossing the selected progeny plant from step (b) with a plant of soybean variety D5123854 to produce at least a first backcross progeny plant that comprises the single locus; and
(d) repeating steps (b) and (c) with the selected backcross progeny plant from step (d) used in place of the first progeny plant of step (b) during said repeating, wherein steps (b) and (c) are repeated until at least a first backcross progeny plant is produced comprising the single locus and the physiological and morphological characteristics of soybean variety D5123854 when grown in the same environmental conditions.
18. The method of claim 17, wherein the single locus confers a trait selected from the group consisting of male sterility, herbicide tolerance, insect or pest resistance, disease resistance, modified fatty acid metabolism, and modified carbohydrate metabolism.
19. The method of claim 18, wherein the trait is tolerance to an herbicide selected from the group consisting of glyphosate, sulfonylurea, imidazalinone, dicamba, glufosinate, phenoxy proprionic acid, cycloshexone, triazine, benzonitrile and broxynil.
20. The method of claim 18, wherein the trait is insect resistance and the insect resistance is conferred by a transgene encoding a Bacillus thuringiensis endotoxin.
21. The method of claim 18, wherein the trait is modified fatty acid metabolism.
22. A plant of soybean variety D5123854, further comprising a single locus conversion, representative seed of said soybean variety having been deposited under ATCC Accession No. ______.
23. A method of producing an inbred soybean plant derived from the soybean variety D5123854, the method comprising the steps of:
(a) preparing a progeny plant derived from soybean variety D5123854 by crossing a plant of the soybean variety D5123854 with a soybean plant of a second variety, representative seed of said soybean variety having been deposited under ATCC Accession No. ______;
(b) crossing the progeny plant with itself or a second plant to produce a seed of a progeny plant of a subsequent generation;
(c) growing a progeny plant of a subsequent generation from said seed and crossing the progeny plant of a subsequent generation with itself or a second plant; and
(d) repeating steps (b) and (c) until an inbred soybean plant derived from the soybean variety D5123854 is produced.
24. A method of producing a commodity plant product comprising obtaining the plant of claim 2 or a part thereof and producing said commodity plant product therefrom.
25. The method of claim 24, wherein the commodity plant product is protein concentrate, protein isolate, soybean hulls, meal, flour or oil.

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 method for use in a mobile station for controlling transmit power levels in a wireless network, the method comprising:
transmitting capability information of the mobile station that includes an indicator that indicates support for transmit power control by the mobile station;
receiving a message from another mobile station associated with the wireless network, wherein the message includes a field that indicates a transmit power change; and
adjusting a transmit power level of the mobile station based on the message.
2. The method of claim 1 wherein the transmitting includes at least one of transmitting via broadcast, multicast, or unicast, and wherein the transmitting further includes transmitting in a solicited manner or an un-solicited manner.
3. The method of claim 1 wherein the transmitting is performed during an association process or an authentication process.
4. The method of claim 1 wherein the transmitting is performed during a beacon interval or a probe response process.
5. The method of claim 1 wherein the transmitting includes transmitting a directed special purpose per-link message including the capability information or a multi-hop message including the power capability information.
6. The method of claim 1 wherein the capability information includes at least one of transmission power step size information, receive power step size information, operational mode information, bandwidth information, or frequency band information.
7. The method of claim 6, wherein the transmission power step size information includes minimum transmission power information, maximum transmission power information, or adjustment step size settings.
8. The method of claim 6, wherein the receive power step size information includes minimum receive power information, maximum receive power information, receive power adjustment step size settings, receive power sensitivity level information, or clear channel assessment (CCA) thresholds settings.
9. The method of claim 6, wherein the frequency band information includes a number of simultaneously operable bands or sub-bands.
10. The method of claim 1 wherein the receiving includes receiving an allowed power setting information by at least one of a broadcast message, a multicast message, or a unicast message and the receiving includes receiving in a solicited manner or an un-solicited manner.
11. The method of claim 1 wherein the receiving includes receiving an allowed power setting information in a BEACON frame or a PROBE RESPONSE frame.
12. The method of claim 1 wherein the receiving includes receiving an allowed power setting information in an ASSOCIATION or an AUTHENTICATION frame.
13. The method of claim 1 wherein the receiving includes receiving an allowed power setting information in a special purpose per-link frame or a multi-hop ALLOWED POWER SETTING frame.
14. The method of claim 1 wherein an allowed power setting information includes at least one of power master (PM) information, operational mode information, frequency band information, transmission power information, reception power information, clear channel assessment threshold information, timing information, measurement information, silent period information, or offset information.
15. The method of claim 1 wherein an allowed power setting information is associated with at least one of a network, a link, a path, a node, or a radio interface.
