1460723773-1b0df768-6936-40e5-935c-ad0306de9ded

What is claimed is:

1. A pharmaceutical composition comprising a dispersion, said dispersion comprising an agent selected from the group consisting of inhibitors of angiotensin converting enzymes and inhibitors of neutral endopeptidase, dispersed in a lipoidic vehicle.
2. The composition of claim 1 wherein said agent is sampatrilat.
3. The composition of claim 1 wherein said lipoidic vehicle is a glyceride.
4. The composition of claim 3 wherein said glyceride is selected from the group consisting of medium chain glycerides and caprylocaproyl macrogolglycerides, and mixtures thereof.
5. The composition of claim 4 wherein said glyceride is a medium chain glyceride.
6. The composition of claim 5 wherein said medium chain glyceride is selected from the group consisting of medium chain monoglycerides, medium chain diglycerides, capryliccapric triglyceride, glyceryl monolaurate, capryliccapric glycerides, glycerylmonocaprylate, glyceryl monodicaprylate, capryliccapric linoleic triglyceride, and capryliccapricsuccinic triglyceride.
7. The composition of claim 4 wherein said glyceride is a caprylocaproyl macrogolglyceride.
8. The composition of claim 7 wherein said caprylocaproyl macrogolglyceride is a polyethylene glycosylated glyceride.
9. The composition of claim 8 wherein said polyethylene glycosylated glyceride is selected from the group consisting of mixtures of monoglycerides, diglycerides, and triglycerides and monoesters and diesters of polyethylene glycol, polyethylene glycosylated almond glycerides, polythylene glycosylated corn glycerides, and polyethylene glycosylated capryliccapric triglyceride.
10. The composition of claim 1, and further comprising a sorbent.
11. The composition of claim 10 wherein said sorbent is dicalcium phosphate.
12. A method for the treatment or prevention of cardiovascular disorders including hypertension and heart failure comprising the step of administering a pharmaceutically effective amount of a formulation as defined in claim 1 to a subject in need of such treatment or prevention.
13. The use of a pharmaceutically effective amount of a formulation as defined in claim 1 for treating or preventing cardiovascular disorders including hypertension and heart failure.
14. A method for the manufacture of a formulation comprising the steps of dispersing an agent selected from the group consisting of inhibitors of angiotensin converting enzymes and inhibitors of neutral endopeptidase, in a lipoidic vehicle.
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 sealed linear actuator unit, comprising:
an outer rail, having a substantially cylindrical shape which includes a hollow portion therein, and further includes a slit-opening portion disposed along an axial direction thereof;
an inner block, disposed in the hollow portion of the outer rail, and which is movable along a longitudinal direction of the outer rail;
a driving means, which is coupled to the inner block in the hollow portion of the outer rail, and causes the inner block to reciprocate along the longitudinal direction of the outer rail;
a slide plate, disposed outside of the slit-opening portion of the outer rail, and which is coupled to the inner block through the slit-opening portion;
a cover belt, which is tensioned between both ends in the longitudinal direction of the outer rail so as to cover the slit-opening portion;
a belt-guiding member, including a separating portion which separates the cover belt from the outer rail corresponding to movement of the slide plate so as to cause the cover belt to climb over the slide plate; and
a seal member fixed to the belt-guiding member, which seals between the belt-guiding member and the cover belt and between the belt-guiding member and the outer rail so as to prevent dust from getting into the hollow portion of the outer rail, wherein the seal member further includes,
a pair of end seal portions, which press the cover belt against the outer rail on a front side and a rear side in a moving direction of the slide plate, and
a pair of side seal portions, which couple the pair of end seal portions with one another, and are held in contact with the outer rail along the moving direction of the slide plate.
2. The sealed linear actuator unit according to claim 1, wherein the end seal portions and side seal portions are continuous with each other without spacing therebetween.
3. The sealed linear actuator unit according to claim 2, wherein the side plate has a guiding groove for causing the cover belt to pass therethrough, and the belt-guiding member includes a cover plate being fixed to the slide plate so as to cover the guiding groove.
4. The sealed linear actuator unit according to claim 3, wherein the seal member includes,
a pair of flange portions disposed at the end seal portions, and
a pair of side frames disposed at the side seal portions coupling the pair of flange portions with one another, in such a manner that the seal member is formed into a rectangular frame shape, and
wherein the side frames of the seal member are arranged so as to be held in contact with a side of a lower surface of the slide pate, and the seal member is integrated with the slide plate so as to be fixed to the cover plate of the belt-guiding member.

