General Specifications

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1 eneral Specifications I00 NDI YP INAD AS ANALYZ (4-COPONN ANALYZ) he I00 infrared gas analyzer is capable of measuring the concentrations of CO, CO, CH4, SO, NO and O components in sample gas. CO, CO, CH4, SO and NO are measured by nondispersive infrared method (NDI), while O is measured by paramagnetic or zirconia method. A maximum of 4 components including O (up components except for O measurement) are simultaneously measurable. A high-sensitivity mass flow sensor is adopted in the detection unit for the infrared method. Due use of single beam system for measurement, maintenance is easy and an excellent stability is ensured for a long period of time. In addition, the I00 includes a microprocessor and has a large-size liquid crystal display, providing easy operation, high accuracy and multiple functions. his analyzer is thus optimum for combustion control of various industrial furnaces, botanical study and global atmospheric research. AUS 1. Simultaneous measurement of up 4 components including O O and components selected from among CO, CO, CH4, SO, and NO. he analyzer receives signal input from an external oxygen analyzer and displays the measured value.. xcellent long-term stability A unique optics system minimizes drift particularly due contamination of measurement cell, ensuring excellent long-term stability.. inimal interference from other gas components he dual cell type of transmission detecr minimizes interference from other gas components. 4. Low maintenance Single beam system allows for simple measurement unit construction and requires no adjustment of optical balance, resulting in low maintenance.. asy operation Large LCD provides easy interactive operation. 6. xtensive functions Highly precise zero/span calibration is achieved by simply pressing calibration keys. Aumatic calibration is also available. Self-diagnostic function detects abnormality and displays an error massage. Other functions include remote range switching, range identification signal output, output signal hold, and upper/lower limit alarm. SPCIICAIONS easurement principle: CO, CO, CH4, SO, NO: Non-dispersive infrared method Single light source-single beam O: Paramagnetic type (built-in), or zirconia type (external) easurable gas components and measuring ranges: ange Component CO CO CH4 SO O (paramagnetic) O (zirconia) inimum range 0 00 ppm 0 00 ppm ppm 0 00 ppm aximum range vol% vol% vol% ppm NO 0 00 ppm ppm 0 vol% 0 vol% vol% 0 vol% easurement of up 4 components including O. 1 or measuring ranges per component. easuring range ratio: 1: (except built-in paramagnetic O analyzer) 1:0 (built-in paramagnetic O analyzer) or measurable components and possible combinations of measuring ranges, see pages 9 and 10. Display: Digital, 4-digit LCD with CL backlight Instantaneous value of each component Instantaneous value after O correction (only in CO, SO, NO with O measurement) Average value after O correction (only in CO, SO, NO with O measurement) Average O value Analog output signal: 4 0 ma DC or 0 1 V DC, non-isolated, 8 points max. Analog output corresponds one--one with measured value indication. 01.PS Yokogawa lectric Corporation -9-, Nakacho, usashino-shi, okyo, Japan el.: ax.: Copyright June 00 1st dition June 00 4th dition June. 006

