1461152553-999031da-daf1-4c21-a1ae-f88df0c88296

1. A cover for a conveyor, comprising:
at least two elongated members having a hook on one end and a prong on an opposite end wherein the hook of one member receives the prong of an adjacent second member to interlock the two elongated members; and
at least one bracket to secure the one member to the adjacent second member.
2. The cover of claim 1 wherein the elongated members have downwardly extending flanges on the member’s sides.
3. The cover of claim 1 wherein the bracket is C-shaped having an upper section and a lower section, the lower section having an opening that receives a bolt.

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 comprising:
receiving control input from a user;
analyzing the control input to identify multiple controllable devices in a network to which the control input pertains; and
initiating simultaneous display of multiple display regions on a display screen, each of the multiple display regions indicating a different one of the multiple controllable devices to which the control input pertains.
2. The method as in claim 1 further comprising:
from the user, receiving selection of a particular controllable device of the multiple controllable devices identified on the display screen; and
transmitting the control input to the particular controllable device to control the particular controllable device.
3. The method as in claim 1 further comprising:
providing notification to the user that additional control input is needed to control the particular controllable device;
receiving additional control input from the user to control the particular communication device; and
transmitting the additional received control input to the particular controllable device.
4. The method as in claim 1, wherein each of the respective display regions displays an identity of a controllable device to which the respective display region pertains.
5. The method as in claim 4, wherein the control input is a sequence of text inputted by the user, the method further comprising:
in a data field disparately located with respect to the multiple display regions, displaying the sequence of text in an input data field on the display screen; and
displaying a copy of the sequence of text in at least two of the multiple display regions of corresponding controllable devices to which the control input pertains.
6. The method as in claim 1, wherein the control input is a sequence of text inputted by the user, the method further comprising:
displaying the sequence of text in an input data field on the display screen, the data field disparately located with respect to the multiple display regions.
7. The method as in claim 1, wherein the control input is a sequence of numbers inputted by the user, the method further comprising:
deriving a sequence of letters from the sequence of numbers; and
displaying the derived sequence of letters in a first display region of the multiple display regions, the first display region corresponding to a first controllable device; and
displaying the sequence of numbers in a second display region of the multiple display regions, the second display region corresponding to a second controllable device.
8. The method as in claim 1, wherein analyzing the control input to identify multiple controllable devices in a network to which the control input pertains includes:
detecting that the control input potentially pertains to control of a first controllable device and a second controllable device, the control input corresponding to control of a first control parameter for the first controllable device, the control input corresponding to control of a second control parameter for the second controllable device, the first control parameter different than the second control parameter.
9. The method as in claim 8, wherein initiating simultaneous display of the multiple display regions includes:
initiating display of the first display region on the display screen, the first display region specifying an identity of the first controllable device of the multiple controllable devices; and
initiating display of the second display region on the display screen, the second display region specifying an identity of the second controllable device of the multiple controllable devices.
10. The method as in claim 9, wherein initiating simultaneous display of the multiple display regions includes:
initiating display of the first control parameter and a copy of the control input in the first display region on the display screen; and
initiating display of the second control parameter and a copy of the control input in the second display region on the display screen.
11. The method as in claim 1, wherein initiating simultaneous display of the multiple display regions includes:
populating the first display region with first control settings to control a first controllable device of the multiple controllable devices, the first control settings including a copy of the control input; and
populating the second display region with second control settings to control a second controllable device of the multiple controllable devices, the second control settings including a copy of the control input.
12. The method as in claim 11 further comprising:
receiving selection of the second control settings to control the second controllable device; and
communicating a command over a wireless network to control the second controllable device based on the selection of the second control settings.
13. The method as in claim 1, wherein initiating simultaneous display of multiple display regions includes:
detecting a current location of a mobile device including the display screen on which identities of the multiple controllable devices are displayed; and
displaying the identities of the multiple controllable devices as a fewer-than-all portion of a set of controllable devices in a network environment, identities of the fewer-than-all portion multiple controllable devices displayed on the display screen because the fewer-than-all portion of controllable devices are detected as being located in a vicinity of the current location.
