Magnetrol 2xx Operating Manual

Manual is about: Magnetostrictive Level Transmitter

Summary of 2xx

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    F oundation fieldbus ™ operating manual enhanced model 2xx f oundation fieldbus ™ digital output software v3.X a magnetrol company magnetostrictive level transmitter.

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    Read this manual before installing this manual provides information on the jupiter ® magne- tostrictive transmitter. It is important that all instructions are read carefully and followed in sequence. Detailed instructions are included in the installation section of this manual. Conventions used in t...

  • Page 3: Oundation

    Table of contents 1.0 f oundation fieldbus ™ overview ...................................1 1.1 description ...............................................................1 1.2 benefits .....................................................................2 1.3 device configuration.......................

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    1.0 f oundation fieldbus ™ overview 1.1 description f oundation fieldbus ™ is a digital communications system that serially interconnects devices in the field. A fieldbus system is similar to a distributed control system (dcs) with two exceptions: • although a f oundation fieldbus ™ system can use t...

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    Details regarding cable specifications, grounding, termination, and other network information can be found in iec 61158 or the wiring installation application guide ag-140 at www.Fieldbus.Org. 1.2 benefits the benefits of f oundation fieldbus ™ can be found throughout all phases of an installation: ...

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    An important requirement of fieldbus devices is the inter- operability concept mentioned earlier. Device description (dd) technology is used to achieve this interoperability. The dd provides extended descriptions for each object and provides pertinent information needed by the host system. Dds are s...

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    4 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 2.0 installation caution: if equipment is used in a manner not specified by manu- facturer, protection provided by equipment may be impaired this section provides detailed procedures for properly installing, wiring, configuring an...

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    5 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 2.3 before you begin caution: this instrument is intended for use in installation category ii, pollution degree 2 locations. 2.3.1 site preparation each jupiter magnetostrictive transmitter is built to match the specifications req...

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    6 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 2.3.3 operational considerations exterior ambient temperature of the service should not exceed the design specifications of the electronics (-40° to +175° f (-40° to +80° c)). The operating temperature limits of the lcd are -5° to...

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    7 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 2. Position the jupiter transmitter on the side of the mli where it will be attached. Mark the location and the exact area where the clamps will be attached to hold the jupiter in place. 3. Attach the lower clamp and tighten so th...

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    8 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 2.5 wiring caution: the jupiter magnetostrictive transmitter operates at volt- ages of 9-32 vdc (nominal voltage is 24 vdc). Higher voltages will damage the transmitter. Wiring between the power supply and the jupiter transmitter ...

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    8. Power may be applied to the instrument when the installa- tion is complete and has been checked by the instrument engineer or safety officer. 3.0 function blocks 3.1 overview the enhanced jupiter model 2xx is a level transmitter with four f oundation fieldbus ™ function blocks (one resource block...

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    • the permitted modes are listed for each block. • the block must be in an automatic mode for normal operation. Note: the mode_blk target parameter must be oos (out of service) to change configuration and calibration parameters in that func- tion block (when in oos, the normal algorithm is no longer...

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    Dd_rev: contains the revision of the dd associated with the version of firmware in the enhanced jupiter transmitter. It is used by interface devices to correctly select the associated dd. Restart: default and processor selections are available. Default will reset the jupiter to the established block...

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    Fault_state, set_fstate, clr_fstate: these only apply to output function blocks. (the model 2xx has no output function blocks). Max_notify: the maximum number of alert reports that the transmitter can send without getting a confirmation. The user can set the number low, to control alert flooding, by...

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    3.3 transducer block the transducer block is a custom block containing parameters that support the enhanced level transmitter. It contains the jupiter probe configuration, diagnostics, and calibration data, and outputs level with status information. The transducer block parameters are grouped in a u...

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    3.3.3 jupiter configuration parameters this set of parameters within the transducer block is important and required to configure every jupiter transmitter. Measurement_type select from level_only or level&interface. Probe_length enter the exact length of probe. The probe length is shown as the last ...

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    3.4.2 firmware version the last two parameters in the transducer block show the firmware version of the transmitter. Firmware_version: displays the version of the firmware. Coprocessor_version: displays the version of the coprocessor. 3.5 analog input block the analog input (ai) block takes the tran...

