Fuji Electric PXF4 Instruction Manual Download Page 11

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530

PV input type

Sets the type of input sensor

JPT1: 0.0 to 150.0°C
JPT2: 0.0 to 300.0°C
JPT3: 0.0 to 500.0°C
JPT4: 0.0 to 600.0°C
JPT5: -50.0 to 100.0°C
JPT6: -100.0 to 200.0°C
JPT7: -199.9 to 600.0°C
PT1: 0.0 to 150.0°C
PT2: 0.0 to 300.0°C
PT3: 0.0 to 500.0°C
PT4: 0.0 to 600.0°C
PT5: -50.0 to 100.0°C
PT6: -100.0 to 200.0°C
PT7: -199.9 to 600.0°C
PT8: -200 to 850°C
J1: 0.0 to 400.0°C
J2: -20.0 to 400.0°C
J3: 0.0 to 800.0°C
J4: -100 to 1000°C
K1: 0 to 400°C
K2: -20.0 to 500.0°C
K3: 0.0 to 800.0°C
K4: -200 to 1300°C
R: 0 to 1700°C
B: 0 to 1800°C
S: 0 to 1700°C
T1: -199.9 to 200.0°C
PT2: -199.9 to 400.0°C
E1: 0.0 to 740.0°C
E2: -150.0 to 740.0°C
E3: -200 to 740°C

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U1: -199.9 to 400.0°C
U2: -200 to 400°C
N: -200 to 1300°C
W: 0 to 2300°C

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0-5 V: 0 to 5 V
1-5 V: 1 to 5 V
0-10: 0 to 10 V
2-10: 2 to 10 V
MV: 0 to 100 mV
0-20: 0 to 20 mA
4-20: 4 to 20 mA

K1

[RESET]
Refer to section 10 for the detail.

531

39LQSXWORZHUOLPLW

6HWVWKHORZHUOLPLWRI39LQSXW

-1999 to 9999

0

[RESET]

532

PV input upper limit

Sets the upper limit of PV input

-1999 to 9999

400

[RESET]

533

Decimal point position

Sets the decimal point position for the PV/SV

0: No digit after decimal point
1: 1 digit after decimal point
2: 2 digit after decimal point
3: 3 digit after decimal point

0

[RESET]

535

6TXDUHURRWH[WUDFWRUFXWSRLQW

Sets the cut point for square root calculation.

-0.1 to 105.0(%)

-0.1%

536

PV input shift

Sets the amount of shift for PV input

-10 to 10%FS

0.00%FS

538

39LQSXW¿OWHU

6HWVWKHWLPHFRQVWDQWIRUWKH39LQSXW¿OWHU

0.0 to 120.0 sec

5.0 sec

543

5HPRWH69]HURDGMXVWPHQW

$GMXVWVWKH]HURVLGHRIUHPRWH69

-50 to 50%FS

0.00%FS

544

5HPRWH69VSDQDGMXVWPHQW

$GMXVWVWKHVSDQVLGHRIUHPRWH69

-50 to 50%FS

0.00%FS

545

Remote SV input range

Sets the range for remote SV input.

0-5v: 0 to 5 V
1-5v: 1 to 5 V
0-10: 0 to 10 V
2-10: 2 to 10 V

1-5V

546

5HPRWH69LQSXW¿OWHU

6HWVWKHWLPHFRQVWDQWIRUWKH569LQSXW¿OWHU

0.0 to 120.0 s

0.0 s

547

OUT1 range

Sets the range of the control output 1(OUT1)

0-5v: 0 to 5 V
1-5v: 1 to 5 V
0-10: 0 to 10 V
2-10: 2 to 10 V
0-20: 0 to 20 mA
4-20: 4 to 20 mA

0-10 (voltage)

4-20 (current)

'LVSOD\HGZKHQ287LVFXUUHQWRUYROWDJHRXWSXW

548     

OUT2 range

Sets the range of the control output 2(OUT2)

0-5v: 0 to 5 V
1-5v: 1 to 5 V
0-10: 0 to 10 V
2-10: 2 to 10 V
0-20: 0 to 20 mA
4-20: 4 to 20 mA

0-10 (voltage)

4-20 (current)

'LVSOD\HGZKHQ287LVFXUUHQWRUYROWDJHRXWSXW

549

09GXULQJ)$/7

Sets the output value for the control output (MV1) during 

)$/7

-5.0 to 105.0%

-5.0%

550

09GXULQJ)$/7

Sets the output value for the control output (MV2) during 

)$/7

-5.0 to 105.0%

-5.0%

551

MV1 during Soft Start

Sets the value for the control output (MV1) during soft start

-5.0 to 105.0%

105.0%

553

Soft Start set time

6HWVWKHWLPHIURPVWDUWXSWRWKH¿QLVKRIVRIWVWDUW

00:00 to 99:59 (hour:min)

00:00

Be sure to set 0.00 during dual control.

