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CCIM
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Catalog excerpts

CCIM - 1

anything possible CCIMS Close Coupled Instrument Mounting System

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CCIM - 2

KMC Close Coupled Instrument %0%0MtVM^9 Mounting System Introduction Parker Hannifin’s response to the constant demand for higher performance in flow measurement is the introduction of a breakthrough in process control: CCIMS - Close Coupled Instrument Mounting System; A radical and standardised solution for direct-mounting differential pressure transmitters to piping flanges. Page 9 Primary (Isolation) Module Options Page 10-12 Secondary (Instrument) Module Options Page 13 Auxiliary Modules & Options Page 14/15 How to Order Page 16/17 Valve Design & Performance Properties Page 18/19...

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CCIM - 3

Close Coupled Instrument Mounting System CCIMS: The Concept CCIMS supports the direct or 'close coupled’ connection of one of the most common types of process instruments - differential pressure (DP) transmitters - to process pipework. CCIMS combines an instrument manifold and a pipe interface (including isolation valves) and provides a standard means of connecting instruments with huge cost, performance and safety advantages. Design CCIMS has been designed using tried and tested standard components from our current ball, needle and rising plug valve ranges. All the designs meet the...

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CCIM - 4

Close Coupled Instrument WWbIVIw Mounting System CCIMS: The Benefits Installation The use of CCIMS will bring significant cost savings to plant operators and installers. Instrument 'Hook-ups’ can vary widely but they typically necessitate an assembly time of at least 12 hours (other estimates put this time to nearer 29 hours). Mounting a CCIMS solution takes only half an hour, saving at least 75% of the installation time. Safety A traditional ‘hook-up’ for flow measurement can involve up to 40 connections, each of which is a potential leak path. A CCIMS solution reduces this to just 5 -...

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CCIM - 5

Close Coupled Instrument Mounting System Cost of Ownership CCIMS benefits plant operators by reducing maintenance requirements and by enhancing the integrity and performance of the instrument system. The 5 fold decrease in instrument changeover time, the easy specification, the reduced number of purchase orders needed, the reduced spares inventory and the reduced emissions monitoring costs all contribute to the significant reduction in the total cost of ownership. anything possible Parker Hannifin Lid Instrumentation Group

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CCIM - 6

HjlO Close Coupled Instrument %0%0mmwm^9 Mounting System Value Proposition Reduced Installation Costs CCIMS offers end users and contractors significant opportunity to reduce installations costs. Installation time can be reduced from a typical hook up requiring at least 12 hours, to less than 1 hour. The number of components required for a hook up is significantly reduced - no need for tubing, fittings, brackets, instrument stands. The procurement costs of dealing with multiple vendors are eliminated. Reduced Cost of Ownership CCIMS delivers significant reductions in cost of...

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CCIM - 7

Close Coupled Instrument Mounting System CCIMS Design & Test Data 1. Vibration CCIMS has been tested in accordance with the standards used by the leading transmitter manufacturers for vibration requirements. CCIMS units have been subjected to a 50 hour swept sine endurance test in three axes whilst pressurised to 3,000psi (207bar). The test being carried out at an independent UK AS accredited testing facility. 2. Salt Spray All components and assemblies have been subjected to a corrosive environment test in accordance with ASTM B11703 for a period of 100 hours. 3. Piping & Pressure Codes...

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CCIM - 8

Primary (Isolation) Module Secondary (Instrument) Module Orifice Tappings Orifice Tappings anything possible Vz -14 NPT (Male) 3/4 -14 NPT (Male) Vz N.B. Male Socket Weld % N.B. Male Socket weld 8 Parker Hannifin Ltd Instrumentation Group

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CCIM - 9

Close Coupled Instrument Mounting System %0%dFmmwi& 10mm Through Bore • Primary Isolate - Ball Pattern Single Block & Bleed 10mm Through Bore • Primary Isolate - Ball Pattern, Bleed Valve - Needle Pattern Double Block & Bleed 10mm Through Bore • Primary Isolate - Ball Pattern Secondary Isolate - Ball Pattern, Bleed Valve - Needle Pattern

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CCIM - 10

AilO C/ose Coupled Instrument WwlllrVw Mounting System 3 Valve with Rising Plug Valve (RPV) Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with IEC 61518 type B (without spigot). 6mm straight through flow path. 3 Valve with Ball Valve Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with IEC 61518 type B (without spigot). 10mm straight through flow path. 3 Valve with Needle Valve Isolate Direct mounting to differential pressure transmitters with...

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CCIM - 11

Close Coupled Instrument Mounting System Secondary (Instrument) Module Options : 5 Valve 5 Valve with Rising Plug Valve (RPV) Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with IEC 61518 type B (without spigot). 6mm straight through flow path. 5 Valve with Ball Valve Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with IEC 61518 type B (without spigot). 10mm straight through flow path. 5 Valve with Needle Valve Isolate Direct mounting to...

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CCIM - 12

SVMH1C Close Coupled Instrument Mounting System Secondary (Instrument) Module Options: Custody Transfer / Fiscal Metering Module Custody Transfer / Fiscal Metering with Rising Plug Valve (RPV) Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with IEC 61518 type B (without spigot). 6mm straight through flow path. * insert 3 or 4 for instrument type Custody Transfer / Fiscal Metering with Ball Valve Isolate Direct mounting to differential pressure transmitters with 54mm/2.125” mounting centres. Designed in accordance with...

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