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    Channel: the number of the logical hardware channel that is connected to this i/o block. This information defines the transducer to be used going to or from the physical world. L_type: determines if the values passed by the transducer block to the ai block may be used directly (direct) or if the val...

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    Hi_alm: the status for high alarm and its associated time stamp. Lo_alm: the status for low alarm and its associated time stamp. Lo_lo_alm: the status for low low alarm and its associated time stamp. The transducer and ai block’s mode_blk parame- ter must be set to auto to pass the pv value through ...

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    When the model 2xx transmitter is initially powered on, the measurement engine does not have enough valid meas- urement cycles to make a decision about the output level. For the first sixteen measurement cycles after power is applied, the quality is “uncertain,” the sub_status is “initial value,” an...

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    19 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.0 reference information 5.1 troubleshooting the jupiter transmitter is designed and manufactured for years of trouble free operation over a wide range of condi- tions. Common transmitter problems are discussed in terms of their...

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    20 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.1.2 status messages display message action comment ok none normal operating mode initial none shown at power-up during self check default cal factory set default calibration parameters consult factory are in use, level reading ...

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    21 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.1.3 ff segment checklist there can be several reasons for a f oundation fieldbus ™ installation to be in a faulty condition. In order to assure that communication can be established, the following requirements must be met. • de...

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    22 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.2 agency approvals fm & csa 2x1-xxxxxxx-xxx intrinsically safe class i, div. 1: 2x2-xxxxxxx-xxx groups a, b, c, & d 2x3-xxxxxxx-xxx class ii, div. 1: 2x4-xxxxxxx-xxx groups e, f, & g class iii, ip66 type 4x, t4 fisco 2xx-xxxxxx...

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    46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 23 5.2.3 agency drawing.

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    24 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.2.3 agency drawing.

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    46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 25 5.3 specifications 5.3.1 functional system design measurement principle magnetostrictive time-of-flight input measured variable a return signal is generated from the precise location where the magnetic field of the mli float inte...

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    26 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ inches (mm) direct insertion top mount top mount offset top mount offset high temperature bend bottom mount offset bottom mount offset high temperature bend gemini – bottom mount offset and secondary transmitter made inusa made i...

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    27 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.4 parts 5.4.1 replacement parts item description part number electronic module display & f oundation fieldbus ™ 031-2840-001 terminal board f oundation fieldbus ™ 030-9151-004 o-ring (viton ® ) 012-2201-237 aluminum housing cov...

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    28 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.5 model numbers 5.5.1 enhanced jupiter magnetostrictive transmitter 2 enhanced jupiter magnetostrictive transmitter type see page 29 mounting connection see page 29 float see page 30 insertion length 4 lcd display, 4–20 ma & ha...

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    29 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.5 model numbers 5.5.1 enhanced jupiter magnetostrictive transmitter 2 00 none, defines external mount 11 3 ⁄ 4 " npt thread 22 1" bsp thread 23 1" 150# rf ansi flange 24 1" 300# rf ansi flange 25 1" 600# rf ansi flange 27 1" 90...

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    30 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ 5.5 model numbers 5.5.1 enhanced jupiter magnetostrictive transmitter 00 no float when used with mli custom float—consult factory minimum liquid specific gravity 316/316l ss diameter × length titanium diameter × length hastelloy ...

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    31 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ appendix – transducer block parameters 5.6 references 1. F oundation fieldbus ™ , a pocket guide ian verhappen, augusto pereira 2. F oundation fieldbus ™ —system engineering guidelines, ag–181 item parameter name parameter label ...

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    32 46-649 jupiter magnetostrictive transmitter - f oundation fieldbus™ copy blank page and store calibration data for future reference and troubleshooting. Item value value value vessel name vessel # media & dielectric tag # serial # troubleshooting level correct value incorrect value units probe le...

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    Bulletin: 46-649.1 effective: december 2006 supersedes: september 2006 service policy owners of magnetrol/orion instruments controls may request the return of a or any part of an instrument for complete rebuilding or replacement. They will be rebuilt or replaced promptly. Instruments returned under ...