16. The method of claim 1 wherein an allowed power setting information includes absolute values, relative values, or a combination of absolute values and relative values.
17. The method of claim 1, further comprising:
establishing a peer-to-peer relationship with the other mobile station associated with the wireless network.
18. The method of claim 1, further comprising:
establishing a master-slave relationship with the other mobile station associated with the wireless network.
19. The method of claim 1 further comprising:
periodically receiving updated allowed power setting information.
20. The method of claim 1, further comprising:
transmitting a request for measurements regarding at least one of power settings, perceived signal-to-noise ratio (SNR), link margin values, perceived interference power, or channel busy times.
21. The method of claim 1 wherein the other mobile station associated with the wireless network is a power master (PM).
22. The method of claim 21 wherein the PM is identified as part of an initial set-up procedure.
23. The method of claim 1 wherein the mobile station is a power master (PM).
24. The method of claim 23 wherein the PM is identified as part of an initial set-up procedure.
25. The method of claim 1 wherein the transmitting includes transmitting at least one of a layer 2 frame, a layer 2 information element, a higher layer packet, or a higher layer information element.
26. The method of claim 1, further comprising:
transmitting a plurality of statistics and feedback to a controlling entity.
27. The method of claim 26, wherein the plurality of statistics include at least one of current TPC setting information, mode information, bandwidth information, simultaneous channel information, or channel statistics information.
28. A mobile station for use in a wireless network, the mobile station comprising:
a transmitter configured to transmit capability information of the mobile station that includes an indicator that indicates support for transmit power control by the mobile station;
a receiver configured to receive a message from another mobile station associated with the wireless network, wherein the message includes a field that indicates a transmit power change; and
a processor configured to adjust a transmit power level of the mobile station based on the message.
29. The mobile station of claim 28, wherein the transmitter is further configured to transmit capability information by at least one of a broadcast message, multicast message, or unicast message, and wherein the transmitter is further configured to transmit in a solicited manner or an un-solicited manner.
30. The mobile station of claim 28, wherein the transmitter is further configured to transmit during an association process or an authentication process.
31. The mobile station of claim 28, wherein the transmitter is further configured to transmit during a beacon interval or a probe response process.
32. The mobile station of claim 28, wherein the processor is further configured to transmit using a directed special purpose per-link message including the capability information or a multi-hop message including the capability information.
33. The mobile station of claim 28, wherein the capability information includes at least one of transmission power step size information, receive power step size information, operational mode information, bandwidth information, or frequency band information.
34. The mobile station of claim 33, wherein the transmission power step size information includes minimum transmission power information, maximum transmission power information, or adjustment step size settings.
35. The mobile station of claim 33, wherein the receive power step size information includes minimum receive power information, maximum receive power information, receive power adjustment step size settings, receive power sensitivity level information, or clear channel assessment (CCA) thresholds settings.
36. The mobile station of claim 33, wherein the frequency band information includes a number of simultaneously operable bands or sub-bands.
37. The mobile station of claim 28, wherein the receiver is further configured to receive an allowed power setting information by at least one of a broadcast message, a multicast message, or a unicast message and receive in a solicited manner or an un-solicited manner.
38. The mobile station of claim 28, wherein the receiver is further configured to receive an allowed power setting information in a BEACON frame or a PROBE RESPONSE frame.
39. The mobile station of claim 28, wherein the receiver is further configured to receive an allowed power setting information during an association process or an authentication process.
40. The mobile station of claim 28, wherein the receiver is further configured to receive an allowed power setting information in a special purpose per-link message including the power capability information or a multi-hop message including the power capability information.
41. The mobile station of claim 28 wherein an allowed power setting information includes at least one of: power master (PM) information, operational mode information, frequency band information, transmission power information, reception power information, clear channel assessment threshold information, timing information, measurement information, silent period information, or offset information.
42. The mobile station of claim 28 wherein an allowed power setting information is associated with at least one of a network, a link, a path, a node, or a radio interface.
43. The mobile station of claim 28 wherein an allowed power setting information includes an absolute value, a relative value, or a combination thereof.
44. The mobile station of claim 28 wherein the processor is further configured to establish a peer-to-peer relationship with the other mobile station associated with the wireless network.
45. The mobile station of claim 28 wherein the processor is configured to establish a master-slave relationship with the other mobile station associated with the wireless network.
46. The mobile station of claim 28 wherein the receiver is further configured to periodically receive updated allowed power setting information.
47. The mobile station of claim 46 wherein the transmitter is further configured to transmit a request for measurements regarding at least one of power settings, perceived signal-to-noise ratio (SNR), link margin values, perceived interference power, or channel busy times.
