IP Library Granted Patent US 10,025,163
Granted Patent B2
US 10,025,163 · App. 15/591,507 · Granted Jul 17, 2018

Flash unit and emitted light amount control method

Inventor: Kanako Hoshino (Saitama, JP)
Assignee: Olympus Corporation
G03B15/05H04N5/2256H04N5/2354H05B37/0281G03B2215/0517
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Quick Facts
Patent No.
US 10,025,163
App. No.
15/591,507
Granted
Jul 17, 2018
Kind
B2
Abstract

A flash unit capable of being attached to a flash control unit, comprising: a memory that stores information relating to a light emission time for actual flash corresponding to a difference between an emitted light amount command value for actual flash and an emitted light amount command value for pre-flash, and a controller, including an light emission time calculation section that obtains light emission time corresponding to emitted light amount command value for actual flash based on emitted light amount command value for pre-flash, emitted light amount command value for actual flash, and information stored in the memory, wherein the controller inputs the emitted light amount command value for pre-flash and the emitted light amount command value for actual flash acquired to the light emission time calculation section, and controls actual flash of the flash light emitting source based on the light emission time.

Claims (37)

1. A flash unit capable of being attached to a flash control unit, comprising:

a flash light emitting source;

a communication circuit that carries out communication with the flash control unit;

a memory that stores information relating to a light emission time for actual flash corresponding to a difference between an emitted light amount command value for actual flash of the flash light emitting source and an emitted light amount command value for pre-flash; and

a controller, including a light emission time calculation section, that obtains light emission time corresponding to emitted light amount command value for actual flash based on (1) an emitted light amount command value for pre-flash that has been received from the flash control unit via the communication circuit, (2) an emitted light amount command value for actual flash that has been received from the flash control unit via the communication circuit, and (3) information stored in the memory, wherein

the controller inputs the emitted light amount command value for pre-flash that has been received from the flash control unit via the communication circuit to the light emission time calculation section, inputs the emitted light amount command value for actual flash that has been received from the flash control unit via the communication circuit to the light emission time calculation section, and controls actual flash of the flash light emitting source based on the light emission time obtained by the light emission time calculation section.

2. The flash unit of claim 1 , wherein

the controller is capable of carrying out a first pre-flash and a second pre-flash for the flash control unit, before actual flash of the flash light emitting source,

the memory further stores information relating to light emission time for actual flash corresponding to a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash, and

the light emission time calculation section obtains light emission time corresponding to emitted light amount command value for actual flash based on emitted light amount command value for first pre-flash that has been input, emitted light amount command value for second pre-flash that has been input, and information stored in the memory.

3. The flash unit of claim 2 , wherein

the memory contains a plurality of items of information relating to light emission time corresponding to the emitted light amount command value for actual flash, in accordance with a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash.

4. The flash unit of claim 1 , wherein

the memory contains information relating to light emission time corresponding to the emitted light amount command value for actual flash, in accordance with a difference between the emitted light amount command value for pre-flash and the emitted light amount command value for actual flash, and the emitted light amount command value for pre-flash, and

the light emission time calculation section obtains information relating to light emission time corresponding to the emitted light amount command value for actual flash, in accordance with a difference between the emitted light amount command value for pre-flash and the emitted light amount command value for actual flash, and the emitted light amount command value for pre-flash.

5. The flash unit of claim 4 , wherein

the memory contains information relating to light emission time corresponding to a plurality of the emitted light amount command values for actual flash in accordance with the emitted light amount command value for pre-flash.

6. An emitted light amount control method, for a flash unit that is capable of being attached to a flash control unit, and has a flash light emitting source and a memory that stores information relating to light emission time for actual flash corresponding to a difference between emitted light amount command value for actual flash and emitted light amount command value for pre-flash of the flash light emitting source, comprising:

carrying out communication with the flash control unit;

calculating a light emission time corresponding to emitted light amount command value for actual flash based on a difference between an emitted light amount command value for pre-flash that has been communicated from the flash control unit and an emitted light amount command value for actual flash that has been communicated from the flash control unit, and information stored in the memory; and

controlling actual flash of the flash light emitting source based on the light emission time for actual flash that has been calculated.

7. The emitted light amount control method of claim 6 , wherein:

a first pre-flash and a second pre-flash for the flash control unit are carried out before actual flash of the flash light emitting source,

wherein the memory further stores information relating to light emission time for actual flash corresponding to a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash, and

light emission time corresponding to emitted light amount command value for actual flash is obtained based on emitted light amount command value for first pre-flash that has been input, emitted light amount command value for second pre-flash that has been input, and information stored in the memory.

8. The emitted light amount control method of claim 7 , wherein:

the memory contains a plurality of items of information relating to light emission time corresponding to the emitted light amount command value for actual flash, in accordance with a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash.

9. A non-transitory computer-readable medium storing a processor executable code, which when executed by at least one processor, this processor being built into a flash unit that is capable of being attached to a flash control unit, the flash unit having a memory that stores information relating to a light emission time for actual flash corresponding to a difference between an emitted light amount command value for actual flash and an emitted light amount command value for pre-flash of the flash light emitting source, carries out control of emitted light amount for the flash unit, the emitted light amount control method comprising:

carrying out communication with the flash control unit;

calculating a light emission time corresponding to emitted light amount command value for actual flash based on a difference between an emitted light amount command value for pre-flash that has been communicated from the flash control unit and an emitted light amount command value for actual flash that has been communicated from the flash control unit, and information stored in the memory; and

controlling actual flash of the flash light emitting source based on the light emission time for actual flash that has been calculated.

10. The non-transitory computer-readable medium of claim 9 , the emitted light amount control method comprising:

carrying out a first pre-flash and a second pre-flash for the flash control unit before actual flash of the flash light emitting source,

wherein the memory further stores information relating to light emission time for actual flash corresponding to a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash, and

obtaining light emission time corresponding to emitted light amount command value for actual flash based on emitted light amount command value for first pre-flash that has been input, emitted light amount command value for second pre-flash that has been input, and information stored in the memory.

11. The non-transitory computer-readable medium of claim 9 , wherein:

the memory contains a plurality of items of information relating to light emission time corresponding to the emitted light amount command value for actual flash, in accordance with a difference between the emitted light amount command value for first pre-flash and the emitted light amount command value for second pre-flash.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2021
From: OLYMPUS CORPORATION
To: OM DIGITAL SOLUTIONS CORPORATION
Reel/Frame 058294/0274 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2017
From: HOSHINO, KANAKO
To: OLYMPUS CORPORATION
Reel/Frame 042323/0972 →
Priority Claims (1)
JP 2016-104201 · May 25, 2016 · national
Continuity (1)
Related Publication 20170343887A1 · Nov 30, 2017