554

MV1 during standby

Sets the value for the control output (MV1) during standby

-5.0 to 105.0%

-5.0%

555

MV2 during standby

Sets the value for the control output (MV2) during standby

-5.0 to 105.0%

-5.0%

556

Standby mode

Sets on/off of the alarm output during standby

$/0 2))$2 21

$/0 21$2 21

$/0 2))$2 2))

$/0 21$2 2))

0

[RESET]

557

AO

6HOHFWVZKDWWRWUDQVIHUWRWKHDQDORJRXWSXW

PV
SV
MV
DV
PFb:  Not for use.

PV

558

$2ORZHUVFDOLQJ

6HWVWKH$2ORZHUVFDOLQJ

-100.0 to 100.0%

0.0%

559

AO upper scaling

Sets the AO upper scaling

-100.0 to 100.0%

100.0%

561

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6HWVWKHYROWDJHIRUFDOFXODWLQJHOHFWULFSRZHU

1 to 500V

100 (100 V)

562

&XUUHQWYDOXHIRUVLPSOHSRZHU

calculation

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0.0 to 100.0A

0 (0.0A)

564

'HFLDOSRLQWSRVLWLRQIRUHOHFWULFSRZHU

6HWVWKHSRVLWLRQRIGHFLPDOSRLQWIRUFDOFXODWLRQHGSRZHU

consumption.

0 : 0
1 : 0.1
2 : 0.01
3 : 0.001

1 : 0.1

Do not change it during calculation.

565

3RZHUIDFWRUIRUVLPSOHFDOFXODWLRQ

6HWVWKHSRZHUIDFWRUIRUVLPSOHFDOFXODWLRQ

0.00 to 1.00

1.00

566

Upper limit of relay contact operation

Sets the upper limit on the number of times a relay contact 

FDQRSHUDWH,I\RXVHWLWWRQRDODUPZLOOEHJHQHUDWHG

0 to 9999

100

(100,000 times)

567

Upper limit of operating days

Sets the upper limit on the number of days the device 

RSHUDWHV,I\RXVHWLWWRQRDODUPZLOOEHJHQHUDWHG

0 to 5000

3650 (3650 days)

- 11 -

Summary of Contents for PXF4

Page 1: ...ion or higher degree of insulation The basic insulation requires a clearance at least 1 5 mm DQG D FUHHSDJH RI DW OHDVW PP I VXFK LQVXODWLRQ LV QRW SURYLGHG WKH 8 DQG 1 VDIHW compliance may become invalid Ɣ KROH WKLV HTXLSPHQW PXVW EH PRXQWHG LQ DQ HQFORVXUH LQ RUGHU WR SUHYHQW WKH HOHFWULF VKRFN DQG VSUHDG RI UH Ɣ H VXUH WR LQVWDOO DQ DSSURSULDWH H WHUQDO SURWHFWLYH FLUFXLW WR SUHYHQW H FHVVLYH W...

Page 2: ...EH VHSDUDWHG IURP HOHFWULF SRZHU OLQHV RU load lines Ɣ QSXW VLJQDO ZLUH DQG RXWSXW VLJQDO ZLUH VKRXOG EH VHSDUDWHG HDFK RWKHU QG ERWK VKRXOG EH VKLHOG ZLUH Ɣ I WKHUH LV D ORW RI QRLVH IURP WKH SRZHU VRXUFH DGGLQJ DQ LQVXODWLRQ WUDQVGXFHU DQG XVLQJ D QRLVH OWHU LV UHFRPPHQGHG OZD V DWWDFK D QRLVH OWHU WR D SDQHO WKDW LV JURXQGHG VHFXUHO DQG NHHS WKH ZLULQJ EHWZHHQ WKH QRLVH OWHU RXWSXW VLGH DQG WKH...

Page 3: ... Terminal block is not attached to unused terminals terminal 7 to 12 according to the model Terminal screw M3 6 2 13 18 7 12 1 6 Caution Panel cut dimensions should also meet the above dimensions after the panel is coated DXWLRQV ZKHQ ORVH LW 0RXQWLQJ Ɣ KHQ WKH SRZHU VXSSO LV 9 NHHS WKH PD LPXP DPELHQW WHPSHUDWXUH DW Ɣ I DQ HTXLSPHQW RU ZDOOV ZKLFK KDYH D GHSWK RI PP H LVW DURXQG WKLV LQVWUXPHQW N...

