Intrinsically Safe Explosion-Proof Inline Brix Refractometer

Description

Technical Parameters

Product model CZ-C900 CZ-C500 CZ-C150
Measuring parameters Refractive index (nD), temperature (T), Brix(%)
Measurement range nD; 1.33299-1.5177 / Brix;  0.0~90.0 % nD; 1.33299-1.42009 / Brix;  0.0~50.0% nD; 1.33299-1.35568 / Brix;  0.0~15.0%
Resolution nD; 0.0005 / Brix; 0.5% / T; 0.1℃ nD; 0.0001 / Brix; 0.1% / T; 0.1℃
Accuracy nD; ±0.0005 / Brix; ±0.5% / T; ±1℃ nD; ±0.0003 / Brix; ±0.3% / T; ±1℃
Temperature compensation 10-60℃
Power supply 12~24V DC
Signal output DC 4~20mA or RS485
Ambient temperature 10-60℃
Protection grade IP67
Operating pressure Maximum tolerance 1Mpa
High & low limit setting Short circuit reset (4/20mA output) ; Protocol reset (RS485 output)
Prism material Artificial sapphire
Wetted material Standard;  SS316L (optional;  2205; Hastelloy C-276)
Process medium Cutting oil; emulsion; sugar content; juice
Installation type Tri-clamp (optional;  thread, flange)
Pipeline adapter Tri-clamp cross pipe fitting ; flange cross pipe fitting ; threaded cross pipe fitting (installation type is Tri-clamp)
Cleaning accessories QX-S01、CQX-1A
Communication Protocol Standard;  modbus (protocol can be customized)

Features

1. All stainless steel design, intrinsically safe and explosion-proof, suitable for various places with explosion-proof requirements
2. Accurate, fast, stable and reliable
3. Uninterrupted real-time concentration measurement output
4. 4-20mA/RS485 dual output

Application

1. Continuous monitoring of soluble solid content (Brix value) in process flows such as evaporation, dissolution, mixing, dilution, and extraction.
2. Real-time detection of concentration of various industrial solutions, such as cutting oil, lubricating oil, cleaning fluid, emulsion, and release agent.

Intrinsically Safe Explosion-Proof Inline Brix Refractometer

Model:CZ-C

The inline refractometer consists of a light source, sapphire prism, receiver, and signal modulation circuit. The light source emits a fixed wavelength light signal that passes through the sapphire prism to contact the measured medium. Part of the light signal is reflected and received by the receiver. The receiver calculates the refractive index of the measured medium based on the position of the received light signal, thereby obtaining the corresponding concentration through data algorithms. The transmitter internally employs temperature compensation to reduce the impact of temperature drift.

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