IP Library Granted Patent US 10,812,092
Granted Patent B2
US 10,812,092 · App. 16/117,580 · Granted Oct 20, 2020

Frequency signal generation device and frequency signal generation system

Inventor: Yoshiyuki Maki (Suwa, JP)
Assignee: Seiko Epson Corporation
H03L7/26G04F5/14
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Quick Facts
Patent No.
US 10,812,092
App. No.
16/117,580
Granted
Oct 20, 2020
Kind
B2
Abstract

A frequency signal generation device includes a substrate, a light source that is disposed on a surface of the substrate, and an atom cell that is disposed on the surface of the substrate. The atom cell contains gaseous alkali metal atoms and includes a first portion through which light emitted from the light source passes, a second portion housing a liquid alkali metal atom, and a third portion which connects the first portion to the second portion. A marker is provided that indicates a direction in which the liquid alkali metal atoms move to the third portion by gravity when the surface is vertically oriented.

Claims (66)

1. A frequency signal generation device comprising:

a substrate;

a light source disposed on a surface of the substrate;

an atom cell disposed on the surface of the substrate, the atom cell containing gaseous alkali metal atoms and including:

a first portion through which light emitted from the light source passes;

a second portion housing liquid alkali metal atoms; and

a third portion fluidly connecting the first portion to the second portion;

a marker that indicates a direction in which the liquid alkali metal atoms move toward the third portion by gravity when the surface is vertically oriented,

a container that accommodates the substrate, the light source, and the atom cell; and

a disposition substrate on which the container is disposed,

wherein the marker is a structural member installed to the disposition substrate, and

when the frequency signal generation device is inserted into an opening formed in a rack by orienting the surface such that the liquid alkali metal atom moves to the third portion due to gravity, the structural member abuts the rack and hinders the frequency signal generation device from being inserted into the opening.

2. The frequency signal generation device according to claim 1 ,

wherein the atom cell further includes an inner surface defining a space containing the gaseous alkali metal atoms and the liquid alkali metal atoms,

wherein the first portion includes:

a first region of the inner surface through which the light passes; and

a first space portion of the space through which the light passes,

wherein the second portion includes:

a second region of the inner surface housing the liquid alkali metal atoms; and

a second space portion of the space housing the liquid alkali metal atoms, and

wherein the third portion is at least one of:

a third region of the inner surface connecting the first region to the second region; or

a third space portion of the space connecting the first space portion to the second space portion.

3. The frequency signal generation device according to claim 1 ,

wherein the atom cell includes a cavity through which the light emitted from the light source passes and a reservoir housing the liquid alkali metal atoms.

4. The frequency signal generation device according to claim 3 ,

wherein the atom cell includes a wall between the cavity and the reservoir, and

wherein a hole fluidly connecting the cavity to the reservoir is in the wall.

5. The frequency signal generation device according to claim 1 ,

wherein the atom cell includes a cavity including the first portion and the second portion, and

wherein when viewed in a direction in which the light is incident on the atom cell, a distance between a center of the first portion and the liquid alkali metal atoms is greater than a distance between the center of the first portion and a center of the cavity.

6. A frequency signal generation system comprising:

a substrate;

a light source disposed on a surface of the substrate;

an atom cell disposed on the surface of the substrate, the atom cell containing gaseous alkali metal atoms and including:

a first portion through which light emitted from the light source passes;

a second portion housing liquid alkali metal atoms; and

a third portion fluidly connecting the first portion to the second portion;

a sensor that detects a direction in which gravity acts; and

an output device outputting an output based on a detection result of the sensor when the liquid alkali metal atoms move toward the third portion because of gravity.

7. A frequency signal generation system comprising:

a frequency signal generation device including:

a substrate;

a light source disposed on a surface of the substrate;

an atom cell disposed on the surface of the substrate, the atom cell containing gaseous alkali metal atoms and including:

a first portion through which light emitted from the light source passes;

a second portion housing liquid alkali metal atoms; and

a third portion fluidly connecting the first portion to the second portion;

a container that accommodates the substrate, the light source, and the atom cell,

a disposition substrate on which the container is disposed, and

a stopper that is installed on the disposition substrate; and

a rack that includes an opening into which the frequency signal generation device is inserted by vertically orienting the surface of the substrate,

wherein the stopper abuts against the rack to hinder the frequency signal generation device from being inserted into the opening when the frequency signal generation device is inserted into the opening at an orientation in which a movement direction of the liquid alkali metal atoms toward the third portion because of gravity is oriented along a direction in which gravity acts.

8. A frequency signal generation system comprising:

a frequency signal generation device including:

a substrate;

a light source disposed on a surface of the substrate;

an atom cell disposed on the surface of the substrate, the atom cell containing gaseous alkali metal atoms and including:

a first portion through which light emitted from the light source passes;

a second portion housing liquid alkali metal atoms; and

a third portion fluidly connecting the first portion to the second portion;

a container that accommodates the substrate, the light source, and the atom cell, and

a disposition substrate on which the container is disposed and faces the substrate; and

a rack that includes an opening into which the frequency signal generation device is inserted by orienting the surface of the substrate along a gravity direction,

wherein when viewed in a normal direction of a surface of the disposition substrate on which the container is disposed, a length of the disposition substrate in a first direction which coincides with a movement direction of the liquid alkali metal atoms toward the third portion because of gravity is different from a length of the disposition substrate in a second direction perpendicular to the normal direction and the first direction, and

wherein a difference between the length in the first direction and a length in a longitudinal direction of the opening is greater than a difference between the length in the second direction and the length in a longitudinal direction of the opening.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2022
From: SEIKO EPSON CORPORATION
To: MICROCHIP TECHNOLOGY INCORPORATED
Reel/Frame 061301/0770 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2018
From: MAKI, YOSHIYUKI
To: SEIKO EPSON CORPORATION
Reel/Frame 046756/0164 →