Page 4: ...t or re transmission output or re transmission output or re transmission output or re transmission output or re transmission output Current or re transmission output current Current or re transmission output current Current or re transmission output current Voltage or re transmission output voltage Voltage or re transmission output voltage Voltage or re transmission output voltage 1 or 2 points 3 ...

Page 5: ...L2 AL2 COM AL1 COM AL1 AL2 COM Non C Note 1 DI1 DI COM RS485 8 7 10 9 12 11 14 13 8 7 10 9 DI3 DI2 DI1 DI COM Valve control output 1 Valve Control Valve Control Motorized valve control type Alarm output RTD Current input Voltage input Thermocouple Universal input Process value input Option Digital input RS 485 Digital input 7HUPLQDO RQQHFWLRQ LDJUDP 0RWRUL HG YDOYH FRQWURO W SH 9DOYH FRQWURO RXWSX...

Page 6: ...WR HGLW SDUDPHWHU ZKHQ LQ SDUDPHWHU VHWWLQJ VXEPRGH 86 5 NH Press and hold this key in PV SV display to start the assigned function 7KH IDFWRU VHW IXQFWLRQ IRU WKLV NH LV VZLWFKLQJ EHWZHHQ 581 DQG VWDQGE 86 5 NH Press and hold this key in PV SV display to start the assigned function 7KH IDFWRU VHW IXQFWLRQ IRU WKLV NH LV VZLWFKLQJ EHWZHHQ VWDUW VWRS RI DXWR WXQLQJ Display 2 17 16 1 14 15 13 3 10 1...

Page 7: ...ubmode you can change parameter values by using ȁ9 keys Power ON Operation mode Operation screen PV SV display PV power PV MV display AUTO MANUAL AUTO MANUAL AUTO MANUAL AUTO MANUAL AUTO MANUAL AUTO MANUAL Press and hold P Press and hold in the selected channel Parameter Parameter Operation control mode Setup mode Channel selection mode 䠟䡄䠍 䠟䡄䠎 䠟䡄䠏 䠟䡄䠐 䠟䡄䠑 䠟䡄䠒 䠬䠥䠠 䠬䠨䠰 䠬䠮䠣 䠩䠫䠪 䠝䠨䠩 䠯䠡䠰 䠟䡄䠓 䠟䡄䠔 䠟䡄䠕 䠟...

Page 8: ...SHQG FDOFXODWLRQ oFF 28 Key lock 6HWV WKH NH ORFN WR SUHYHQW ZURQJ RSHUDWLRQ R QR ORFN DOO ORFN 3 U OO EXW 69 locked oFF K 3 FRQWURO SDUDPHWHUV 3DUDPHWHU XQFWLRQ 6HWWLQJ UDQJH QLWLDO YDOXH 5HPDUNV ʋ LVSOD 1DPH 50 Proportional band Sets the proportional band of the PID parameter 0 1 to 999 9 5 0 51 Integration time Sets the integration time of the PID parameter 6HWWLQJ ZLOO WXUQ RII LQWHJUDWLRQ 0 t...

Page 9: ...Sv7 178 0D 3 VHOHFWLRQ QXPEHU KRRVLQJ 3 ZLWK WKH XVHU NH VHWV LW WR WKH PD LPXP possible number R Pid1 Pid2 Pid3 Pid4 Pid5 Pid6 Pid7 di depending on DI Pid7 1RWH 6Y DQG 6YK PXVW EH VHW VR WKDW 6Y 6YK KHQ RX FKDQJH WKH YDOXHV IRU 6Y DQG 6YK FKHFN 69 6Y K WKURXJK 69 6Y K 1RWH 6HW WKH VDPH YDOXH DV WKH RQH IRU WKH 1RUPDO 5HYHUVH VHWWLQJ U Y K K 35 UDPS VRDN SDUDPHWHUV 3DUDPHWHU XQFWLRQ 6HWWLQJ UDQJH ...

