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Fuji Electric FKP pressure transmitter Datasheet

35(6685( 75$160,77(5 ',5(&7 02817 7<3( DATA SHEET The FCX- A I I pressure transmitter accurately measures gauge pressure and transmits proportional 4 to 20mA. signal. The transmitter utilizes the unique micromachined capacitive silicon sensor with state-of-the-art microprocessor technology to provide exceptional performance and functionality. FEATURES. 1. High accuracy accuracy is a standard feature. Fuji's micro-capacitance silicon sensor assures this accuracy for all elevated or sup- pressed calibration ranges without additional adjustment. 0 LQLPXP HQYLURQPHQWDO LQ XHQFH. The Advance Floating Cell design which protects the pres- SPECIFICATIONS. sure sensor against changes in temperature, and overpres- sure substantially reduces total measurement error in actual )XQFWLRQDO VSHFL FDWLRQV.))))

3 Zero/span adjustment: Zero and span are adjustable from the HHC(1).Zero and span are also adjustable externally from the adjustment screw. 'DPSLQJ (1)Adjustable from HHC or local adjustment unit with

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Transcription of Fuji Electric FKP pressure transmitter Datasheet

1 35(6685( 75$160,77(5 ',5(&7 02817 7<3( DATA SHEET The FCX- A I I pressure transmitter accurately measures gauge pressure and transmits proportional 4 to 20mA. signal. The transmitter utilizes the unique micromachined capacitive silicon sensor with state-of-the-art microprocessor technology to provide exceptional performance and functionality. FEATURES. 1. High accuracy accuracy is a standard feature. Fuji's micro-capacitance silicon sensor assures this accuracy for all elevated or sup- pressed calibration ranges without additional adjustment. 0 LQLPXP HQYLURQPHQWDO LQ XHQFH. The Advance Floating Cell design which protects the pres- SPECIFICATIONS. sure sensor against changes in temperature, and overpres- sure substantially reduces total measurement error in actual )XQFWLRQDO VSHFL FDWLRQV.))))

2 HOG DSSOLFDWLRQV . 3. Fuji/HART bilingual communications protocol 7\SH . FKP: Smart, 4 to 20mA DC + Fuji/Hart digital signal FCX- A I I series transmitter offers bilingual communications 6 HUYLFH . to speak both Fuji proprietary protocol and HART . Liquid, gas, or vapour Any HART compatible devices can communicate with FCX- 6 SDQ UDQJH DQG RYHUUDQJH OLPLW . AII. Overrange Span limit kPa {bar} Range limit $SSOLFDWLRQ H[LELOLW\ Type limit kPa {bar}. Min. Max. MPa {bar}. Various options that render the FCX- A I I suitable for almost any process applications include: FKP 01 130 -100 to +130 1. { } { } {-1 to + } {10}. Full range of hazardous area approvals FKP 02 500 -100 to +500 %XLOW LQ 5), OWHU DQG OLJKWQLQJ DUUHVWHU { } {5} {-1 to +5} {15}. FKP 03 3000 -100 to +3000 9. 5-digit LCD meter with engineering unit { } {30} {-1 to +30} {90}.]

3 FKP 04 10000 -100 to +10000 15. %XUQRXW FXUUHQW H[LELOLW\ 8 QGHU 6 FDOH WR P$ ^ ` {100} {-1 to +100} {150}. 2 YHU 6 FDOH WR P$ . Lower range limit (vacuum limit) is: Burnout signal level is adjustable using Model FXW or Hand 6 LOLFRQH OO VHQVRU 6HH )LJ . Held Communicator (HHC) to comply with NAMUR NE43. )OXRULQDWHG OO VHQVRU N3D DEV PP+J DEV DW EHORZ . 6. Dry calibration without reference pressure &. Thanks to the best combination of unique construction 2 XWSXW VLJQDO . of mechanical parts (Sensor unit) and high performance 4 to 20mA DC with digital signal superimposed on the electronics circuit (Electronics unit), reliability of dry 4 to 20mA signal. 3 RZHU VXSSO\ . calibration without reference pressure is at equal level as transmitter operates on to 45V DC at transmitter wet calibration.]

