1460920401-a74c73c2-0e21-4adc-8eeb-6dc056ce3687

1. A dye mixture comprising at least one dye of formula
together with at least one dye of formula
wherein
R1 and R2 are each independently of the other hydrogen or unsubstituted or substituted C1-C4 alkyl,
(R3)0-3 denotes from 0 to 3 identical or differing substituents from the group halogen, C1-C4 alkyl, C1-C4 alkoxy, carboxy and sulfo,
A is unsubstituted or substituted phenylene, naphthylene, or C2-C8 alkylene which may be interrupted by oxygen,
X1 is halogen or a non-fibre-reactive substituent,
q is the number 0 or 1,
Y1, Y2, Y3 and Y4 are each independently of the others a fibre-reactive radical of formula
\u2014SO2-Z\u2003\u2003(3a),
\u2014NH\u2014CO\u2014(CH2)m\u2014SO2-Z\u2003\u2003(3b),
\u2014CONH\u2014(CH2)n\u2014SO2-Z\u2003\u2003(3c),
\u2014NH\u2014CO\u2014CH(Hal)\u2014CH2-Hal\u2003\u2003(3d),
\u2014NH\u2014CO\u2014C(Hal)\u2550CH2\u2003\u2003(3e) or
wherein
X2 is halogen, T independently has the definition of X2, is a non-fibre-reactive substituent or is a fibre-reactive radical of formula
(R6)0-2 denotes from 0 to 2 identical or differing substituents from the group halogen, C1-C4 alkyl, C1-C4 alkoxy and sulfo,
Z is vinyl or a radical \u2014CH2\u2014CH2\u2014U and U is a group removable under alkaline conditions,
Q is a group \u2014CH(Hal)\u2014CH2-Hal or \u2014C(Hal)\u2550CH2,
m and n are each independently of the other the number 2, 3 or 4, and
Hal is halogen, and
(R4)0-2 and (R5)0-2 denote, each independently of the other, from 0 to 2 identical or differing substituents selected from the group C1-C4 alkyl, C1-C4 alkoxy and sulfo, and one of the fibre-reactive radicals Y3 and Y4 is a radical of formula (3a), (3b), (3e), (3d) or (3e) and the other of the fibre-reactive radicals Y3 and Y4 is a radical of formula (3b) or (3f).
2. A dye mixture according to claim 1, wherein R1 is hydrogen, methyl or ethyl and R2 is hydrogen.
3. A dye mixture according to claim 1, wherein X1 is chlorine.
4. A dye mixture according to claim 1, wherein -A-Y1 is a radical of formula
wherein
(R7)0-2 denotes from 0 to 2 identical or differing substituents from the group halogen, C1-C4alkyl, C1-C4alkoxy and sulfo,
m is the number 2 or 3, and
Z1, Z2 and Z3 are each independently of the others vinyl, \u03b2-chloroethyl or \u03b2-sulfatoethyl.
5. A dye mixture according to claim 1, wherein the dye of formula (1) is a dye of formula
wherein
R1 is hydrogen, methyl or ethyl and
Z1 is vinyl, \u03b2-chloroethyl or \u03b2-sulfatoethyl.
6. A method of dyeing or printing of hydroxyl-group-containing or nitrogen-containing fibre material, which comprises contacting said material with a tinctorially effective amount of a dye mixture according to claim 1.
7. A method according to claim 6, wherein cellulosic fibre material is dyed or printed.
8. An aqueous ink comprising a dye mixture according to claim 1.
9. A method of printing of hydroxyl-group-containing or nitrogen-containing fibre material, which comprises printing said material with an aqueous ink according to claim 8 in an inkjet printer.
10. A method according to claim 6, wherein cotton-containing fibre material is dyed or printed.

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 of controlling user equipment transmit power in a wireless communication system, comprising:
communicating with a first base station and a second base station;
establishing a high speed channel with one of the first base station or the second base station, wherein the one of the first base station or the second base station defines a high speed serving cell and a remaining one of the first base station or the second base station defines a non-high speed cell; and
ignoring a transmit power control command from the non-high speed cell when a high speed power control state applies to controlling a transmit power level.
2. The method of claim 1, wherein establishing the high speed channel further comprises establishing a high speed downlink packet access (HSDPA) channel.
3. The method of claim 2, wherein the high speed power control state comprises an absolute state corresponding to the establishing of the high speed channel with the high speed serving cell.
4. The method of claim 3, wherein establishing the high speed channel comprises receiving a high speed transmit power control index message associated with the HSDPA channel.
5. The method of claim 3, further comprising
executing only transmit power control commands received from the high speed serving cell during the absolute state when the absolute state applies to controlling the transmit power level, wherein the communicating with the first base station and the second base station defines a soft handover.
6. The method of claim 1, wherein the high speed power control state comprises a discontinuous transmission state corresponding to a lack of scheduled data to be transmitted on the high speed channel.
7. The method of claim 6, further comprising:
detecting scheduled data for transmission on the high speed channel being less than a scheduled data for transmission threshold to identify the discontinuous transmission state; and
triggering the ignoring of the power control commands from the non-high speed cell during the discontinuous transmission state based on the scheduled data for transmission on the high speed channel being less than the scheduled data for transmission threshold.
8. The method of claim 1, wherein ignoring the transmit power control command from the non-high speed cell further comprises ignoring a down command to reduce transmit power.