14. The method as in claim 1, wherein initiating simultaneous display of the multiple display regions includes:
populating a first display region of the display screen to include a first command input interface, the first command input interface controlling settings of a first controllable device of the multiple controllable devices to which the input pertains; and
populating a second display region of the display screen to include a second command input interface, the second command input interface controlling settings of a second controllable device of the multiple controllable devices to which the control input pertains.
15. A system comprising:
a mobile device;
multiple controllable devices in a wireless network controlled by the mobile device; and
the mobile device configured to:
receive control input from a user;
analyze the control input to identify multiple controllable devices in a network to which the control input pertains; and
initiate simultaneous display of multiple display regions on a display screen, each of the multiple display regions indicating a different one of the multiple controllable devices to which the control input pertains.
16. The system as in claim 15, wherein the mobile device is further configured to:
from the user, receive selection of a particular controllable device of the multiple controllable devices; and
transmit the control input to the particular controllable device to control the particular controllable device.
17. The system as in claim 16, wherein the mobile device is further configured to:
provide notification that additional control input is needed to control the particular controllable device;
receive additional input from the user to control the particular communication device; and
transmit the additional received input to the particular controllable device.
18. The system as in claim 15, wherein the control input is a sequence of text inputted by the user, the mobile device further configured to:
display the sequence of text in an input data field on the display screen, the data field disparately located with respect to the multiple display regions.
19. The system as in claim 15, wherein the control input is a sequence of numbers inputted by the user, the mobile device further configured to:
derive a sequence of letters from the sequence of numbers; and
display a copy of the sequence of letters in at least one of the multiple display regions of corresponding controllable devices to which the control input pertains.
20. The system as in claim 15, wherein analyze the control input to identify multiple controllable devices in a network to which the control input pertains includes:
detect that the control input potentially pertains to control of a first controllable device and a second controllable device, the control input corresponding to control of a first control parameter for the first controllable device and a second control parameter in the second controllable device, the first control parameter different than the second control parameter.

1461152544-b2f73b21-0e93-4021-bb40-9be98cf2c640

1. Aqueous microemulsion comprising a perfluorinated alkane sulphonic or carboxylic acid or salt thereof, a liquid fluorinated monomer comprising a cure-site and optionally an inert liquid and highly fluorinated hydrocarbon compound.
2. Aqueous microemulsion according to claim 1 wherein the perfluorinated alkane sulphonic or carboxylic acid or salt thereof corresponds to the following formula:
(YRf-Z)n-M (I)
wherein Y represents Cl or F; Rf represents a linear or branched perfluorinated alkylene having 3 to 15 carbon atoms; Z represents COO or SO3M represents a cation including monovalent and multivalent cations, and n corresponds to the valence of M.
3. Aqueous microemulsion according to claim 1 wherein said liquid fluorinated monomer is selected from the group of fluorinated vinyl ethers having one or more nitrite groups, fluorinated olefins having one or more nitrile groups, fluorinated olefins having one or more halogen atoms selected from the group consisting of chlorine, bromine and iodine, fluorinated vinyl ethers having one or more halogen atoms selected from the group consisting of chlorine, bromine and iodine and mixtures thereof.
4. Aqueous microemulsion according to claim 1 wherein the liquid fluorinated monomer corresponds to one of the following formulas:
CF2CFCF2ORfCN CF2CFO(CF2)lCN CF2CFOCF2CF(CF3)Og(CF2)vOCF(CF3)CN CF2CFOCF2CF(CF3)kO(CF2)uCN
wherein, l represents an integer of 2 to 12; g represents an integer of 0 to 4; k represents 1 or 2; v represents an integer of 0 to 6; u represents an integer of 1 to 6, Rf is a perfluoroalkylene or a bivalent perfluoroether group.
5. Aqueous microemulsion according to claim 1 wherein the inert liquid and highly fluorinated hydrocarbon compound comprises a perfluorinated hydrocarbon compound.
