1460933388-fd989db3-5752-434e-ae88-b71c684c6f77

1. The method for preparing of an ear mold, comprising the following steps of:
(a) the step of forming of a hole for supporting of a sound-leading tube guide wire and a hole in order to support a tool for embedding of a hub in an impression obtained by preparing of a lug plug;
(b) the step of inserting of a wire in order to give the hole for supporting of the sound-leading tube guide wire into said hole for supporting of the sound-leading tube guide wire of said impression, and inserting of a tool for embedding of the hub into said hole in order to support the tool for embedding of the hub;
(c) the step of forming of a preliminary form which said impression inserted said wire in order to give the hole for supporting of the sound-leading tube guide wire and said tool for embedding of the hub puts into the under-side of a vessel, a forming material supplies to the under-side of the vessel, and said wire in order to give the hole for supporting of the sound-leading tube guide wire and said tool for embedding of the hub buries in said forming material;
(d) the step of laying of the upper-side of the vessel in the under-side of the vessel, supplying of said forming material, and pressure hardening
(e) the step of opening of between the under-side of the vessel and the upper-side of the vessel, forming of an upper half prototype form in the upper-side of the vessel by said forming material;
(f) the step of getting off said impression and said wire in order to give the hole for supporting of the sound-leading tube guide wire, and getting at a prototype form of the under-side of the vessel of the impression having a hole for supporting of the sound-leading tube guide wire and buried said tool for embedding of the hub as enable to stick out a hub-insert-portion;
(g) the step of inserting of a guide wire into a sound-leading tube through said hole for supporting of a sound-leading tube guide wire of said prototype form of the under-side of the vessel, loading of the sound-leading tube into the sound-leading-tube-loading-hole of the hub having a sound-leading-tube-loading-hole, an elbow-loading-hole and an introductory hole of the mold material, and loading of a side of the elbow-loading-hole of the hub into said hub-insert-portion of said tool for embedding of the hub stack out from the prototype form of the under-side of the vessel;
(h) the step of molding of the mold material into a cavity of the under-side shape of the impression in the said prototype form of the under-side of the vessel, molding of the mold material into a cavity of the upper-side shape of the impression of the upper-side of the vessel, laying of the upper-side of the vessel in the under-side of the vessel, pressure-hardening of the mold material, after said hardening, opening of between the under-side of the vessel and the upper-side of the vessel, and forming of a mold body portion make by said mold material;
(i) the step of pulling of leftover guide wire from said mold body portion, forming a sound-leading-hole by this pulling of guide wire, embedding of the hub and a sound-leading tube, loading of a elbow into an elbow-loading-hole of said hub, loading of a tone tube in order to connect an ear hook hearing aid into said elbow;
2. A method for preparing of the ear mold according to claim 1, including the following steps of:
(a) the step of forming of a wire guide hole in order to give a hole for supporting of a wire for forming of a vent in the impression obtained by preparing of the lug plug;
(b) the step of inserting of a wire in order to give a hole for supporting of a wire for forming of a vent into said wire guide hole in order to give a hole for supporting of a wire for forming of a vent;
(c) the step of forming of a preliminary form which said impression inserted said wire in order to give a hole for supporting of a wire for forming of a vent puts into the under-side of a vessel, a forming material supplies to the under-side of a vessel, and said wire in order to give a hole for supporting of a wire for forming of a vent buries in said forming material;
(f) the step of getting off said impression and said wire in order to give a hole for supporting of a wire for forming of a vent, and getting at a prototype form of the under-side of a vessel of the impression having a hole for supporting of a wire for forming of a vent;
(g) the step of inserting of a wire for forming of a vent into a hole for supporting of a wire for forming of a vent;
(i) the step of pulling of leftover the wire for forming of a vent from said mold body portion, forming a vent;
3. An ear mold based on custom-made impression and joined an ear hook hearing aid through an elbow and a tone tube comprising: a hub having a sound-leading-tube-loading-hole, an elbow-loading-hole and an introductory hole of a mold material embedded in the ear mold, a sound-leading tube was loaded in the sound-leading-tube-loading-hole of said hub, the elbow was loaded in the elbow-loading-hole of said hub, said tone tube was loaded in said elbow, said hub was fixed with the mold material of the ear mold through said introductory hole of the mold material.
4. An ear mold according to claim 3, in which said ear mold has a vent.

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 pressure regulating device, with a pressure regulating valve which has a valve casing with a primary port for the supply of pressure medium, a pressure-regulated secondary port for connection to a load, and a vent port, wherein there is provided, between the secondary port and the primary port, a first overflow port bordered by a first valve seat and, between the secondary port and the vent port, a second overflow port bordered by a second valve seat, wherein a first closing member with a spring bias in the direction of a closed position abutting the first valve seat lies opposite the first valve seat, and a second closing member with a spring bias in the direction of a closed position abutting the second valve seat lies opposite the second valve seat, wherein both closing members belong to a regulating unit, which is movable relative to the valve casing, which also contains an actuation element which is movable relative to the two closing members and may be driven under the influence of a control pressure to a regulating movement relative to the valve casing, by means of which each closing member may be moved into at least one open position lifted from the assigned valve seat, and wherein the regulating unit comprises, in addition to the two closing members, a restrictor element fixed to the actuation element and accompanying the regulating movement of the actuation element, while in a position of the actuation element which allows the first closing member to adopt its closed position, the restrictor element adopts a restriction position narrowing the flow cross-section between the primary port and the secondary port to a restricting gap, as compared to the maximum open position of the first closing member which may be produced by the actuation element.
