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Use the procedure below to configure threshold value setting for each channel.

Change the setting in accordance with the cylinder on which the sensor head is installed.

The switch output can be inverted for each channel.

Use the procedure below to change the sensor head LED display position.

Input conditions

0<0FS<FS

0FS<FS<1000

The  voltage  differential  of  at  least  1 V  is  required  between  the 
0FS position and the FS position.

If conditions are not satisfied, 

 will appear on the display and 

settings will be disregarded.

Scaling is performed at the positions between two specified points.

Note  1: Input conditions: Upper limit value (L2) > Lower limit value (L1) + 1
 

2:   When the difference between scaling set time 0Fs and Fs is 500 or more, 

use the following upper limit value (L2) > Lower limit value (L1) + 10.

Note 1:  Once this setting is changed, initialization will be required to return to 

its previous setting.

 

2:  Configuring scaling settings causes all threshold values to change to 

the following: Upper limit value (L2) = FS; lower limit value (L1) = 0FS.  
Change the threshold value settings as required.

 

3:  Configuring scaling settings causes the scaling value setting range to 

become 0FS to FS.

Threshold value setting (SET1)

Setting the type of mounted cylinder (SET2)

Switch output inversion setting (SET4)

LED display range setting (SET5)

Scaling setting (SET6)

Window comparator

Hysteresis

Upper limit value (L2)

ON/OFF position

ON position

Lower limit value (L1)

ON/OFF position

OFF position

Procedure Button operation

Display after operation

Indicator Backlight

Remark

1

Green Set the output range of each OUT.

2

(Initial default: 60) OUT flashes

Red

Set the upper limit setting for flashing indicator.

3

Select the value to be changed.

4

(Initial default: 40)

Green Set the lower limit setting for flashing indicator.

5

Select the value to be changed.

6

(Initial default: 60) OUT flashes

Red

OUT2, OUT3: Repeat steps 2 through 5.

OUT4: Return to sensing mode.

Procedure Button operation Display after operation

Remark

1

Selects the type of mounted cylinder.

2

3

(Initial default: 10)

4

Changes the model number of the cylinder that is mounted.

5

Returns to sensing mode after one second.

Use the procedure below to specify the output mode for each channel.

Note: These settings are valid within the effective measuring range (operation range).

Output mode setting (SET3)

Procedure Button operation Display after operation

Remark

1

Set the output mode of each OUT.

2

Select the channel of each OUT.

3

  to  

CH1:OUT1 CH2:OUT2      CH3:OUT3 
CH4:OUT4

4

Select the output mode.

5

 to  

: Output off
: Window comparator mode
: Hysteresis modeNote

6

 *

Displays the set channel number (one second)

Displays the set channel mode (one second)

7

Returns to detection mode after one second.

Procedure Button operation Display after operation

Remark

1

Set the contact type of each OUT.

2

Select the channel of each OUT.

3

  to  

CH1:OUT1 CH2:OUT2      CH3:OUT3 
CH4:OUT4

4

Select the contact point type.

5

 to  

: Non-inverted (A contact)

   

: Inverted (B contact)

6

 *

Displays the set channel number (one second)

Displays the set channel mode (one second)

7

Returns to detection mode after one second.

Procedure Button operation Display after operation

Remark

1

2

Set the display lower limit value.

3

(Initial default: 40)

4

Change the value.

5

Set the display upper limit value.

  

6

(Initial default: 60)

7

Change the value.

8

Returns to detection mode after one second.

Procedure Button operation Display after operation

Remark

1

2

Move the cylinder to the lower limit position.

3

(Initial default: 0) Set the scaling lower limit value.

4

Change the value.

5

Move the cylinder to the upper limit position.

6

(Initial default: 100) Set the scaling upper limit value.

7

Change the value.

8

Returns to detection mode after one second.

For information about other cylinders, contact Koganei.

Setting guidelines

Compatible cylinder Cylinder bore SET 2 number

NHC1D

Total cylinder bore

10

NHL1D

Total cylinder bore

10

NHB

PG(L) Total cylinder bore

10

NHB

P(A)

Total cylinder bore

10

NHB

S

Total cylinder bore

10

NHBDSL(G)

Total cylinder bore

10

AFDPG

6.18 [0.243]

15

8.14 [0.32]

12

12 [0.472]

16

Compatible cylinder Cylinder bore SET 2 number

MGA

Total cylinder bore

20

TBDA

Total cylinder bore

18

ARS

Total cylinder bore

16

CDAS
SGDA

6 [0.236]

13

8 [0.315]

14

32 [1.260]

16

Other than above

15

MS

6.10 [0.240]

18

16.20 [0.638]

16

2

駆動機器図面

エアシリンダ

三校

856

旧版

13

03̲2016

Summary of Contents for ZL1 Series

Page 1: ... of inner circuits 849 Specifications 850 Order codes 851 Dimensions 852 Setting instructions 854 Before use be sure to read the safety precautions at the front of the general personal catalog CAUTION Linear Magnetic Sensor Controller RoHS directive compliant products 845 03 2016 ...

