Se tt in g, Xy ∗1 l, X y %l – Konica Minolta Chroma Meter CS-200 User Manual

Page 38: X ∆y l, U’v’ ∗1 l, U’ v’ %l, U’ ∆v’ l, T ∆uv ∗2 l, T ∆uv %l, X ------ y

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36

S

e

tt

in

g

Selecting Absolute Value (ABS)/Difference (DIFF) Display

Whether chromaticity value is shown in absolute (ABS) or difference (DIFF) is selectable.
See below table for each case.

∗ Setting at the shipment from factory : Absolute value (ABS)

Color Space

Switching between Absolute Value (ABS) and Difference (DIFF) Dominant wavelength

L

V

xy ∗1

L

V

x y

%L

V

∆L

V

∆x ∆y

L

V

u’v’ ∗1

L

V

u’ v’

%L

V

∆L

V

∆u’ ∆v’

L

V

T ∆uv ∗2 L

V

T ∆uv

%L

V

∆L

V

∆T

XYZ

X Y Z

∆X ∆Y ∆Z

%X %Y %Z

Dominant
wavelength

λd

∆λd ∗3

∗1 Y is displayed instead of Lv when observer abgle is 10˚.

∗2 Not displayed when observer angle is 10˚.

∗3 Even if either the measured value, target color, or both are the complementary wave-

length, the difference between the two values will be displayed. Further, even in such

case, the display indication will remain ∆λd.

A

B

S

/D

IF

F

CH00:

<

DEFAULT

>

Lv ------

cd/m

2

x ------

y ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

Lv ------

x ------

y ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

%Lv ------

∆Lv ------

∆x ------

∆y ------

CH00:

<

DEFAULT

>

%Lv ------

%

∆Lv ------

cd/m

2

x ------

∆y ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

CH00:

<

DEFAULT

>

Lv ------

cd/m

2

u’ ------

v’ ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

Lv ------

x’ ------

y’ ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

%Lv ------

∆Lv ------

∆u’ ------

∆v’ ------

CH00:

<

DEFAULT

>

%Lv ------

%

∆Lv ------

cd/m

2

u’ ------

∆v’ ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

CH00:

<

DEFAULT

>

Lv ------

cd/m

2

T ------

K

uv ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

Lv ------

T ------

Δuv ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

%Lv ------

∆Lv ------

∆T ------

CH00:

<

DEFAULT

>

%Lv ------

%

∆Lv ------

cd/m

2

∆T ------

K

<

MODE

>

SINGLE

[ ]  [ 2° ]

CH00:

<

DEFAULT

>

λ

d ------

nm

<

MODE

>

SINGLE

[ ]  [ 2° ]

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

∆d ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

∆λd ------

CH00:

<

DEFAULT

>

λ

d ------

nm

<

MODE

>

SINGLE

[ ]  [ 2° ]

CH00:

<

DEFAULT

>

X ------

Y ------

Z ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

X ------

Y ------

Z ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

∆X ------

∆Y ------

∆Z ------

<

ANGL

>

1° VIEW

<

SPD

>

AUTO

<

SYNC

>

200.00Hz

<

LENS

>

STANDARD

<

MEM

>

AUTO NUM

<

MEMORY DATA

>

M

OOO

:(NO DATA)

%X ------

%Y ------

%Z ------

CH00:

<

DEFAULT

>

%X ------

%

%Y ------

%

%Z ------

%

<

MODE

>

SINGLE

[ ]  [ 2° ]

CH00:

<

DEFAULT

>

∆X ------

∆Y ------

∆Z ------

<

MODE

>

SINGLE

[ ]  [ 2° ]

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