DMP305X-DST differential pressure transmitter
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DMP305X-DST differential pressure transmitter - 1

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Product introduction Monosilicon pressure transmitter DMP305X monosilicon pressure transmitter is a high performance pressure transmitter with international leading technology meticulously designed by LEEG instrument, using the world's most advanced monosilicon pressure sensor technology and patent encapsulation technology. Monosilicon pressure sensor locates on the top of the metal body and stay away from the medium interface to realizes mechanical isolation and thermal isolation. Glass sintering sensor wire realizes high strength electrical insulation of metal base and improves the capability of flexibility of electronic circuit and transient voltage resistance protection. All these original encapsulation technologies enable DMP305X to easily cope with extreme chemical occasion and mechanical load, and own strong resistance to EMI, sufficient to respond to the most rigorous industrial environment applications, which are the genuine invisible instruments. Main parameters Pressure, level, differential pressure, density, interface, flow Measuring medium Liquid, gas, or steam flow as well as liquid level, density and pressure Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 2

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Technical specifications Measuring range and limit Power supply effects Performance specifications The overall performance including but not limited to [Reference accuracy] , [Environment temperature effects] , [Static pressure effects] and other comprehensive error Typical accuracy: ±0.075% URL Stability: ±0.2% URL/ 5 years When power supply voltage is within 10.5/16.5-55VDC, zero and span change should not more than ±0.005% URL/V Mounting positi on effects Reference accuracy Including linearity, hysteresis and...

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DMP305X-DST differential pressure transmitter - 3

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Technical specifications Damping time Total damping time constant: equal to the sum of damping time of amplifer and sensor capsule Damping time of amplifer : 0-100S adjustable Damping time of sensor capsule (isolated diaphragm and silicon filling oil)<0.2S Startup after power off: <6S Normal services after data recovery :<31S Power supply Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 4

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Menu function Specific menu Transmission module type technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 5

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Product selection instruction Sensor select instruction

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DMP305X-DST differential pressure transmitter - 6

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Product selection instruction Transmission module Process connection selection Display module(C)

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DMP305X-DST differential pressure transmitter - 7

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Product selection instruction Process connection adaptor Pipe mounting bent bracket(B1) Plate mounting bent bracket(B2) Pipe mounting flat bracket(B3) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 8

DMP305X-DST Monosilicon differential pressure transmitter SENSING TOMORROW Product drawing and dimension Drawing and dimension with display(C)(unit:mm) Drawing and dimension without display(A)(unit: mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2016.01.V1.0

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DMP305X-DST differential pressure transmitter - 9

DMP305X-DST Monosilicon differential pressure transmitter SENSING TOMORROW Product drawing and dimension Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2016.01.V1.0

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DMP305X-DST differential pressure transmitter - 10

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Installation drawing and dimension Pipe mounting bent bracket (B1)drawing and dimension (unit:mm) Plate mounting bent bracket(B2)drawing and dimension (unit:mm) Pipe mounting flat bracket (B3)drawing and dimension (unit:mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2016.01.V1.0

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DMP305X-DST differential pressure transmitter - 11

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Ordering information chapter Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 12

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Selection Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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DMP305X-DST differential pressure transmitter - 13

SENSING TOMORROW DMP305X-DST Monosilicon differential pressure transmitter Factory settings and parameters SENSING TOMORROW Shanghai LEEG Instruments Co.,Ltd ADD: No.100 Duhui Road, Minhang District, Shanghai China Postcode:201109 Tel: (86) 21-31261976 Fax: (86)21-31261975 E-mail:sales@leegsensor.com info@leegsensor.com Web: www.leegsensor.com Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further im prove

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