2 Permissible load resistance: 0 V max. for 4 0 ma DC 100 k min. for 0 1 V DC *See able 9 on page 11 for channel numbers of displayed values and analog output signals. Analog input signal: or signal input from external O analyzer Signal requirement: (1) Signal from Yokogawa s zirconia O sensor (odel ZX8D Style C) () 0 1 V DC from an O sensor Input section is not isolated. his feature is when built-in O sensor is not used. * xternal O sensor should be purchased separately. elay contact output: 1a contact (0 V AC/ A, resistive load) Instrument error, calibration error, range identification, au calibration status, solenoid valve drive for au calibration, pump ON/. 1c contact (0 V AC/ A, resistive load) Upper/lower alarm contact output. Peak count alarm contact output. * All relay contacts are isolated mutually and from the internal circuit. Contact input: Non-voltage contact (ON/0 V, O/ V DC, ma flowing at ON) emote range changeover, au calibration remote start, remote hold, average value reset Isolated from the internal circuit with a phocoupler. Contact inputs are not isolated from one another. *Only. screw terminals are used for all signal inputs and outputs. ordetails, see xternal Connection Diagram on page 14. Power supply: Voltage rating; V AC Allowable range; 8 64 V AC requency; 0/60 Hz Power consumption; 70 VA max. Inlet; Conform N600 Protection Class 1 Operating conditions: Ambient temperature; 4 C Ambient humidity; 90% H max., non-condensing Srage conditions: Ambient temperature; 0 60 C Ambient humidity; 90% H max., non-condensing Dimensions (H W D): 19-inch rack mounting type; mm (00 max.) Weight: Approx. 10 kg inish color: ront panel; Off-white (unsell 10Y7./ 0. or equivalent) Casing; Steel-blue nclosure: Steel casing, for indoor use aterial of gas-contacting parts: as inlet/outlet; SUS04 Sample cell; SUS04/neoprene rubber Infrared-ray transmitting window; Ca Internal tubing; oaron tube as inlet/outlet: c1/4 or 1/4NP internal thread Purge gas flow rate: 1 L/min (when required) Installation altitude: 000 m or less Safety and C conforming standards: Safety; N Pollution degree; Installation category; II C; N616: N N Standard unctions Output signal hold: Output signals are held during manual and au calibrations by activation of holding (turning on its setting). he values be held are the ones just before start calibration mode. Indication values will not be held. emote output hold: Output signal is held at the latest value by short-circuiting the remote output holding input terminals. Holding is maintained while the terminals are short-circuited. Indication values will not be held. emote range changeover: easuring range can be changed according an external signal when remote range changeover input is received. Changeover is effective only when remote range setting is turned on. In this case, measuring range cannot be changed manually. When the contact input terminals for each component are short-circuited, the first range is selected, and it is changed over the second range when the terminals are open. ange identification signal: he present measuring range is identified by a contact signal. he contact output terminals for each component are short-circuited when the first range is selected, and when the second range is selected, the terminals are open. Au calibration: Au calibration is carried out periodically at the preset cycle. When a standard gas cylinder for calibration and a solenoid valve for opening/ closing the gas flow line are prepared externally by the cusmer, calibration will be carried out with the solenoid valve drive contacts for zero calibration and each span calibration turned on/off sequentially at the set au calibration timing. 4th dition Oct.0,

3 Au calibration cycle setting: Au calibration cycle is set. Setting is variable within 1 99 hours (in increments of 1 hour) or 1 40 days (in increments of 1 day). as flow time setting: he time for flowing each calibration gas in au calibration is set. Settable within seconds (in increments of 1 second) Au calibration remote start: Au calibration is carried out only once according an external input signal. Calibration sequence is settable in the same way as the cyclic au calibration. Calibration starts by opening the au calibration remote start input terminals after short-circuiting for 1. seconds or longer. Au calibration is started when the contacts open. Au zero calibration: Au zero calibration is carried out periodically at the preset cycle. his cycle is independent of Au calibration cycle. When zero calibration gas and solenoid valve for opening/closing the calibration gas flow line are prepared externally by the cusmer, zero calibration will be carried out with the solenoid valve drive contact for zero calibration turned on/off at the set au zero calibration timing. Au zero calibration cycle setting: Au zero calibration cycle is set. Setting is variable within 1 99 hours (in increments of 1 hour) or 1 40 days (in increments of 1 day). as flow time setting: he time for flowing zero gas in au zero calibration is set. Settable seconds (in increments of 1 second) Upper/lower limit alarm: Alarm contact output turns on when the preset upper or lower limit alarm value is reached. Contacts close when the instantaneous value of each component becomes larger than the upper alarm limit value or smaller than the lower alarm limit value. Instrument error contact output: Contacts close at occurrence of analyzer error No. 1, or 10. Calibration error contact output: Contacts close at occurrence of manual or au calibration error (any of errors No.4 9). Au calibration status contact output: Contacts close during au calibration. Pump ON/O contact output: During measurement, contacts close. While calibration gas is flowing, contacts open. Contacts are connected in power supply of pump, and sp the sample gas while calibration gas is flowing. Optional unctions O correction: Conversion of measured CO, SO and NO gas concentrations in values at reference O concentration. Correction formula: C = 1 On 1 Os Cs Where: C:Sample gas concentration after O correction Cs: easured concentration of sample gas Os: easured O concentration On:eference O concentration (value changeable by setting) * he upper limit value of the fractional part in this calculation is 4. he result of calculation is indicated and output in an analog output signal. Average value after O correction and O average value calculation: he result of O correction or instantaneous O value can be output as an average value in the determined period of time. Used for averaging is the moving average method in which sampling is carried out at intervals of 0 seconds. (Output is updated every 0 seconds. It is the average value in the determined period of time just before the latest updating.) Averaging time is settable within 1 9 minutes (in increments of 1 minute) or 1 4 hours (in increments of 1 hour). Average value reset: he above-mentioned output of average value is started from the initial state by opening the average value resetting input terminals after short-circuiting for 1. seconds or longer. Output is reset by short-circuiting and restarted by opening. CO concentration peak count alarm: (available only for CO + O measurement) Alarm output turns on according the preset concentration and count. Whenever the instantaneous value of CO exceeds the preset concentration value, count increments. If the count exceeds the preset value in one hour, the alarm contacts close. Communication function: S-C (9 pins D-sub) Half-duplex bit serial Start-sp synchronization odbus procol Contents: ead/write parameters ead measurement concentration and instrument status emark: When connecting via S-48 interface, a S-C S-48 converter should be used. 4th dition Jun.01,