4 Terminals. to 32V DC for the units with optional arrester Fuji Electric France EDSF5-98e Date 1 RYHPEHU . /RDG OLPLWDWLRQV VHH JXUH EHORZ. [:]. $XWKRULW\ )ODPHSURRI. 2000. 1533: ATEX Ex II 2 GD. Load resistance ([ G ,,& 7 & 7D & 1500 ([ G ,,& 7 & 7D & (X) ([ W' $ ,3 7 &. Ex tD A21 IP66/67 T 100 C. 1000 (OHFWULFDO UDWLQJV. 600: 0 RGHO :LWKRXW DUUHVWHU . Operating 8L 9GF P$ ORRS SRZHUHG 3L : 500 area 0 RGHO :LWK DUUHVWHU . 8L 9GF P$ ORRS SRZHUHG 3L : 250 24V 45V. )DFWRU\ &ODVV , 0 XWXDO 'LY *URXSV % & '. 10 50 [V ] 7 7\SH ;. &ODVV ,, ,,, . Power voltage 'LY *URXSV ( ) *. (D) 7 7\SH ;. 7 DPE PD[ C. Note: For communication with HHC(1) (model: FXW), min. of 250 1 CSA &ODVV , *URXSV & DQG ' . required. &ODVV ,, *URXSV ( ) DQG * &ODVV ,,, 0D[LPXP DPELHQW WHPSHUDWXUH &. +D]DUGRXV ORFDWLRQV (E) 0D[LPXP ZRUNLQJ SUHVVXUH 0SD.))]]]]]

5 (OHFWULFDO UDWLQJV. $XWKRULW\ 0 RGHO :LWKRXW DUUHVWHU . ,QWULQVLF VDIHW\. 'LJLW 8L 9GF P$. ATEX Ex II 1 G 0 RGHO :LWK DUUHVWHU . ([ LD ,,& 7 & 7D & 8L 9GF P$. (K) ([ LD ,,& 7 & 7D & 1 RWH 6 HDO QRW UHTXLUHG . ,3 . IECEx ([ G ,,& 7 & 7D & Entity Parameters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

6 - : $ ' & WR C ATEX Ex II 3 G. ([ Q$ ,, 7 & 7D & Entity Parameters: ,3 . 9PD[ 9 ,PD[ P$ 3L : (OHFWULFDO UDWLQJV. &L Q) /L P+ (P) 0 RGHO :LWKRXW DUUHVWHU . 8L 9GF P$ ORRS SRZHUHG 3L : CSA ([ LD &ODVV , *URXSV $ % & DQG ' 0 RGHO :LWK DUUHVWHU . &ODVV ,, *URXSV ( ) DQG * &ODVV ,,, 8L 9GF P$ ORRS SRZHUHG 3L : 3HU GUDZLQJ 7& 2 SWLRQDO $QDORJ LQGLFDWRU LV QRW DYDLODEOH IRU W\SH Q . (J) 7 HPS FRGH 7 IRU 7 DPE PD[ &. 7 HPS FRGH 7 IRU 7 DPE PD[ & )DFWRU\ &ODVV , ,, ,,, . Entity Parameters: 0 XWXDO 'LY *URXSV $ % & ' ) *. 9PD[ 9GF ,PD[ P$ 3PD[ : 7 (QWLW\ 7\SH ;. &L Q) Q) IRU PRGHOV ZLWK ZLWKRXW $UUHVWHU Model code /L P+ P+ IRU PRGHOV ZLWK ZLWKRXW $QDORJ ,QGLFDWRU 7 DPE. WK GLJLW WK GLJLW . (H) $ % & ' - < * 1 -4 & WR &. IECEx ([ LD ,,& 7 & 7D & / 3 0 < * 1 & WR &. ([ LD ,,& 7 & 7D & 4 6 1 < * 1 & WR &.)]]]]]]]]]]]