48. The mobile station of claim 28 wherein the transmitter is further configured to transmit a plurality of statistics and feedback to a controlling entity.
49. The mobile station of claim 48 wherein the plurality of statistics include at least one of current TPC setting information, mode information, bandwidth information, simultaneous channel information, or channel statistics information.

1461171029-258db452-19ff-46d1-b096-8221a8cc39d7

1. A light attachment for fastening to a carrier structure including a light source, a battery and a light source controlling switch comprising:
a casing with a front side and a rear side including a head portion with a first opening for the light source in the front side and an elongated body portion with a second opening in the front side;
a switch actuating arm in the front side located in said second opening;
a removable elastic sleeve for surrounding at least a part of the elongated body portion and a part of the carrier structure to urge and fasten the rear side of the casing to the carrier structure.
2. The light attachment according to claim 1, wherein the casing has a substantially wedge-shaped structure tapered on the front side and widened on the rear side.
3. The light attachment according to claim 1, wherein the casing includes two lateral beams joined together by the head portion at one end and by a bottom at the other end.
4. The light attachment according to claim 3, wherein the switch actuating arm is located between the beams and mounted for rocking motion on the front edges of the beams through lateral pivots and the front edges of the beams are provided with recesses for receiving said lateral pivots.
5. The light attachment of claim 3, wherein the beams are connected by a baffle dividing the internal space of the casing between the head portion and the bottom into a switch compartment and a battery compartment.
6. The light attachment of claim 1, wherein the outer surface of the elastic sleeve has a selectively embossed structure.
7. The light attachment of claim 6, wherein the outer surface of the elastic sleeve has a specific knurling in the area covering the switch actuating arm separated by a boss from the other embossed structure of the front side.
8. The light attachment of claim 1, wherein the elastic sleeve is a belt provided with connecting means at its ends.
9. The light attachment of claim 1, wherein the carrier structure is a spray-defense apparatus.
10. The light attachment of claim 1, wherein the carrier structure is a baton.
11. A light attachment for fastening to a carrier structure including a light source, a battery and a light source controlling switch comprising:
a casing of a substantially wedge-shaped structure tapered on the front side and widened on the rear side including two lateral beams forming an elongated body joined together by a head portion at one end and by a bottom at the other end;
a first opening for the light source in the front side of the head portion;
a second opening in the front side of the elongated body;
a switch actuating arm located in said second opening and mounted for rocking motion on said lateral beams;
a removable elastic sleeve for surrounding at least a part of the elongated body portion and a part of the carrier structure to urge and fasten the rear side of the casing to the carrier structure.
12. A light attachment for fastening to a carrier structure including a light source, a battery and a light source controlling switch comprising:
a casing of a substantially wedge-shaped structure tapered on the front side and widened on the rear side including two lateral beams forming an elongated body joined together by the top head portion at one end and by a bottom at the other end;
a cross baffle between the lateral beams and dividing the internal space of the casing between the head portion and the bottom into a switch compartment and a battery compartment;
a first opening for the light source in the front side of the head portion;
a second opening in the front side of the elongated body;
a switch actuating arm located in said second opening between the beams and mounted for rocking motion on the beams;
means for fastening the light attachment to the carrier structure.

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 device, comprising:
a) a metal antenna andor inductor;
b) an interposer attached to said antenna andor inductor;
c) a dielectric layer on said interposer andor on at least part of said metal antenna andor inductor, configured to support integrated circuitry and insulate said integrated circuitry from said interposer andor said metal antenna andor inductor;
d) a plurality of diodes and a plurality of thin film transistors on said dielectric layer, said diodes having at least one semiconductor layer in common with said thin film transistors, said at least one semiconductor layer in common with said thin film transistors being formed from a liquid-phase ink comprising silicon; and
e) a plurality of capacitors (i) on or in contact with said dielectric layer and said metal antenna andor inductor, and (ii) in electrical communication with said metal antenna andor inductor and at least some of said diodes, said plurality of capacitors having at least one semiconductor layer in common with said plurality of diodes andor at least one metal layer in common with contacts to said diodes and thin film transistors, said at least one semiconductor layer in common with said plurality of diodes being formed from a same or different liquid-phase ink comprising silicon.
2. The device of claim 1, wherein said plurality of diodes have at least two different semiconductor layers in common with said plurality of thin film transistors.
3. The device of claim 2, wherein a first of said at least two different semiconductor layers comprises a lightly doped inorganic semiconductor and a second of said at least two different semiconductor layers comprises a heavily doped inorganic semiconductor.
4. The device of claim 1, further comprising an interlayer dielectric on or over said plurality of diodes and said plurality of thin film transistors.