6. Method of making an aqueous micro-emulsion according to claim 1 comprising mixing together water, a perfluorinated alkane sulphonic or carboxylic acid or salt thereof, optionally an inert liquid and highly fluorinated hydrocarbon compound and a liquid fluorinated monomer having a cure-site.
7. Process of making a fluoropolymer capable of being cured to a fluoroelastomer, the process comprising an aqueous emulsion polymerization of one or more fluorinated monomers and one or more liquid fluorinated monomers having a cure-site, characterized in that at least part of the liquid fluorinated monomers is provided as an aqueous microemulsion as defined in claim 1 during at least the initial stage of the aqueous emulsion polymerization process.
8. Process according to claim 7 wherein at least 2% by weight of the liquid fluorinated monomer having a cure-site based on the total weight of liquid fluorinated monomer having a cure-site is provided during the initial stage of the polymerization.
9. Process according to claim 7 wherein the polymerization is initiated with an initiator system selected from a combination of a fluoroaliphatic sulfinate and an oxidizing agent capable of oxidizing the sulfinate to a sulfonyl radical and a combination of a free radical initiator and a water soluble chloride salt.
10. Process according to claim 9 wherein the fluoropolymer is a perfluoropolymer and the initiator system and amount thereof is selected such that the amount of ionic end group in the resulting perfluoropolymer is such that the absorbance ratio determined by calculating the integrated peak intensity within the range of 1840 cm1-1620 cm1 to the integrated peak intensity in the range 2740 cm1-2220 cm1 in a Fourier transform infrared spectrum of the perfluoropolymer, is less than 0.1.
11. Process according to claim 7 further comprising the step of isolating the fluoropolymer from the aqueous dispersion obtained at the end of the polymerization process.
12. Process for making a curable fluoroelastomer composition comprising the steps of providing a fluoropolymer according to the process of claim 11 and mixing the fluoropolymer with a cure composition comprising one or more compounds capable of effecting curing of the fluoropolymer through the cure site components contained in said fluoropolymer.
13. Process according to claim 12 wherein the cure composition further comprises a polyunsaturated coagent.
14. Process for making a fluoroelastomer comprising the steps of providing a curable fluoroelastomer composition according to the process as defined in claim 12 and curing the thus obtained curable fluoroelastomer composition.
15. A cured fluoropolymer derivable from curing a fluoropolymer comprising units deriving from a liquid fluorinated monomer having a cure-site, wherein the amount of organic components extractable from the cured fluoropolymer with perfluoro benzene during Soxhiet extraction for 20 h is less than 5% by weight based on the weight of the cured fluoropolymer.

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 photosensitive cartridge attachable todetachable from a main body of an image forming apparatus, comprising:
a photosensitive member;
an attachment unit configured to removably attach a developing cartridge including a developing member that develops a latent image formed on the photosensitive member to the photosensitive cartridge; and
a locking member configured to prevent disengaging of the developing cartridge from the attachment unit when the developing cartridge is attached to the attachment unit,
wherein the locking member comes into contact, when the photosensitive cartridge to which the developing cartridge has been attached is attached to the main body of the image forming apparatus, with a main body contact member provided to the main body and electrically connects the main body contact member and the developing cartridge.
2. The photosensitive cartridge according to claim 1,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit, and wherein the photosensitive cartridge includes an urging unit configured to urge the locking member to move from the permission position to the regulation position.
3. The photosensitive cartridge according to claim 2, further comprising:
a frame configured to rotatably support the photosensitive member,
wherein the urging unit is provided to the frame.
4. The photosensitive cartridge according to claim 1, wherein the locking member is made of a conductive resin material.
5. The photosensitive cartridge according to claim 1, further comprising a pressing member configured to press the developing member toward the photosensitive member.
6. The photosensitive cartridge according to claim 1,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit, and
wherein the locking member moves from the regulation position to the permission position by coming into contact with the developing cartridge when the developing cartridge is attached to the attachment unit.