Page 10: ...rn No Displays the pattern No of the ramp soak currently selected 0 15 K 0 DODUP SDUDPHWHUV 3DUDPHWHU XQFWLRQ 6HWWLQJ UDQJH QLWLDO YDOXH 5HPDUNV ʋ LVSOD 1DPH 470 0 DODUP W SH 6HW WKH DODUP W SH IRU 0 0 to 58 0 Refer to section 11 for the detail 471 0 K VWHUHVLV Sets the hysteresis for alarm output 1 ON OFF 0 to 50 FS 0 25 FS 472 0 GHOD Sets the delay before detecting alarm output 1 0 to 9999 sec m...

Page 11: ...tput 1 OUT1 0 5v 0 to 5 V 1 5v 1 to 5 V 0 10 0 to 10 V 2 10 2 to 10 V 0 20 0 to 20 mA 4 20 4 to 20 mA 0 10 voltage 4 20 current LVSOD HG ZKHQ 287 LV FXUUHQW RU YROWDJH RXWSXW 548 OUT2 range Sets the range of the control output 2 OUT2 0 5v 0 to 5 V 1 5v 1 to 5 V 0 10 0 to 10 V 2 10 2 to 10 V 0 20 0 to 20 mA 4 20 4 to 20 mA 0 10 voltage 4 20 current LVSOD HG ZKHQ 287 LV FXUUHQW RU YROWDJH RXWSXW 549...

Page 12: ...F control Pid PID control 8 X FRQWURO 6 6HOI WXQLQJ FRQWURO Pid2 PID2 control 2FRE 2 degrees of freedom PID Pid 626 Start mode Sets the operation mode during startup AUTo starts in AUTO mode MAn starts in manual mode REM starts in remote mode 67E VWDUWV LQ VWDQGE PRGH AUTO 627 Control operation cycle Sets the control operation cycle 0 1 to 0 9S 1 to 99S 0 1S 628 3 SDOOHWWH VZLWFKLQJ PHWKRG 6HWV WK...

Page 13: ...FF 4 PV SV and indicators OFF all OFF 5 SV OFF relights for 5 sec by pressing any key 6 PV OFF relights for 5 sec by pressing any key 7 PV and SV OFF relights for 5 sec by pressing any key 8 PV SV and indicators OFF relights for 5 sec by pressing any key 0 946 Blinking PV at input error 6HWV ZKHWKHU RU QRW WR EOLQN 39 DW DQ LQSXW HUURU 0 PV blinks at an input error 1 No blink 0 947 Brightness 6HWV...

Page 14: ...LDOO HIIHFWLYH IRU VLWXDWLRQV ZKHQ D KLJK OHYHO RI FRQWURO LV QRW QHHGHG EXW DXWR tuning cannot be run due to frequent changes in the control target conditions Point KHQ D KLJK OHYHO RI FRQWURO LV UHTXLUHG FKRRVH 3 FRQWURO IX 3 FRQWURO RU 3 control RQGLWLRQV ZKHUH VHOI WXQLQJ FDQ EH XVHG 6HOI WXQLQJ LV XVHG LQ WKH IROORZLQJ VLWXDWLRQV Ɣ KHQ WHPSHUDWXUH ULVHV ZKHQ WKH SRZHU LV WXUQHG RQ Ɣ KHQ WHPSH...

Page 15: ...RYHUZULWHV WKH PID Point Ɣ 3 SDUDPHWHU ZKLFK LV VHW DIWHU DXWR WXQLQJ KDV ILQLVKHG QRUPDOO ZLOO EH PDLQWDLQHG HYHQ ZKHQ WKH SRZHU LV WXUQHG RII RZHYHU WKH 3 YDOXH ZLOO QRW EH FKDQJHG LI WKH SRZHU LV WXUQHG RII GXULQJ DXWR WXQLQJ Q WKLV FDVH UHUXQ DXWR WXQLQJ Ɣ 7KH HTXLSPHQW ZLOO XVH 21 2 SRVLWLRQ FRQWURO GXULQJ DXWR WXQLQJ VR WKHUH PD be a large change in PV according to the process Do not use aut...

Page 16: ...VWHS 1 2 3 4 5 6 7 1 2 1 2 3 4 5 Setting 3RZHU 2Q 6WDUW Ending Output OFF Output Repeat Behavior Off Continuous control Continuous control Off Off Continuous control Continuous control On Off Continuous control Standby Off Off Continuous control Standby On Off Standby Continuous control Off Off Standby Continuous control On Off Standby Standby Off Off Standby Standby On On Continuous control Conti...

