beautypg.com

Restrictions on each detection mode, Restrictions on each detection mode -8, Restrictions for sensitivity – KEYENCE LV-N10 Series User Manual

Page 102

background image

6

App

endi

x

6-8

- Digital Laser Sensor LV-N10 Series User's Manual -

6-4

Restrictions on Each Detection Mode

The sensitivity setting is limited according to the selected detection mode.
Refer to the chart below for details.

Reading the table

(Example) When detection mode is set to dtM1 (DATUM1 mode)

When the sensitivity setting is set to Std, two-point calibration, maximum
sensitivity calibration and full auto calibration are enabled.
Positioning calibration, preset function and zero shift function operations
are disabled.

Refer to page 4-4 for details of "Sensitivity Setting" and page 4-8 for details of
"Detection Mode".

*1

Items which are indicated as × for the sensitivity setting will operate with Std cal-
ibration.

*2

In the edge detection mode, the bar display, even if SEtP/OSEt is selected for the
sensitivity setting, the mode will function as edge detection calibration.

*3

Positioning calibration is not possible in the DATUM1 or DATUM2 modes. This
will operate as two-point calibration.

*4

If the [PRESET] button is pressed in the DATUM1/DATUM2 mode, the received
light intensity will be forcibly calibrated to 100.0/.0. "---- ----" appears and no
change is seen when the [PRESET] button is pressed in the edge detection
mode.

*5

The zero shift operation does not function when the DATUM1/DATUM2 or edge
detection mode is selected.

Restrictions for Sensitivity Settings in Each Detection Mode

Sensitivity setting

*1

Preset

function

*4

Zero shift

calibration

*5

Std

(Standard)

SEtP

(Percentage

calibration)

0SEt

(Zero shift

calibration)

two-point

calibration

Maximum

sensitivity

calibration

Full auto

calibration

Positioning

calibration

*3

Edge

detection

*2

Det

ect
io

n mode

Std

×

DtM1

Ч

Ч

Ч

Ч

Ч

DtM2

Ч

Ч

Ч

Ч

Ч

Area

Ч

Ч

_|~d

Ч

Ч

Ч

Ч

Ч

Ч

Ч

Ч

~L_d

Ч

Ч

Ч

Ч

Ч

Ч

Ч

Ч