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HG-C Series - Compact CMOS Laser Measurement Sensors

HG-C Series - Compact CMOS Laser Measurement Sensors - NEW!

Reliable Detection with As Good As 10 μm Resolution in a Compact Body!

With a compact size of just W20 x H44 x D25 mm the HG-C Series sensor provides high-end performance in a small, lightweight package. Five measurement ranges (400mm±200, 200mm±80, 100mm±35, 50mm±15, and 30mm±5) are available with a measurement resolution ranging from 10 μm to 300 μm depending on the model selected. The built-in display assists in setup and operation, and I/O options include a 0-5V or 4-20ma analog output alongside either one NPN or PNP transistor output as well as an external input.

HG-S Series - Contact-Type Digital Displacement Sensors

HG-S Series - Contact-Type Digital Displacement Sensors

Introducing the Panasonic HG-S Series contact-type digital displacement sensor. It features class leading accuracy in a slim and strong unit body.

  • Slim Size: Allows for side-by-side mounting 
  • Class Leading Ruggedness *: Top rated for vibration, impact and lateral load resistance
  • Highest Accuracy in its Class *: Resolution of 0.1 μm (0.004 mil) and indication accuracy of 1 μm (0.039 mil) or less (HG-S1110(R))
  • Absolute Value Scale Reading: Eliminates “value skipping” and “unset zero point”
  • Industry's First Intuitive Dual Display on Controller *: 2-line digital display for unprecedented ease of use
  • Versatile & Easy-To-Use Controller: Allows simple & reliable operation in a wide variety of applications.
  • NEW! HG-S1032 has measurement range of 32mm!

HL-G1 Series - All-In-One Compact Laser Displacement Sensors

HL-G1 Series - All-In-One Compact Laser Displacement Sensors

With the HL-G1 series, Panasonic (formerly Sunx) has introduced an intelligent, all-in-one laser displacement sensor. The HL-G1's state-of-the-art CMOS sensing method allows for high-precision measurement of objects impossible for the conventional PSD method. For example, objects with non-reflective surfaces such as black rubber or metal surfaces with hairline cracks can now be sensed reliably and precisely.

HL-C2 Series - Ultra High Speed & Precision Laser Displacement Sensors

HL-C2 Series - Ultra High Speed & Precision Laser Displacement Sensors

  • Ultra high speed (100kHz)
  • Excellent resolution for demanding measurement applications
  • Data buffering function in the controller for storing 65,000 pieces of data

The HL-C2 series is an ultra high speed, high precision, laser displacement sensor from Panasonic. Designed with precision measurement in mind, the HL-C2 series performs at the top of its class in the areas that mean the most: speed, accuracy, and precision. With a blazing 100kHz sampling rate, the HL-C2 provides near instantaneous feedback suitable for the fastest R&D processes. The optics HL-C2 have be custom designed to offer a rock solid linearity of ±0.02%. The HL-C2 series employs an high density linear cell CMOS receiver for resolution values down to 0.01 µm.

HL-T1 Series - Ultrasmall Laser Thrubeam Sensors

HL-T1 Series - Ultrasmall Laser Thrubeam Sensors

High Functionality Laser Array with 4 micron Resolution

  • Ultra compact sensor head
  • High functionality controller
  • Minimum sensing object (8 micron diameter)

The HL-T1 series of laser collimated beam sensors combines extremely compact sensor heads with a high-functionality intelligent controller. Three sensor heads are available from the long-range, small beam width HL-T1001(A/F) to the wide beam HL-T1010(A/F With a 4-micron resolution and an 8-micron minimum object diameter, the HL-T1 series offers incredibly high precision for positioning and measurement applications. An optional side-view attachment provides ease and simplicity in mounting the sensor head. The HL-T1 controller features an easy to see dual digital display with a convenient four-key layout for simple control. Three types of teaching functions have been integrated including: single level, two level and fully automatic teaching. Using the optional HL-AC1-CL calculation unit, two sensors can be connected together to enable addition or subtraction functions. This is perfect for applications such as sheet width measurement. The analog output is selectable between current or voltage and HI/LO/GO outputs are integrated as well (available as PNP or NPN).

GP-X Series High Accuracy Eddy Current Sensors

GP-X Series High Accuracy Eddy Current Sensors

High-speed. high accuracy eddy current type digital displacement sensors. Panasonic has developed a unique sensing technology that makes ultra-high speed minute displacement measurement.The GP-X series is essential for high precision processes.

HD-T1 Series - LED Type Wafer Alignment Sensors

HD-T1 Series -  LED Type Wafer Alignment Sensors

Utilizing a safe LED light beam the HD-T1 series is capable of high precision detection of wafer orientation with a resolution of 30 microns. It's comprised of sensor head and easy to connect controller with 1-5 volt analog output

GP-A Series - High Accuracy Eddy Current Displacement Sensors

GP-A Series - High Accuracy Eddy Current Displacement Sensors

Provides accuracte measurement of ferrous metal targets with a resolution of up to .4 microns for the GPA-5S version.

10 models to choose from with measurement ranges of 0 to 1mm to 0-5mm

LA Series - Laser Thrubeam Sensors with Analog Output

LA Series - Laser Thrubeam Sensors with Analog Output

  • Self contained
  • 10 micron repeat accuracy
  • Alignment LED indicators

The LA series of laser collimated beam sensors is a safe and precise solution to your detection needs. The wide sensing area of 15mm x 500mm, coupled with a 10 micron repeatability, provides ample precision and range for most positioning or detecting applications. Versatile mounting options are also available, such as the side view attachment for tight mounting conditions. Laser alignment has been simplified by using four LED indicators to determine correct axial positioning. The LA-C1 controller offers a simple digital display along with an auto-reference function and two operation modes: hysteresis mode and window comparator mode.