4 Performance epeatability: ±0.% of full scale Linearity: ±1% of full scale Zero drift: ±% of full scale/week Span drift: ±% of full scale/week esponse time (for 90% S response): 1 or component measurement; Within 1 seconds including replacement time of sample gas ore than component measurement; Within 0 seconds including replacement time of sample gas Interference from other gases: Interference component CO analyzer CO analyzer CH4 analyzer SO analyzer CO 1000 ppm 1%S 1%S 1%S 1%S CO 1% for 00 ppm 1%S 1%S analyzer,.%s HO saturation at 0C HO saturation at C 1%S 1%S for 00 ppm analyzer,.%s.%s for 00 ppm analyzer 1%S CH ppm 1%S 1%S 0ppm he HO interference of NO and SO analyzer can be reduced by the interference compensation. 0ppm %S with interference compensation NO analyzer 1%S 1%S 60ppm %S with interference compensation Built-in paramagnetic O analyzer % S 0.PS 4 Span gas; or other than O measurement, each sample gas having concentration % of its measuring range or O measurement, O gas of 1 vol% It is undersod that a large quantity of hydrogen, helium, or argon in sample gas affects the calibration model of an infrared gas analyzer (pressure broadening). When measuring such sample gas, use a gas which has similar composition the sample gas as a span gas. Installation equirements Indoor use: Avoid exposure direct sunlight, weather, and radiant heat from hot substances. Where exposure such conditions are unavoidable, a protective hood or cover should be prepared. inimal vibration A clean atmosphere Standard equirements for Sample as low rate: 1 L/min ±0. L/min emperature: 0 0 C Pressure: 10 kpa or less (as outlet side should be open the atmospheric air.) Dust: 100 µg/nm or less in particle size of 0. µm or less ist: Unallowable oisture: Below a level where saturation occurs at room temperature (condensation unallowable). Below the level where saturation occurs at C for CO measurement in 0 00 ppm range, NO measurement, and SO measurement. Corrosive component: HCl 1 ppm or less Standard gas for calibration: Zero gas; Dry N Span gas; ach sample gas having concentration %S of its measuring range (recommended). as beyond concentration 100%S is unusable. In case a zirconia O analyzer is installed externally and calibration is carried out on the same calibration gas line: Zero gas; Dry air or atmospheric air (provided without CO sensor) 4th dition Jun.01,

5 Diagram of measurement principle of infrared gas analyzer (CO, CO, CH4, SO, NO) ront expansion chamber Infrared-ray light source as inlet as outlet ear expansion chamber Detecr or easuring cell ass flow sensor Chopper Preamplifier Indication Output Signal processing and calculation block 01.PS Diagram of measurement principle of paramagnetic oxygen analyzer Permanent magnets irror as inlet easuring cell agnetic field as outlet Preamplifier Permanent magnets LD Phodiode Indication Signal processing and calculation block Output 0.PS 4th dition Jun.01,