5. The device of claim 4, further comprising a metallization layer over said interlayer dielectric, in electrical communication with said plurality of diodes and said plurality of thin film transistors.
6. The device of claim 5, wherein said plurality of capacitors have an upper plate comprising said metallization layer.
7. The device of claim 1, comprising a power conversion block, a logic block, and a memory block, said power conversion block receiving a signal from said metal antenna andor inductor and comprising a first subset of said diodes and at least a subset of said capacitors, said logic block receiving power from said power conversion block and communicating with said memory block, said logic block comprising a first subset of said thin film transistors, and said memory block comprising a second subset of said diodes andor a second subset of said thin film transistors.
8. The device of claim 7, further comprising a clock recovery andor demodulator block, configured to receive said signal from said metal antenna andor inductor and comprising a third subset of said diodes andor a third subset of said thin film transistors.
9. The device of claim 8, further comprising a modulator block, configured to receive information from said logic block and provide an output signal to said metal antenna andor inductor, said modulator block comprising a fourth subset of said diodes andor a fourth subset of said thin film transistors.
10. The device of claim 9, further comprising an inputoutput control block or sub-block, configured to receive an input signal from said clock recovery andor demodulator block and provide said information to said modulator block, said inputoutput control block or sub-block comprising a fifth subset of said thin film transistors.
11. The device of claim 1, wherein the device comprises a radio frequency identification (RFID) device.
12. The device of claim 1, wherein the plurality of thin film transistors is in a first region of the device and the plurality of diodes is in a second region of the device.
13. An integrated circuit comprising:
a) an electrically active substrate;
b) a dielectric layer on the substrate;
c) a plurality of first semiconductor layer elements being formed from a first liquid-phase ink comprising silicon, the plurality of first semiconductor layer elements comprising (i) a thin film transistor channel region in a first region of the substrate, and (ii) a first diode layer element in a second region of the substrate;
d) a plurality of second semiconductor layer elements being formed from a second liquid-phase ink comprising silicon, the plurality of second semiconductor layer elements comprising (i) a second semiconductor layer in the first region of the substrate, and (ii) a second diode layer element in the second region of the substrate; and
e) a plurality of metal elements, the metal elements comprising (i) a metal contact on or over the first semiconductor layer elements and the second semiconductor elements in the first region of the substrate, (ii) a metal gate over the thin film transistor channel region, (iii) a diode contact on or over the first semiconductor layer elements and second semiconductor layer elements in the second region of the substrate, and (iv) an upper capacitor plate in a third region of the substrate, wherein a capacitor comprising the upper capacitor plate is configured to electrically communicate with or be in physical contact with an antenna andor inductor.
14. The integrated circuit of claim 13, wherein the substrate comprises a metal foil.
15. The integrated circuit of claim 13, further comprising the antenna andor inductor.
16. An integrated circuit comprising:
a) an electrically active substrate;
b) a dielectric layer on the substrate;
c) a plurality of first semiconductor elements being formed from a first liquid-phase ink comprising silicon, the plurality of first semiconductor layer elements comprising (i) a thin film transistor channel region in a first region of the substrate, (ii) a first diode layer element in a second region of the substrate, and (iii) a first capacitor plate in a third region of the substrate;
d) a plurality of second semiconductor layer elements comprising (i) a second semiconductor layer in the first region of the substrate and (ii) a second diode layer element in the second region of the substrate;
e) a plurality of metal elements on or over the first semiconductor layer elements and the second semiconductor layer elements, the metal elements comprising (i) a metal contact in the first region of the substrate, (ii) a metal gate over the thin film transistor channel region, (iii) a diode contact in the second region of the substrate, and (iv) a second capacitor plate in the third region of the substrate; and
f) an antenna andor inductor in contact with or configured to electrically communicate with a capacitor comprising said first and second capacitor plates.
17. The integrated circuit of claim 16, wherein the substrate comprises a metal foil.
18. The device of claim 1, wherein:
said plurality of capacitors has at least one semiconductor layer in common with said plurality of diodes;
the at least one semiconductor layer common to said plurality of diodes and said plurality of thin film transistors comprises a lightly doped inorganic semiconductor; and
the at least one semiconductor layer common to said plurality of diodes and said plurality of capacitors comprises a heavily doped inorganic semiconductor.
19. The integrated circuit of claim 13, wherein the first region and third region do not overlap.
20. The integrated circuit of claim 19, wherein the second region is between the first region and the third region.
21. The device of claim 1, wherein the silicon in each liquid-phase ink comprises one or more silanes.
22. The integrated circuit of claim 13, wherein the silicon in each liquid-phase ink comprises one or more silanes.
23. The integrated circuit of claim 16, wherein the silicon in the liquid-phase first ink comprises one or more silanes.