Oxymitter 4000

Instruction Manual

IB-106-340 Rev. 3.0 December 2003

 

Self-powered (+5 V), in series with 340 ohms

 

Conduit ports — 3/4 in.-14 NPT (one threaded hole for

 

both analog output and logic I/O)

Power Requirements:

 

Probe Heater

175 W nominal

Electronics

10 W nominal

Maximum

500 W

SPS 4000

 

Mounting

Integral to Oxymitter 4000

 

Remote from Oxymitter 4000

Materials of Construction:

 

Manifold/Electronics Enclosure

Aluminum

Mounting Brackets

316 stainless steel (SS)

Pneumatic Fittings

1/8 in. brass NPT (SS optional)

Pneumatic Tubing

1/4 in. Teflon (SS optional)

Assembly Hardware

Galvanized and stainless steel

Humidity Range

100% relative humidity

Temperature Range in Electronics Housing ..

-40°to 185°F (-40°to 85°C)

Electrical Classification

NEMA 4X (IP56)

Explosion-Proof Option (both pending)

ATEX EExd IIB + H2 (Class 1, Division 1, Group B,C,D)

Electrical Feedthroughs

1/2 in. NPT

Input Power

90 to 250 VAC, 50/60 Hz

Power Consumption

5 VA maximum

External Electrical Noise

EN 50 082-2, includes 4 kV electrostatic discharge

Handshake Signal to/from

 

Oxymitter 4000 (self-powered)

5 V (5 mA maximum)

Cal Initiate Contact Input from Control Room

5 VDC (self-powered)

Relay Outputs to Control Room

5 to 30 VDC, Form A (SPST)

Cabling Distance between

(one “In-Cal”, one “Cal Failed”)

 

SPS 4000 and Oxymitter 4000

Maximum 1000 ft (303 m)

Piping Distance between

 

SPS 4000 and Oxymitter 4000

Maximum 300 ft (91 m)

Approximate Shipping Weight

10 lbs (4.5 kg)

Fisher-Rosemount has satisfied all obligations coming from the European legislation to harmonize the product requirements in Europe.

Rosemount Analytical Inc. A Division of Emerson Process Management

Description and Specifications 1-15

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Emerson 4000 manual 100% relative humidity, Nema 4X IP56, In. NPT, 90 to 250 VAC, 50/60 Hz, VA maximum, Lbs 4.5 kg

4000 specifications

The Emerson 4000 is a state-of-the-art automation platform designed to enhance industrial processes and improve operational efficiency. This advanced system is recognized for its unparalleled reliability and flexibility, making it suitable for various industries such as oil and gas, chemicals, pharmaceuticals, and power generation.

One of the standout features of the Emerson 4000 is its robust architecture that comprises distributed control systems (DCS) and a comprehensive suite of software applications. This integration allows for real-time monitoring and control of complex processes, ensuring that operators have access to crucial data for informed decision-making. The system supports a wide range of field devices and protocols, facilitating seamless connectivity across various platforms.

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