9. The method of claim 1, further comprising:
de-establishing the high speed channel;
determining the high speed power control state does not apply based on the de-establishing of the high speed channel; and
executing power control commands from both the non-high speed cell and the high speed cell when the high speed power control state does not apply.
10. An apparatus for wireless communication, comprising:
means for communicating with a first base station and a second base station;
means for establishing a high speed channel with one of the first base station or the second base station, wherein the one of the first base station or the second base station defines a high speed serving cell and a remaining one of the first base station or the second base station defines a non-high speed cell; and
means for ignoring a transmit power control command from the non-high speed cell when a high speed power control state applies to controlling a transmit power level.
11. The apparatus of claim 10, wherein the means for establishing the high speed channel further comprises means for establishing a high speed downlink packet access (HSDPA) channel.
12. The apparatus of claim 11, wherein the high speed power control state comprises an absolute state corresponding to the establishing of the high speed channel with the high speed serving cell.
13. The apparatus of claim 12, wherein the means for establishing the high speed channel comprises means for receiving a high speed transmit power control index message associated with the HSDPA channel.
14. The apparatus of claim 12, further comprising means for executing only transmit power control commands received from the high speed serving cell during the absolute state when the absolute state applies to controlling the transmit power level, wherein the communicating with the first base station and the second base station defines a soft handover.
15. The apparatus of claim 10, wherein the high speed power control state comprises a discontinuous transmission state corresponding to a lack of scheduled data to be transmitted on the high speed channel.
16. The apparatus of claim 15, further comprising:
means for detecting scheduled data for transmission on the high speed channel being less than a scheduled data for transmission threshold to identify the discontinuous transmission state; and
means for triggering the ignoring of the power control commands from the non-high speed cell during the discontinuous transmission state based on the scheduled data for transmission on the high speed channel being less than the scheduled data for transmission threshold.
17. A computer program product, comprising:
a computer-readable medium comprising code for:
communicating with a first base station and a second base station;
establishing a high speed channel with one of the first base station or the second base station, wherein the one of the first base station or the second base station defines a high speed serving cell and a remaining one of the first base station or the second base station defines a non-high speed cell; and
ignoring a transmit power control command from the non-high speed cell when a high speed power control state applies to controlling a transmit power level.
18. The computer program product of claim 17, wherein the code for establishing the high speed channel further comprises a high speed downlink packet access (HSDPA) channel.
19. The computer program product of claim 18, wherein the code establishing the high speed channel comprises an absolute state corresponding to the establishing of the high speed channel with the high speed serving cell.
20. The computer program product of claim 19, wherein the absolute state comprises code for receiving a high speed transmit power control index message associated with the HSDPA channel.
21. The computer program product of claim 19, further comprising code for executing only transmit power control commands received from the high speed serving cell during the absolute state when the absolute state applies to controlling the transmit power level, wherein the communicating with the first base station and the second base station defines a soft handover.
22. The computer program product of claim 17, wherein the high speed power control state comprises a discontinuous transmission state corresponding to a lack of scheduled data to be transmitted on the high speed channel.
23. The computer program product of claim 22, further comprising code for:
detecting scheduled data for transmission on the high speed channel being less than a scheduled data for transmission threshold to identify the discontinuous transmission state; and
triggering the ignoring of the power control commands from the non-high speed cell during the discontinuous transmission state based on the scheduled data for transmission on the high speed channel being less than the scheduled data for transmission threshold.
24. An apparatus for wireless communication, comprising:
at least one processor; and
a memory coupled to the at least one processor,
wherein the at least one processor is configured to:
communicate with a first base station and a second base station;
establish a high speed channel with one of the first base station or the second base station, wherein the one of the first base station or the second base station defines a high speed serving cell and a remaining one of the first base station or the second base station defines a non-high speed cell; and
ignore a transmit power control command from the non-high speed cell when a high speed power control state applies to controlling a transmit power level.
25. The apparatus of claim 24, wherein to establish the high speed channel, the at least one processor is further configured to establish a high speed downlink packet access (HSDPA) channel.
26. The apparatus of claim 25, wherein establishing the high speed channel comprises an absolute state corresponding to the establishing of the high speed channel with the high speed serving cell.
27. The apparatus of claim 26, wherein the absolute state comprises receiving a high speed transmit power control index message associated with the HSDPA channel.
28. The apparatus of claim 26, wherein the at least one processor is further configured to executing only transmit power control commands received from the high speed serving cell during the absolute state when the absolute state applies to controlling the transmit power level, wherein the communicating with the first base station and the second base station defines a soft handover.
29. The apparatus of claim 24, wherein the high speed power control state comprises a discontinuous transmission state corresponding to a lack of scheduled data to be transmitted on the high speed channel.
30. The apparatus of claim 29, wherein the at least one processor is further configured to:
detect scheduled data for transmission on the high speed channel being less than a scheduled data for transmission threshold to identify the discontinuous transmission state; and
trigger the ignoring of the power control commands from the non-high speed cell during the discontinuous transmission state based on the scheduled data for transmission on the high speed channel being less than the scheduled data for transmission threshold.
31. The apparatus of claim 24, wherein to ignore the transmit power control command from the non-high speed cell, the at least one processor is further configured to ignore a down command to reduce transmit power.
32. The apparatus of claim 24, wherein the at least one processor is further configured to:
de-establish the high speed channel;
determine the high speed power control state does not apply based on the de-establishing of the high speed channel; and
execute power control commands from both the non-high speed cell and the high speed cell when the high speed power control state does not apply.