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CM8V-T1A

Ultra-Miniature 2012 Package 32.768kHz SM Watch Crystal


The ultra-miniature CM8V-T1A offers a 32.768kHz solution with ultra-low profile package and high shock and vibration resistance. The CM8V-T1A is available in automotive and extended operating temperature ranges, with full AEC-Q200 qualification on request, and features low drive level.

  • 32.768kHz
  • Ultra low profile - 0.6mm
  • High shock & vibration resistance
  • Extended temperature range option
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CM8V03-T1A

Ultra-Miniature Low Profile 32.768kHz SM Watch Crystal 


The CM8V03-T1A 32.768kHz surface mount crystal combines an ultra-minitaure package measuring just 2.0 x 1.2mm (2012) with ultra-low-profile of just 0.35mm. This crystal also fetaures excellent shock and vibration performance, coupled with low power consumption as standard, making this the ideal clock crystal for specialist applications requiring low board height and tiny form-factor package.

  • 32.768kHz
  • Ultra low profile - 0.35mm
  • Extended temperature range option
  • High shock and vibration resistance
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GSX-200

32.768kHz CM200C Watch Crystal


The GSX-200 is now obsolete. For more information on this change please see our Product Change Notice PCN210504 06296 here, or speak to a member of our expert team by calling +44 1460 256 100. For new designs please consider the GSX-315GWX-2012GWX-1610CM8V-T1A or CM9V-T1A.

  • 32.768kHz
  • Low profile plastic moulded package
  • Miniature size for high density applications
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GWX-2012

2012 Package 32.768kHz Watch Crystal


Highly competitive for high-volume consumer projects, the ultra-miniature GWX-2012 measures just 2.05 x 1.2 x 0.60mm making it ideal for size-sensitive applications. GWX-2012 also features a choice of calibration tolerances, and is available in a choice of circuit conditions at 32.768kHz.

  • 32.768kHz
  • Competitive pricing for volume applications
  • Ultra low profile - 0.6mm high
  • Light weight miniature package
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GWX-1610

1610 Package 32.768kHz Watch Crystal


Highly competitive for high-volume consumer projects, the ultra-miniature GWX-1610 measures just 1.6 x 1.0 x 0.5mm making it one of our smallest commercially available crystals and ideal for size-sensitive applications. GWX-1610 also features good ageing, low drive level and a choice of calibration tolerances, and is available in a choice of circuit conditions at 32.768kHz.

  • 32.768kHz
  • Competitive pricing for volume applications
  • Ultra low profile - 0.5mm high
  • Light weight miniature package
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GSX-201

8038 Package 32.768kHz Watch Crystal


The plastic moulded surface mount package of the GSX-201 is a fully compatible drop in replacement for MC-306, DMX-26S, FSRLF, E1WS, SMQ32SL, RSM200S, GSX-200 and other industrial standard plastic-package crystals. Ideal for use in existing designs, the GSX-201 offers a competitive solution when purchasers are facing supply constraints.

  • 32.768kHz
  • Low profile plastic moulded package
  • Ideal drop-in replacement
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Kyocera ST3215, ST2012 and ST1610 End of Life (EOL) December 2019

23/09/2019


Kyocera corporation are terminating their 32.768kHz operations in December 2019. Find all the information you need here and get a quote for our fully compatible drop-in replacements.

Golledge are pleased to announce the launch of the GSX-201 plastic encapsulated crystal for existing designs

21/06/2021


Today's market is becoming increasingly fraught with supply constraints and we are therefore pleased to announce the launch of the GSX-201, which has been specifically introduced to ensure a minimum of five year's project longevity for designs requiring a 8.0 x 3.8mm footprint.

32.768kHz Components


Browse our range of 32.768kHz frequency solutions including crystals, oscillators, RTC modules and more. Find your ideal 32.768kHz solution here today.

Shrinking the Quartz Crystal Resonator

A Golledge white paper by Chief Engineer Chris Watts

02/10/2015


Chris Watts, our specialist analogue engineer, explains the development of the quartz crystal resonator following the ongoing trend for ultra-miniaturization, and design implications of these changes.