2. A pressure regulating device according to claim 1, wherein the restrictor element is so mounted on the actuation element that, in the position of the actuation element which presets the open position of the first closing member, it lies completely outside the first overflow port and in the restriction position dips at least partly and expediently completely into the first overflow port.
3. A pressure regulating device according to claim 1, wherein the restrictor element is in the form of an annular projection extending radially from the actuation element.
4. A pressure regulating device according to claim 1, wherein the restrictor element is a single-piece component of the actuation element.
5. A pressure regulating device to according to claim 1, wherein the actuation element has a stop member, acting on the first closing member to shift the first closing member into the open position, and at the same time forming the restrictor element.
6. A pressure regulating device according to claim 1, wherein the restrictor element is so designed that on adoption of the restriction position of the restrictor element with the first closing member simultaneously in the maximum open position, and likewise the second closing member adopting an open position, the secondary pressure at the secondary port has an excess pressure as residual pressure value which amounts to a maximum of 10% of the primary pressure value at the primary port and at the same time does not exceed 1 bar.
7. A pressure regulating device according to claim 1, further comprising an electronic control unit, which is designed to generate an electrical message signal when the secondary pressure actual value prevailing at the secondary port does not fall below a preset residual pressure value lying above atmospheric pressure, even though the actuation element is pressurized by a control pressure lying at zero level or atmospheric level and which generates switching of the actuation element into a position allowing the first closing member to adopt its closed position.
8. A pressure regulating device according to claim 1, further comprising a secondary pressure sensor device detecting the secondary pressure prevailing at the secondary port and connected to an electronic control unit of the pressure regulating device, and containing two pressure sensors connected in parallel.
9. A pressure regulating device according to claim 1, further comprising a primary pressure sensor device detecting the primary pressure prevailing at the primary port and connected to an electronic control unit of the pressure regulating device, in cooperation with which the control pressure for the actuation element is generated.
10. A pressure regulating device according to claim 1, further comprising a pilot valve device which provides the control pressure needed to drive the actuation element and which is fed with pressure medium from the primary port.
11. A pressure regulating device according to claim 10, wherein the pressure regulating valve has a drive chamber which is bounded by a movable drive wall coupled for driving purposes to the actuation element and communicating with a control passage supplying the control pressure, wherein the pilot valve device has an electrically actuated air supply valve device connected to the control passage, and also an electrically actuated vent valve device, independent of the air supply valve device and similarly connected to the control passage.
12. A pressure regulating device according to claim 1, wherein each closing member is assigned, for spring-loading into the closed position, a separate spring device, acting with a pushing effect, and working in conjunction at one end with the assigned closing member and at the other end with the valve casing.
13. A pressure regulating device according to claim 1, wherein the two valve seats are arranged coaxially with clearance from one another and facing in opposite directions, wherein the actuation element is plunger- or rod-shaped and passes coaxially through both overflow ports and wherein the two closing members are mounted on the actuation element with the ability to move axially independently of one another.
14. A method of operating a pressure regulating device, said pressure regulating device having a pressure regulating valve which has a valve casing with a primary port for the supply of pressure medium, a pressure-regulated secondary port for connection to a load, and a vent port, wherein there is provided, between the secondary port and the primary port, a first overflow port bordered by a first valve seat and, between the secondary port and the vent port, a second overflow port bordered by a second valve seat, wherein a first closing member with a spring bias in the direction of a closed position abutting the first valve seat lies opposite the first valve seat, and a second closing member with a spring bias in the direction of a closed position abutting the second valve seat lies opposite the second valve seat, wherein both closing members belong to a regulating unit which is movable relative to the valve casing, which also contains an actuation element which is movable relative to the two closing members and may be driven under the influence of a control pressure to a regulating movement relative to the valve casing, by means of which each closing member may be moved into at least one open position lifted from the assigned valve seat, and wherein the regulating unit is provided, in addition to the two closing members, with a restrictor element fixed to the actuation element and accompanying the regulating movement of the former, while in a position of the actuation element which allows the first closing member to adopt its closed position, the restrictor element adopts a restriction position narrowing the flow cross-section between the primary port and the secondary port to a restricting gap, as compared to the maximum open position of the first closing member which may be produced by the actuation element, wherein by using an electronic control unit and based on a preset or pre-settable secondary pressure set-point value and a secondary pressure actual value prevailing at the secondary port, a control pressure used to drive the actuation element is generated, wherein an electrical message signal is generated if the secondary pressure does not fall below a preset or pre-settable residual pressure value, even though the actuation element is so activated in respect of its control pressure that it is or may be switched into a position allowing the first closing member to adopt its closed position.
15. A method according to claim 14, wherein the secondary pressure prevailing at the secondary port is monitored by means of a secondary pressure sensor device containing two functionally parallel-connected pressure sensors.