7 ,3 ( ) * + . < * 1 -4 & WR &. (T) Entity Parameters: - : $ ' & WR C. 8L 9GF ,L P$ 3L : &L Q) Q) IRU PRGHOV ZLWK ZLWKRXW $UUHVWHU CSA &ODVV , /L P+ P+ IRU PRGHOV ZLWK ZLWKRXW $QDORJ ,QGLFDWRU 'LY *URXSV $ % & '. &ODVV ,, 'LY *URXSV ( ) *. (J) &ODVV ,,, 'LY . 7 HPS &RGH 7 7 DPE PD[ &. 7 HPS &RGH 7 7 DPE PD[ &. (QWLW\ 3 DUDPHWHUV . 9PD[ 9GF ,PD[ P$ 3PD[ : &L Q) Q) IRU PRGHOV ZLWK ZLWKRXW $UUHVWHU. /L P+ P+ IRU PRGHOV ZLWK ZLWKRXW $QDORJ ,QGLFDWRU. IECEx ([ Q$ ,, 7 & 7D & ,3 . (OHFWULFDO UDWLQJV. 0 RGHO :LWKRXW DUUHVWHU . (Q) 8L 9GF P$ ORRS SRZHUHG 3L : 0 RGHO :LWK DUUHVWHU . 8L 9GF P$ ORRS SRZHUHG 3L : 2 SWLRQDO $QDORJ LQGLFDWRU LV QRW DYDLODEOH IRU W\SH Q . 2. Zero/span adjustment: Measuring range v v v v Zero and span are adjustable from the HHC(1). Zero and Damping v v v v span are also adjustable externally from the adjustment Output mode v v.]]]]]]

8 Screw. Burnout direction v v v v 'DPSLQJ . Calibration v v v v Adjustable from HHC (1) or local adjustment unit with LCD display. Output adjust v v The time constant is adjustable between 0 to 32 Data v v . seconds. Self diagnoses v v . =HUR HOHYDWLRQ VXSSUHVVLRQ Printer (In case of FXW with v . =HUR FDQ EH HOHYDWHG RU VXSSUHVVHG ZLWKLQ WKH VSHFL HG printer option). range limit of each sensor model. External switch lock v v v v 1 RUPDO UHYHUVH DFWLRQ transmitter display v v v v Selectable from HHC(1). Linearize* v v . ,QGLFDWLRQ Rerange v v v v $QDORJ LQGLFDWRU RU GLJLW /&' PHWHU DV VSHFL HG Saturate current v v v v %XUQRXW GLUHFWLRQ Selectable from HHC(1). Write protect v v v v If self-diagnostic detect transmitter failure, the analog History signal will be driven to either Output Hold , Output Over- Calibration history v v v v scale or Output Underscale modes.

9 Ambient temperature history v v . Output Hold : (Note) (1) HHC: Hand Held Communicator Output signal is hold as the value just before failure hap- /RFDO FRQ JXUDWRU ZLWK /&' GLVSOD\ RSWLRQ . pens. /RFDO FRQ JXUDWRU ZLWK SXVK EXWWRQ DQG /&' GLVSOD\ . Output Overscale : Adjustable within the range to from can support all items (Fuji Protocol list) except Linearize . HHC(1) function. Output Underscale : 3 URJUDPPDEOH RXWSXW OLQHDUL]DWLRQ IXQFWLRQ . Adjustable within the range to from HHC(1) Output signal can be characterized with 14 points linear 4 20 [mA] approximation function from HHC(1). Over scale Burnout Under scale Normal operating range Probable over range Burnout Probable under range Output limits conforming to NAMUR NE43 by order. /RRS FKHFN RXWSXW . 7 UDQVPLWWHU FDQ EH FRQ JXUHG WR SURYLGH FRQVWDQW VLJQDO.

10 Through by HHC. 3 HUIRUPDQFH VSHFL FDWLRQV. 7 HPSHUDWXUH OLPLW . $FFXUDF\ UDWLQJ . Ambient: - WR &. (including linearity, hysteresis, and repeatability). WR & IRU /&' LQGLFDWRU For spans greater than 1/10 of URL: - WR & IRU DUUHVWHU RSWLRQ of span WR & IRU XRULQDWHG RLO OO WUDQVPLWWHU For spans below 1/10 of URL : )RU H[SORVLRQSURRI XQLWV DPHSURRI RU LQWULQVLF VDIHW\ . DPELHQW WHPSHUDWXUH PXVW EH ZLWKLQ WKH OLPLWV VSHFL HG E\ ( + x URL ) % of span span each standard. 6 WDELOLW\ . Process: of upper range limit (URL) for 10 years (In case of - WR & IRU VLOLFRQH OO VHQVRU. WK GLJLW FRGH WR & IRU XRULQDWHG RLO OO VHQVRU. 7 HPSHUDWXUH HIIHFW . 6 WRUDJH WR &. (IIHFWV SHU & FKDQJH EHWZHHQ WKH OLPLWV RI & DQG . +XPLGLW\ OLPLW . &. 0 to 100% RH. Zero shift : &RPPXQLFDWLRQ . With HHC(1) 0 RGHO );: FRQVXOW 'DWD6 KHHW 1 ('6 URL.)]


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