6 6 xamples of sampling system configuration ypical examples are shown below. he system configuration may vary depending on sample gas. Consult with Yokogawa. easurement of sample gas with low moisture content (room-temperature saturation level or below): CO, CO and CH4 measurement Sample gas inlet 1 Primary filter Pump 7 4-way selecr cock 10 Secondary filter as analyzer (I00) xternal O analyzer xhaust (atmospheric pressure) Drain 9 lowmeter A dehumidifier must be used for CO (0-00 ppm) 4 lectronic and SO measurements ( prevent saturation at dehumidifier C). ven in any other gas measurements, if Safety sample gas has a high moisture content or if drain condensation is likely occur, a safety drain trap trap Drain 8 and a humidifier should be used. pot 6 Ball valve Standard gas for zero calibration Standard gas for span calibration 0.PS easurement of sample gas with high moisture content or NO, SO, or CO (0-00 ppm range) measurement 1 Primary filter Pump 1 -way solenoid valve 9 lowmetr 10 Secondary filter Safety dran trap Drain Pump Atmosphere 14 Solenoid valve 8 Standard gas for zero calibration 14 Solenoid valve 14 4 lectronic duhumidifier 1 Bubbler Drain pot 6 8 Ball valve NO/NO converter Solenoid valve Standard gas for span calibration as analyzer (I00) xternal O analyzer xhaust (atmospheric pressure) A dehumidifier must be used for NO, SO, and CO (0-00 ppm) measurements ( prevent saturation at C). Use either atmospheric air or cylinder gas as a zero calibration gas and supply it through a bubbler (humidifying) reduce interference of water. ypcal sampling system components No. Item Description Primary filter (mist filter) Safety drain trap Pump lectronic dehumidifier Drain pot Ball valve 4-way selecr cock Standard gas for calibration lowmeter Secondary filter (membrane filter) NO/NO converter -way solenoid valve Bubbler Solenoid valve emoves dust and mist. Separates and dischages drain. Sucks in sample gas. Ddhumidifies sample gas. Cellcts discharged water from dehumidifier. Used for discharging drain. Used for switching sampling and calibration lines. Used for zero/span calibration. Adjust and monirs sample gas flow rate. emoves fine dust. Converter NO gas in NO gas. Used for introducing humidified gas. Humidifies calibration gas. Used for switching sampling and calibration lines. 0.PS 4th dition Jun.01,

7 7 ODL AND SUIX COD odel I00 easurable components (note 8) O analyzer 1st Component 1st ange (note ) 1st Component nd ange (note ) nd Component 1st ange (note ) -A -B -C -D H -J -K -L - N 1 A B C D H J K L P Q S B C D H K L P N B C D H J K L P Q S N Suffix code Option code Description Infrared gas analyzer 19-inch rack mounting type with slide rail SO CO CO CH4 NO CO + CO CH4 + CO CO + CH4 CO + CO + CH4 NO + SO NO + CO NO + SO + CO Without O analyzer xternal zirconia type O sensor (purchase separately: ZX8D ) xternal O analyzer (note 1) Built-in paramagnetic type O sensor 000 ppm (note ) 000 ppm (note 4) ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 0% 010% 00% 0% 040% 00% 070% 0100% 000 ppm ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 010% 00% 0% 00% 0100% Not available 000 ppm ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 0% 010% 00% 0% 040% 00% 070% 0100% Not available [Style: S] 04-1.PS 4th dition Oct.0,

8 8 ODL AND SUIX COD (Contimued) O Analyzer 1st ange (note ) O Analyzer nd ange (note ) 1 4 N 4 N Output -4-1 Piping odel I00 nd Component nd ange (note ) rd Component 1st ange (note ) rd Component nd ange (note ) Indication, Power Cable (note 6) C D H K L P N Suffix code B C D H J K L P Q S N C D H K L P N J U Option code ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 010% 00% 0% 00% 0100% Not available 000 ppm ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 0% 010% 00% 0% 040% 00% 070% 0100% Not available ppm 0000 ppm 000 ppm 0000 ppm 01% 0% 0% 010% 00% 0% 00% 0100% Not available Description Infrared gas analyzer 19-inch rack mounting type with slide rail 0% 010% 0% 00% 0100% Not available 010% 0% 00% 0100% Not available 40 ma DC, non-isolation 01 V DC, non-isolation c 1/4 1/4 NP Japanese, Power Cable; rated voltage 1 V AC nglish, Power Cable; rated voltage 1 V AC (UL) nglish, Power Cable; rated voltage 0 V AC (C) Option O Correction and O Average (note ) Peak count alarm (note ) Communication Internal Purge /K /A /C /P With O correction and O average value With peak count alarm (CO gas Only) SC (note 7) Analyzer internal purging 04-.PS ootnotes: 1: A signal from the external O analyzer should be 0-1 V DC linear full scale. : Possible combinations of ranges are specified in separate tables. 4th dition Oct.0,