Page 2: ... display 100 60 40 0F Responsedifferential fixed t Hand full open Holding workpiece Hand full open Hand full open Responsedifferential fixed Effective setting range signal STABI The ON range of each output can be set within the effective measuring range sensor head ON range Response differential is fixed 2 F S When the controller setting and sensor heat setting positions are as shown below OUT1 Th...

Page 3: ...0 197 5 0 197 L hand NHL1D 4 0 157 4 0 157 5 0 197 5 0 197 5 0 197 Air hand NHB parallel type NHB PG L 4 0 157 6 5 0 256 10 0 394 14 0 551 20 0 787 Air hand NHB parallel type NHB P A 4 0 157 4 0 157 8 0 315 12 0 472 14 0 551 Air hand NHB swing type NHB S 10 to 30 10 to 30 10 to 30 10 to 30 10 to 30 NHB swing 180 degrees NHBDSL G 80 85 65 65 Flat type air hand AFDPG 5 0 197 9 0 354 7 0 276 10 0 394...

Page 4: ...D input Sensor head red lead 5 GND Sensor head blue lead 6 NC Unconnected 5 Taking care not to allow the lead wires to come out of the connector use the special tool to squeeze the cover and body of the connector until the cover is pressed into the body Connection is complete when the cover is even with the connector body 6 Double check to make sure that wiring is correct Attaching and detaching o...

Page 5: ... transitional state 1 second when the power is turned on 3 Never use a needle or any other sharp pointed object to perform key operations 24 VDC 10 D Main circuit Linear magnetic sensor controller Sensor head Power supply switching cable Note If you use an extended cable be aware that voltage decreases due to its resistance 1 2 3 4 5 OV blue wire LED red wire B_IN black wire A_IN white wire V brow...

Page 6: ... Hz Ambient temperature 0 to 50 C 32 to 122 F non condensation non freezing Storage temperature range 10 to 70 C 14 to 158 F non condensation non freezing Mass 20 g 0 705 oz when 1 L lead wire length is 1000 mm 39 in Controller Item Model ZL1 Power supply voltage 24 VDC 10 Consumption current 50 mA max not including supply power to sensor Sensor input supply power and voltage 5 VDC Sensor input ma...

Page 7: ...ngth 1L 1000 mm 39 in 2L 2000 mm 79 in 3L 3000 mm 118 in Sensor head ZLW 3L Power supply switching cable ZLBK100 Protective front cover ZL 6M Mini clamp wire mount plug 6 P for sensor head ZL 8M Mini clamp wire mount plug 8 P for power supply switching cable Power supply switching cable Blank No power supply switching cable 3L With power supply switching cable length of 3000 mm 118 in 851 03 2016 ...

Page 8: ...3 1 693 51 2 008 39 4 1 551 1 2 3 4 45 1 772 1 5 0 059 9 5 0 374 30 1 181 ZL1 KOGANEI SW OUT ZL1 KOGANEI SW OUT ZL1 JAPAN 752 6P_CON 5V A_IN B_IN LED GND NC 8P_CON P 1 2 3 4 5 6 7 8 P 1 2 3 4 5 6 24 VDC ANALOG STABI GND OUT_1 OUT_2 OUT_3 OUT_4 20 1 0 791 4 6 0 181 4 1 0 161 φ2 9 0 114 15 6 0 614 22 5 0 886 M2 5 slotted head set screw Center point of sensitivity of the sensor 7 2 0 283 Indicator li...

Page 9: ...protective front cover ZL 6M mini clamp wire mount plug 6 P for sensor head ZL 8M mini clamp wire mount plug 8 P for power supply switching cable Dimensions mm in 5 7 0 224 5 0 197 30 1 181 34 7 1 366 24 1 0 949 Red 18 5 0 728 6 0 236 5 03 0 198 15 6 0 614 853 03 2016 ...

Page 10: ... flash memory Note that flash memory has a limited life and the number of rewrites is 10 000 Nomenclature and functions No Name Description Display Effective measuring range setting details error indicators Switch output indicator Lights when switch output is ON Channels 1 to 4 UP key Use to increase a setting value DOWN key Use to decrease a setting value Mode key Use when configuring settings t ...

Page 11: ...el of mounted cylinder 10 Selects the output mode of each channel CO4 Can be used to invert the switch output of each channel S 0 Changes the sensor head LED indicator HI 60 LO 40 Configures the scaling setting OFS 0 FS 100 Configures the display panel setting bL 1 Configures the LCD display cycle dT 1 Adjusts the switch output response time of each channel Sd 1 Performs initialization 1 Performs ...

Page 12: ...hanges the model number of the cylinder that is mounted 5 Returns to sensing mode after one second Use the procedure below to specify the output mode for each channel Note These settings are valid within the effective measuring range operation range Output mode setting SET3 Procedure Button operation Display after operation Remark 1 Set the output mode of each OUT 2 Select the channel of each OUT ...

Page 13: ...Error description Error clear The selected channel s sensor head is burned out or not connected In case of burn out turn off power and then replace the sensor head I n v a l i d s e t t i n g w h e n configuring the scaling setting Reconfigure the scaling setting so it satisfies the required scaling conditions Overvoltage applied to sensor input After eliminating the cause of the error hold down t...

Page 14: ...858 03 2016 ...

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