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    Apter Power sources CZ-H32 against KEYENCE's current reflective-head record.

CZ-H32

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KEYENCE CZ-H32 is a reflective CZ-V20 RGB sensor head with a variable spot for color and mark detection at controlled working distances.
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Technical specifications for CZ-H32

  • Manufacturer:
    KEYENCE
  • Part Number:
    CZ-H32
  • Product Family:
    KEYENCE
  • Product Type:
    Reflective RGB Sensor Head with Variable Spot
  • Stock:
    1
  • Sensor Head Method:
    Reflective RGB sensing
  • Detecting Distance:
    50 to 95 mm; 70 mm recommended
  • Spot Diameter:
    Approximately 3 / 4.5 / 5.5 mm at referenced distances
  • Light Source:
    Red, green and blue LEDs
  • Cable Minimum Bend Radius:
    25 mm
  • Enclosure Rating:
    IP40
  • Ambient Temperature:
    -10 to 55 degrees C
  • Weight:
    0.04 kg
  • Tariff Code:
    Please confirm the destination before shipping
  • Place of shipment:
    Xiamen,Fujian,China
By purchasing this item, you agree to the Terms & Conditions, ApterPower is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with ApterPower's 1-year warranty.

More Information

Overview Manuals Optical Selection Mounting Detection Recovery Product Applications

Features:

  • Variable optical spot: The head can cover different target areas within the documented sensing geometry.
  • RGB reflected-light path: Three-color illumination supports color and mark discrimination with the matching amplifier.
  • Remote optical placement: The compact head can be positioned near the target while processing remains at the amplifier.
CZ-H32 observes reflected RGB information from a controlled target area in a CZ-V20 sensing arrangement.

The usable spot and received color depend on working distance, mounting angle, target texture and surface gloss.

Commissioning therefore proves the complete optical path with normal good and reject samples rather than treating the head as an isolated component.

Apter Power can help confirm the KEYENCE CZ-H32 Reflective RGB Sensor Head, compatible amplifier, working distance, target presentation and replacement scope before quotation.
KEYENCE CZ-H32 Reflective RGB Sensor Head with Variable Spot Manuals,Datasheets,Link
Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
  • Target size: Keep the selected spot inside the intended colored area throughout normal position variation.
  • Surface behavior: Challenge gloss, texture and shade extremes before accepting the optical geometry.
  • Amplifier match: Confirm the installed CZ-V20 amplifier and retained teach method.
  • Cable route: Protect the fixed lead from bends tighter than the documented radius.
  • Distance control: Fix the head inside its detecting range with repeatable target presentation.
  • Angle stability: Prevent bracket movement from changing the reflected-light path.
  • Lens access: Leave room for inspection and cleaning without disturbing alignment.
  • Ambient shielding: Reduce uncontrolled light and reflections at the sensing point.
  • Unstable color: Inspect contamination, target position and changing surface reflection before replacing electronics.
  • Lost signal: Check head cable condition and amplifier recognition as separate fault paths.
  • Teach evidence: Retain accepted and rejected samples plus the final settings after adjustment.
  • Safe proof: Guard reject motion while verifying the output under real line speed.
  • Registration marks: Observes colored marks used to align packaging or printing operations.
  • Shade verification: Helps distinguish taught surface-color conditions on repeatable targets.
  • Part presence: Detects a colored component when geometry is fixed and validated.
  • Process inspection: Supplies optical data for automated good/reject decisions through a compatible amplifier.
Description
CZ-H32 forms the optical front end of a KEYENCE CZ-V20 color-sensing system, directing RGB illumination toward a target and returning reflected information to a compatible amplifier.

The variable spot of CZ-H32 lets commissioning staff balance target coverage against local color detail across its documented detecting range. Stable distance, angle and surface presentation remain essential because the head does not make the final switching decision by itself.

CZ-H32 should be replaced with its complete cable, head geometry and amplifier compatibility in view. A clean lens and representative samples are more reliable acceptance evidence than a simple power-on indication.
Alternative Names
CZH32 CZ H32
Technical notes
CZ-H32 is an optical head, not a stand-alone switch. Record the connected CZ-V20 amplifier, taught samples, mounting distance and target angle before removal. Stop commissioning if the spot crosses adjacent print or if gloss and ambient light change the result; correct the optics before widening thresholds or enabling automatic rejection.
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FAQS

The following is a list of questions commonly asked by our customers. Please contact us if you have a question about our process that is not answered below.
Can an existing CZ-V20 amplifier be retained when a maintenance team replaces CZ-H32?
Yes, provided the installed amplifier is the documented matching unit and the original optical setup can be reproduced. Stop the exchange if the amplifier identity or head connection cannot be confirmed.
How should a commissioning engineer set CZ-H32 when the colored target occupies only a small area?
Choose a documented spot setting that remains inside the target throughout normal position variation, then prove both accepted and rejected samples before releasing automatic operation.
What should an installer do if the planned cable route for CZ-H32 requires a tight turn?
Reroute or support the fixed lead so it stays within the published bend limit. Do not force the cable around a sharper edge; the published minimum bend radius remains the installation boundary.
Why might CZ-H32 pass a static sample but reject good parts at production speed?
Target movement can shift the illuminated area or change reflected light. Reproduce normal speed and position variation, then correct the bracket or target presentation before changing the taught tolerance.
When should a technician clean and realign CZ-H32 instead of replacing the amplifier?
Choose optical recovery first when contamination, bracket movement or surface presentation changes the received color. Escalate to the amplifier only after the head path and cable remain stable.
Should CZ-H32 be approved for an open station with strong uncontrolled sunlight?
Not until the optical point is shielded or the measured light stays within the published ambient-light limit. Prove normal and worst-case lighting with accepted and rejected samples before release.

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