IQS452 204-452-000-011 204-452-000-221 Signal Conditioner

Model Number IQS452
Ordering Number 204-452-000-011
204-452-000-221
Unit Price $1500
Country Of Origin Switzerland
Weight 0.8KG
Certificate C/O from the Chamber of Commerce
C/Q from the Manufacturer
Warranty 12 Months
Inventory Qty 10

IQS452 is a dedicated signal conditioner for eddy current sensor systems. Its core function is to convert the displacement signal of the TQ4x2 series probe into standard voltage/current output.

IQS452 Key parameters

Parameter

Specification

Full PN

IQS452 204-452-000-011

Input Compatibility

TQ4x2 Proximity Sensors (e.g. TQ422/TQ432)

Sensitivity

4 mV/µm (Voltage Mode)

Output Configuration

3-wire Voltage Output (0XX Version)

Output Range

-2.4 V (Min Gap) to -18.4 V (Max Gap)

Measuring Range

0–4.0 mm (Linear Range)

Frequency Response

DC to 20 kHz (±0.5 dB, -3 dB at 20 kHz)

Linearity Error

< ±1% FS (Per System Curve)

Power Source

24V DC ±10% (From Rack/Module)

Operating Temp.

-25°C to +85°C (Conditioner)

Housing Protection

IP40 (Aluminum Extrusion)

Hazardous Certification

Standard (Non-Ex) Version

Cable Compatibility

EA402 Extension Cable (5m Standard)

Connector Type

AMP 1-330 723-0NB (Hand-tightened)

 

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IQS452 Application Case

Monitoring of hydroelectric generators in Northern Europe
Statkraft Hydropower Station in Norway uses IQS452 connected to TQ432 probe to monitor the vibration of Francis turbine shaft, and has been running continuously for 12 years without failure in 90% humidity environment, with MTBF exceeding 100,000 hours.
Gas turbine power station in the Middle East
Taweelah Power Plant in the United Arab Emirates equips Siemens SGT5-4000F gas turbine with IQS452 system (TQ422 probe + EA402 cable), achieving axial displacement monitoring accuracy of ±0.05mm, avoiding unplanned downtime losses of $2M+ per year.
Shale gas compression station in North America
30 compression stations in Texas use IQS452 204-452-000-011/204-452-000-221to monitor the displacement of piston rods of reciprocating compressors, and the anti-electromagnetic interference design reduces the signal false alarm rate by 85%.

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