9 9 : Only available for CO measurement. 4: Only available for CO, CO, SO or NO measurements. : O correction is available only for CO, SO, and NO. Both average value output after O correction and average O value output are provided at the same time. A peak count alarm can be provided only for CO measurement. 6: Suffix Codes and U are power cables with different voltage rating and plug type. Select appropriate code according the operating power supply voltage be used in the field. Suffix Code is of the North American plug type and U of the uropean type. 7: Should be specified when using odbus communication. 8: or NOx measurement, a NO/NO converter (P/N K90L or K90L) should be purchased separately. easurable components and ranges - availability check table - able 1. Single-component analyzer (CO, CO, CH4, SO, NO) nd range B C D H K L 1st range 000ppm 01000ppm 0000ppm 000ppm 0000ppm 01% 0% 0% 010% A 000ppm B 000ppm C 01000ppm D 0000ppm 000ppm 0000ppm 01% H 0% J 0% K 0% L 010% 00% P 0% Q 040% 00% S 070% 0100% : CO analyzer measurable range : CO analyzer measurable range : CH4 analyzer measurable range : SO analyzer measurable range : NO analyzer measurable range Note:Single range is also available. able. wo-component analyzer (CO and CO) 00% 00% 0100% 1st component (CO), 1st range 0000ppm 01% H0% K0% CO L 010% 00% nd component (CO), 1st range B C D 000ppm 01000ppm 0000ppm 000ppm 0000ppm 01% 00% 0100% : Available as single range, : ranges of and. times each range available able. wo-component analyzer (CH4 and CO) H 0% CO K 0% L 010% 00% P 0% 00% 0100% 06.PS 1st component (CH4),1st range 0000ppm 01% H0% K0% CH4 L 010% 00% 00% 0100% nd component (CO), 1st range B C D 000ppm 01000ppm 0000ppm 000ppm 0000ppm : Available as single range, : ranges of and. times each range available 01% H 0% CO K 0% L 010% 00% P 0% 00% 0100% 07.PS 4th dition Oct.0,

10 10 able 4. wo-component analyzer (CO and CH4) 1st component (CO),1st range D 0 000ppm 0 00ppm 0 000ppm 0 1% CO H 0 % K 0 % L 0 10% 0 0% 0 0% 0 100% nd component (CH4), 1st range C ppm D 0 000ppm 0 00ppm 0 000ppm 0 1% CH4 H 0 % : Available as single range, : ranges of and. times each range available K 0 % L 0 10% 0 0% P 0 % 0 0% 0 100% 08.PS able. wo-component analyzer (NO and SO) 1st component (NO),1st range B 000ppm C 01000ppm NO D 0000ppm 000ppm 0000ppm nd component (SO), 1st range SO B C D 000ppm 01000ppm 0000ppm 000ppm 0000ppm :wo components measurable range. 1st component ; NO, nd component ; SO 1st range (low range) must meet the combination in above table. nd range, both NO and SO measurements are up times of the 1st range, and nd max. range is 0 000ppm. 0-1 able 6. wo-component analyzer (NO and CO) 1st component (NO),1st range B 000ppm C 01000ppm NO D 0000ppm 000ppm 0000ppm nd component (CO), 1st range CO A B C D 000ppm 000ppm 01000ppm 0000ppm 0v00ppm 0000ppm :wo components measurable range. 1st component ; NO, nd component ; CO 1st range (low range) must meet the combination in above table. nd range, both NO and CO measurements are up times of the 1st range. nd max. range of NO is 0 000ppm. nd max. range of CO is 0 1%. 01% 0- able 7. hree-component analyzer (CO + CO + CH4 and NO + SO + CO) See able 4 for CO + CH4 measurement of three-component analyzer (CO + CO + CH4) and able for NO + SO measurement of three-component analyzer (NO + SO + CO). See able 1 for CO measurement. able 8. O analyzer nd range 1st range 1 0% 010% 0% 4 00% 010% 0% 4 00% 0100% 0100% 09.PS : Built-in O analyzer measurable range, : xternal zirconia type O analyzer (in this case, Yokogawas ZX8D Style C) measurable range O analyzer is selectable indifferently combination with other components. 4th dition Oct.0,