7. The photosensitive cartridge according to claim 1,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit, and
wherein the locking member includes a force reception unit that receives a force for moving the locking member from the regulation position to the permission position.
8. The photosensitive cartridge according to claim 1,
wherein the developing cartridge includes a roller,
wherein the locking member includes a first abutment unit capable of coming into contact with the main body contact member and a second abutment unit capable of coming into contact with a shaft of the roller, and
wherein the locking member electrically connects the main body contact member and the roller.
9. A process cartridge attachable todetachable from a main body of an image forming apparatus, comprising:
a developing cartridge including a developing member that develops a latent image formed on a photosensitive member;
a photosensitive cartridge including the photosensitive member and an attachment unit that removably attaches the developing cartridge to the photosensitive cartridge; and
a locking member configured to prevent disengaging of the developing cartridge from the attachment unit when the developing cartridge is attached to the fitting unit,
wherein the locking member comes into contact, when the process cartridge is attached to the main body of the image forming apparatus, with a main body contact member provided to the main body, and electrically connects the main body contact member and the developing cartridge.
10. The process cartridge according to claim 9,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit, and
wherein the photosensitive cartridge includes an urging unit that urges the locking member to move from the permission position to the regulation position.
11. The process cartridge according to claim 10, further comprising:
a frame configured to rotatably support the photosensitive member,
wherein the urging unit is provided to the frame.
12. The process cartridge according to claim 9, wherein the locking member is made of a conductive resin material.
13. The process cartridge according to claim 9, further comprising a pressing member configured to press the developing member toward the photosensitive member.
14. The process cartridge according to claim 9,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit; and
the locking member moves from the regulation position to the permission position by coming into contact with the developing cartridge when the developing cartridge is attached to the attachment unit.
15. The process cartridge according to claim 9,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit, and
wherein the locking member includes a force reception unit that receives a force for moving the locking member from the regulation position to the permission position.
16. The process cartridge according to claim 9,
wherein the developing cartridge includes a roller,
wherein the locking member includes a first abutment unit capable of coming into contact with the main body contact member and a second abutment unit capable of coming into contact with a shaft of the roller, and
wherein the locking member electrically connects the main body contact member and the roller.
17. An image forming apparatus for forming an image on a recording medium, comprising:
a developing cartridge including a developing member that develops a latent image formed on a photosensitive member;
a photosensitive cartridge including the photosensitive member and an attachment unit that removably attaches the developing cartridge to the photosensitive cartridge;
a locking member configured to prevent disengaging of the developing cartridge from the attachment unit when the developing cartridge is attached to the attachment unit;
an apparatus main body to which the photosensitive cartridge is attached; and
a main body contact member provided to the apparatus main body,
wherein the locking member comes into contact, when the photosensitive cartridge to which the developing cartridge has been attached is attached to the apparatus main body, with the main body contact member, and electrically connects the main body contact member and the developing cartridge.
18. The image forming apparatus according to claim 17,
wherein the locking member is movable between a regulation position of preventing the disengaging of the developing cartridge from the attachment unit and a permission position of permitting attachingdetaching of the developing cartridge tofrom the attachment unit; and
wherein the photosensitive cartridge includes an urging unit that urges the locking member to move from the permission position to the regulation position.
19. The image forming apparatus according to claim 17, further comprising:
a frame configured to rotatably support the photosensitive member,
wherein the urging unit is provided to the frame.
20. A developing cartridge attachable todetachable from a photosensitive cartridge including a photosensitive member and an attachment unit, comprising:
a developing member configured to develop a latent image formed on the photosensitive member; and
a locking member configured to prevent disengaging of the developing cartridge from the attachment unit when the developing cartridge is attached to the fitting unit,
wherein the locking member comes into contact, when the developing cartridge in a state where the photosensitive cartridge has been attached to the developing cartridge is attached to a main body of an image forming apparatus, with a main body contact member provided to the main body, and electrically connects the main body contact member and the developing cartridge.