1460723764-6c83b0cf-68ca-4c96-b96e-041826fb2983

1. A silver halide color photographic light-sensitive material,
which is for use in movie projection,
which comprises:
on a transparent support,
at least three kinds of light-sensitive silver halide emulsion layers that are different from each other in color developability and color sensitivity and which three kinds of layers include at least one yellow color-forming light-sensitive silver halide emulsion layer, at least one cyan color-forming light-sensitive silver halide emulsion layer, and at least one magenta color-forming light-sensitive silver halide emulsion layer, respectively, and
at least one non-light-sensitive hydrophilic colloid layer,

wherein, among the light-sensitive silver halide emulsion layers, the layer nearest to the support includes silver halide emulsion grains having a silver halide composition of silver chlorobromide, silver chloroiodide, silver chloroiodobromide, or silver chloride, each having a silver chloride content of 95% or more by mol,
wherein the silver halide color photographic light-sensitive material further comprises at least one non-light-sensitive hydrophilic colloid layer containing black colloidal silver between the support and the light-sensitive silver halide emulsion layer nearest to the support, and
wherein an amount of Fe in the silver halide color photographic light-sensitive material is 6\xd710\u22125 molm2 or less.
2. The silver halide color photographic light-sensitive material as claimed in claim 1, wherein the amount of Fe in the silver halide color photographic light-sensitive material is 8\xd710\u22126 molm2 or less.
3. The silver halide color photographic light-sensitive material as claimed in claim 1, wherein each of the light-sensitive silver halide emulsion layers includes silver halide emulsion grains having a silver halide composition of silver chlorobromide, silver chloroiodide, silver chloroiodobromide, or silver chloride, each having a silver chloride content of 95% or more by mol.
4. The silver halide color photographic light-sensitive material as claimed in claim 1, wherein the silver halide emulsion layer nearest to the support is adjacent to the non-light-sensitive hydrophilic colloid layer containing the black colloidal silver.
5. The silver halide color photographic light-sensitive material as claimed in claim 1, wherein the coating amount of silver of the black colloidal silver in the silver halide color photographic light-sensitive material is from 0.01 to 2.0 gm2.
6. The silver halide color photographic light-sensitive material as claimed in claim 1, wherein the coating amount of silver of the black colloidal silver in the silver halide color photographic light-sensitive material is from 0.04 to 1.0 gm2.
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 communication device comprising:
a first node connected to an antenna;
a transmission unit outputting a signal to the antenna via the first node;
a reception unit having a signal input thereto from the antenna via the first node;
a first switch provided between the first node and the transmission unit; and
a second switch provided between the first node and the reception unit, wherein
the second switch is alternately turned on and off repeatedly,
the reception unit comprises an amplifier amplifying a signal that the transmission unit outputs via the first and second switches and a mixer mixing a signal amplified in the amplifier and a local signal,
the mixer has a leakage signal of the first switch when the first switch is off input thereto, and wherein
the first switch comprises:
a plurality of inductors connected in series between the first node and the transmission unit;
a first n-channel field-effect transistor having a drain thereof connected to an Interconnection point of the plural first Inductors, having a source thereof connected to a reference potential node, and having a voltage higher than a threshold voltage applied to a gate thereof, and
the second switch comprises:
a plurality of second inductors connected in series between the first node and the reception unit; and
a second n-channel field-effect transistor having a drain thereof connected to an interconnection point of the plural second inductors, having a source thereof connected to a reference potential node, and having a voltage higher than a threshold voltage and a voltage lower than the threshold voltage alternately applied to a gate thereof.
2. The communication device according to claim 1, wherein
the first switch comprises a third n-channel field-effect transistor having a source and a drain thereof connected in series between the plural first inductors,
a voltage higher than a threshold voltage is applied to a gate of the third n-channel field-effect transistor,
the second switch comprises a fourth n-channel field-effect transistor having a source and a drain thereof connected in series between the plural second inductors, and
a voltage higher than a threshold voltage and a voltage lower than the threshold voltage are alternately applied to a gate of the fourth n-channel field-effect transistor.
3. The communication device according to claim 1, wherein
the first and second n-channel field-effect transistors are plurally provided respectively, and
a voltage higher than a threshold voltage or a voltage in which a voltage higher than the threshold voltage and a voltage lower than the threshold voltage are alternately repeated is selectively applied to the gate of one of the first n-channel field-effect transistors or the second n-channel field-effect transistors.
4. The communication device according to claim 1, further comprising:
a fifth n-channel field-effect transistor having a drain and a source thereof connected between the first node and a reference potential node, and wherein
in a transmission mode and a reception mode, a voltage lower than a threshold voltage is applied to a gate of the fifth n-channel field-effect transistor, and in an inspection mode, a voltage higher than the threshold voltage is applied to the gate of the fifth n-channel field-effect transistor.
5. A communication device comprising:
a first node connected to an antenna;
a transmission unit outputting a signal to the antenna via the first node;
a reception unit having a signal input thereto from the antenna via the first node;
a first switch provided between the first node and the transmission unit; and
a second switch provided between the first node and the reception unit, wherein
the second switch is alternately turned on and off repeatedly,
the reception unit comprises an amplifier amplifying a signal that the transmission unit outputs via the first and second switches and a mixer mixing a signal amplified in the amplifier and a local signal,
the mixer has a leakage signal of the first switch when the first switch is off input thereto, and wherein
the first switch comprises:
a plurality of first inductors connected in series between the first node and the transmission unit; and
a first n-channel field-effect transistor having a source and a drain thereof connected in series between the plural first inductors, and
a voltage higher than a threshold voltage is applied to a gate of the first n-channel field-effect transistor, and
the second switch comprises:
a plurality of second inductors connected in series between the first node and the reception unit; and
a second n-channel field-effect transistor having a source and a drain thereof connected in series between the plural second inductors, and
a voltage higher than a threshold voltage and a voltage lower than the threshold voltage are alternately applied to a gate of the second n-channel field-effect transistor.