11 11 able 9. easurable Components and heir Corresponding Channel Numbers easurable component Suffix/Option Code O analyzer Output and Corresponding Channel O correction CH1 CH CH CH4 CH CH6 CH7 - A N Not specified SO - B N Not specified CO - C N Not specified CO - D N Not specified CH4 - N Not specified NO - N Not specified CO CO - N Not specified CH4 CO - H N Not specified CO CH4 - J N Not specified CO CO CH4 - K N Not specified NO SO - L N Not specified NO CO - N Not specified NO SO CO - A 1,, Not specified SO O - B 1,, Not specified CO O - C 1,, Not specified CO O - D 1,, Not specified CH4 O - 1,, Not specified NO O - 1,, Not specified CO CO O - 1,, Not specified CH4 CO O - H 1,, Not specified CO CH4 O - J 1,, Not specified CO CO CH4 O - K 1,, Not specified NO SO O - L 1,, Not specified NO CO O - 1,, Not specified NO SO CO O - A 1,, /K SO O Correct SO Correct SO av. O av. - B 1,, /K CO O Correct CO Correct CO av. O av. - 1,, /K NOX O Correct NOX Correct NOX av. O av. - 1,, /K CO CO O Correct CO Correct CO av. O av. - 1,, /K CH4 CO O Correct CO Correct CO av. O av. - J 1,, /K CO CO CH4 O Correct CO Correct CO av. O av. - K 1,, /K NOX SO O Correct NOX Correct SO Correct NOX av. Correct SO av. O av. - L 1,, /K NOX CO O Correct NOX Correct CO Correct NOX av. Correct CO av. O av. - 1,, /K NOX SO CO O Correct NOX Correct SO Correct CO O av. CH8 * How ead the able SO in the CH1 column means that the display and output of CH1 correspond SO component. Correct XX means an instantaneous XX value after O correction, Correct XX av. an average XX value after O correction, and O av. an average O value. 4th dition Jun.01,

12 XNAL DINSIONS Unit: mm 1 <op View> <Side View> (4) max <ront View> (for slide rail) Power Switch INAD AS ANALYZ POW Applicable both for JIS 100 mm and IA mm DISPLAY OD SC ZO N SPAN Switch for Back Light <ear View> Purge gas inlet, c1/4 or 1/4NP 49 Sample gas outlet, c 1 /4 or 1/4NP Sample gas inlet, c1/4 or 1/4NP <A> SC connecr erminal block 1 erminal block erminal block erminal block 4 erminal block AC inlet ( V AC, 0/60 Hz) 04.PS 4th dition Jun.01,

13 XNAL DINSIONS O ACCSSOY SLID AIL odel: 0A-0/Accuride International Inc. Unit: mm 1 Closed.±0. Cabinet member 1.t Intermediate member Drawer member 1.7t (4.4) 1.7±0. 1.8±0. 8.1±0. 0± (.7) (9.) 1.9±0..4±0. Closed position flush or under Open 08.0± ±0. 46.±0..8± ±0. 1.7± ±0. 6.1± ±0. 0.0±0.8 0.PS einforcement plate 19-inch rack mounting method: he instrument weight should be supported at the botm of the unit (or the side of the unit when mounted with the slide rails). or easy maintenance, it is recommended select the methed allow withdrawing alog the slide rail. Slide rail mounted type uide rail mounted type ack size ack size or more 40 or more 46 IA standard 46 IA standard ounting diagram ounting diagram Slide rails uide rails uide rails or the guide rail mounted type, a maintenance space (00 mm or more) should be provided on p of the main unit. 06.PS 4th dition Jun.01,