Page 17: ...FNLQJ 0DLQWDLQV WKH VWDWH ZKHUH 69 39 7KH 69 UDPS function does not operate Auto or manual Starts the ramp SV from the current SV PV start is off 1 2 3 4 1 2 3 1 2 3 4 5 SV selection function 7KH 69 VHOHFWLRQ IXQFWLRQ FDQ UHFRUG DQG VZLWFK XS WR HLJKW VHWV RI 69 LQIRUPDWLRQ WR WKH SDOHWWH PHQX VHWWLQJV W LV HIIHFWLYH ZKHQ WKH 69 XVHG GXULQJ D SURFHVV DUH QXPHURXV DQG WKH VHW YDOXHV have been previ...

Page 18: ...n be assigned see 12 USER key assignment page 21 8VH WKH IROORZLQJ VWHSV WR VHW WKLV IXQFWLRQ Display the system menu LVSOD WKH DVVLJQ XVHU NH VSHFL FDWLRQ and choose the function Press the key to set the value E DQG U IXQFWLRQV Ɣ 7KH DQWL UHVHW ZLQGXS IXQFWLRQ cuts integration that falls outside of the Ar set range that is centered around SV 5XQQLQJ DXWR WXQLQJ ZLOO VHW WKH RSWLPXP YDOXHV IRU 3 L...

Page 19: ...112 1 PT8 200 to 850 1 328 to 1562 1 Thermocouple J J1 0 0 to 400 0 0 1 32 0 to 752 0 0 1 J2 20 0 to 400 0 0 1 4 0 to 752 0 0 1 J3 0 0 to 800 0 0 1 32 to 1472 1 J4 100 to 1000 1 148 to 1832 1 K K1 0 to 400 0 1 32 to 752 0 1 K2 20 0 to 500 0 0 1 4 0 to 932 0 0 1 K3 0 0 to 800 0 0 1 32 to 1472 1 K4 200 to 1300 1 328 to 2372 1 R R 0 to 1700 1 32 to 3092 1 B B 0 to 1800 1 32 to 3272 1 S S 0 to 1700 1 ...

Page 20: ... be assigned to DO1 to 3 For more details on each of the event output functions refer to 13 OUT DO indicators assignment page 21 ODUP FWLRQ 7 SH RGHV Type A1Tp to A3Tp Alarm Type Action diagram 0 No alarm Absolute value alarm 1 High alarm PV t ALn 2 RZ DODUP PV t ALn 3 LJK DODUP ZLWK KROG PV t ALn 4 RZ DODUP ZLWK KROG PV t ALn Deviation alarm 5 High alarm SV PV t ALn 6 RZ DODUP SV PV t ALn 7 LJK R...

Page 21: ...During auto tuning startup 11 11 11 Normal operation 12 12 12 Standby 13 13 13 During manual mode 14 14 14 During remote SV operation 15 15 15 During ramp SV 16 16 16 System error 20 20 20 Ramp soak event output OFF 21 21 21 RUN 22 22 22 2 23 23 23 GS Guaranty soak 24 24 24 END 110 110 110 Alarm indicator output Alarm 1 indiator output 111 111 111 Alarm 2 indiator output 112 112 112 Alarm 3 indiat...

Page 22: ...OFF HYHO 20 Timer alarm 2 Runs the timer for the alarm 2 21 Timer alarm 3 Runs the timer for the alarm 3 22 No function Not for use 23 No function Not for use 24 No function Not for use 25 SV No 1 Increases the SV number by 1 1 HYHO 26 SV No 2 Increases the SV number by 2 2 HYHO 27 SV No 4 Increases the SV number by 4 4 HYHO 28 PID No 1 Increases the PID number by 1 1 HYHO 29 PID No 2 Increases th...

Page 23: ...andard type Note 1 Not available for the 7th code C E P R S However if you want to order the 6th code A SPST relay contact for the control output 1 and the 7th code R or S current voltage re transmission output for the control output 2 specify the model as follows Note 2 When using the CT input as a heater burnout alarm add one alarm output for it in the 9th code Note 3 When using the current inpu...

Page 24: ... charged our call out fee 3OHDVH QRWH WKDW ZH FDQQRW SURYLGH FRPPLVVLRQLQJ DQG RU UHDGMXVWPHQW IRU ZKROH V VWHP LQFOXGLQJ our product at repair or replacement of failed parts 7KH ZDUUDQW GRHV QRW DSSO WR WKH IROORZLQJ FDVHV 1 The malfunction occurs due to inappropriate conditions environment handling or usage that is QRW LQVWUXFWHG LQ D FDWDORJ LQVWUXFWLRQ ERRN RU XVHU V PDQXDO 2 The malfunction i...

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