14 14 XNAL CONNCION DIAA CH output (CH_OU) + CH4 output (CH4_OU) CH output (CH_OU) CH output (CH_OU) CH1 output (CH1_OU) erminal block 1 <N1> (. screw) CH8 output (CH8_OU) CH7 output (CH7_OU) CH6 output (CH6_OU) * O sensor input (O_IN) + erminal block <N> (. screw) CH4 remote range changeover input (_N_CH4) CH remote range changeover input (_N_CH) CH remote range changeover input (_N_CH) CH1 remote range changeover input (_N_CH1) emote hold input (_HOLD) Average value reset input (S) Au calibration remote start input (_CAL) erminal block <N> Instrument error (AUL) CH4 range identification signal output (N_IDCH4) CH range identification signal output (N_IDCH) CH range identification signal output (N_IDCH) CH1 range identification signal output (N_IDCH1) Contact output for CH4 span calibration (SPAN_CH4) Contact output for CH span calibration (SPAN_CH) Contact output for CH span calibration (SPAN_CH) Contact output for CH1 span calibration (SPAN_CH1) Contact output for zero calibration (ZO) erminal block 4 <N4> Au calibration status contact output (ACAL/N) Calibration error contact output (CAL_AL) Pump ON/O contact output (PUP) (. screw) (. screw) CH alarm output (AL_CH) erminal block <N> *O sensor input is used when an external O analyzer is selected. Note: terminals are used for internal connection. So they should not be used as repeating terminals either. 07.PS CH alarm output (AL_CH) Peak count alarm output (PAK_AL) CH1 alarm output (AL_CH1) CH4 alarm output (AL_CH4) (. screw) SANDAD ACCSSOIS Item Part No. Description Qty Power cable K918SA Standard inlet type (. m) 1 use Slide rail K918B K918C eplacement fuse (0 V AC, 1 A, delay type) x1 Slide rail x1 11.PS Note: Quantity in this table is the number of accessories supplied as standard. or instance, two K918C parts, i.e., two slide rails, are supplied as When ordering separately, the required number of parts should be considered 4th dition Jun.01,

15 Dedicated Zirconia O Sensor ( be purchased separately) or O correction, the I00 can accept linealized 0 1 V DC signal coming from an analyzer calibrated 0 % O of full scale. Dedicated zirconia O sensor, odel ZX8D, is available from Yokogawa. easuring method: Zirconia system easurable component and measuring range: easurable component inimum range aximum range Oxygen (O) 0 vol% 0 vol% 1.PS epeatability: Within ±0.% of full scale Linearity: Within ±1% of full scale Zero drift: Within ±1% of full scale/week Span drift: Within ±% of full scale/week esponse time: Approx. 0 seconds (for 90% response) Sample gas flow rate: 0. ±0. L/min Note: he Zirconia system, due its principle, may produce a measuring error depending on the relative concentration versus the combustible O gas concentration. Also, a corrosive gas (SO of 0 ppm or more, etc.) may affect the life of the sensor. 1 as inlet/outlet size: c1/4 Power supply: V AC or V AC, 0/60 Hz nclosure: Steel casing, for indoor application Indication: emperature indication (LD) emperature alarm output: Contact output 1a contact, Contact capacity 0 V AC, 1 A (resistive load) Safety and C conforming standards: Safety; N Pollution degree; Installation category; II C; N616: N N Dimensions (H x W x D): mm Weight: Approx. kg inish color: unsell Y 7/1 odel ZX8D Power supply Suffix code Option code Style code C D Description Dedicated zirconia O sensor 9016 V AC, 0/60 Hz 0040 V AC, 0/60 Hz Style C (Non-C conformity) Style D (C conformity) 1.PS xternal Dimensions of ZX8D Unit: mm OXYN ANALYZ P POW USA O + - AC OU AL xternal Connection Diagram 17 as inlet 17. as outlet 08.PS AC power supply Output 0/60Hz I00 emperature alarm output 09.PS Caution on Safety Before using this product, be sure read its instruction manual in advance. 4th dition Oct.0,

16 NO/NO Converter Part number: K90L (Non-C conformity) K90L (C conformity) ounting: Indoor surface mounting arget gases: eneral boiler exhaust gas, atmosphere Catalyst: Amount; cm eplacement cycle; Approx. 1 months (at flow rate of 0. L/min with % O, 10 ppm NO) emperature setpoint; 10 10C (Sensing tip: K thermocouple) Wetted materials: Ceramic, Vin, glass filter, SUS16 Conversion efficiency: 90% or higher, conforms JIS as flow rate: 0. L/min Ambient temperature: - +4C Power supply: 100 VAC, 0/60 Hz (K90L) VAC, 0/60 Hz (K90L) 16 Power consumption: Approx. 8 VA Safety conforming standards: Safety; N Pollution degree; Installation category; II Weight: Approx. 1.1 kg (K90L) Approx. 1. kg (K90L) Sample gas requirements: Dust/drain removed, gas temperature at 10C or less One-year-Use Spare Parts Item Catalyst for NO/NO converter lass wool for NO/NO converter itting for NO/NO converter Part No. K90LP K90LQ K90LV Qty 1.eps xternal Dimensions Unit: mm (10) 1 as Outlet 9./. 10 (10) (10) Wiring Diagram as Inlet 9./. Approx V AC (Shared with internal wiring) K90L K90L 4th dition Oct.0,

17 17 Inquiry Sheet for I00 Infrared as Analyzer Place a checkmark in the appropriate box and fill in the specific information in the blanks for your reference. 1. eneral Information Company : Delivery destination : Contact person : Section : (Phone No. ) Plant name : easurement location : Purpose : Indication reading, ecording, elemeter transmission, Alarm, Control, Other. equirements easurable component: O Analyzer: SO Without O analyzer CO xternal zirconia type sensor (use ZX8D Style C) CO xternal O analyzer CH4 Built-in paramagnetic type O sensor NO CO + CO CH4 + CO CO + CH4 NO + SO NO + CO CO + CO + CH4 NO + SO + CO ange: 1st component, 1st range 1st component, nd range nd component, 1st range nd component, nd range 0 00 ppm 0 00 ppm 0 00ppm ppm 0 00 ppm ppm ppm ppm ppm ppm ppm 0 00 ppm ppm 0 00 ppm 0 00 ppm ppm 0 00 ppm ppm ppm 0 1% ppm 0 1% 0 1% 0 % 0 1% 0 % 0 % 0 % 0 % 0 % 0 % 0 10% 0 % 0 10% 0 % 0 0% 0 % 0 0% 0 10% 0 % 0 10% 0 % 0 0% 0 0% 0 0% 0 0% 0 % 0 100% 0 % 0 100% 0 40% Not available 0 40% Not available 0 0% 0 0% 0 70% 0 70% 0 100% 0 100% Not available 4th dition Jun.01,

18 18 rd component, 1st range rd component, nd range O Analyzer, 1st range O Analyzer, nd range 0 00 ppm ppm 0 % 0 10% ppm ppm 0 10% 0 % ppm 0 00 ppm 0 % 0 0% 0 00 ppm ppm 0 0% 0 100% ppm 0 1% 0 100% Not available 0 1% 0 % Not available 0 % 0 % 0 % 0 10% 0 % 0 0% 0 10% 0 % 0 0% 0 0% 0 % 0 100% 0 40% Not available 0 0% 0 70% 0 100% Not available Output : 4 0 ma DC 0 1 V DC S-C O Correction and O Average : Yes No Peak count alarm : Yes No. Sample gas conditions uel : as, Oil, Coal, efuse, Other fuel (1) emperature :, Normal temperature [ C] () Pressure :, Normal pressure [Pa] () Humidity : [vol%] (4) Dust : [mg/nm ] () Corrosive gas : Yes No Composition (Detailed composition of sample gas should be provided. his is important for the purpose of knowing the effect of interference gases.) Composition Concentration range CO % ppm CO % ppm CH4 % ppm H % ppm O % ppm N % ppm SO % ppm HO % ppm NO % ppm % ppm % ppm Subject change without notice. 4th dition Jun.01,

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