Quartz Crystals

Quartz Crystal (XTAL)

Quartz crystals time ASSP’s, MCUs, RF chipsets and RTCs in most electronic devices. A variety of package size options, frequencies, & performance conditions (i.e. Industrial & Automotive Grade) are offered Amongst the vast options, XTALS engineered with the lowest guaranteed ESR and lowest CL are available.

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Product Lineup

Automotive Aig

Automotive and Industrial Grade (AIG XTAL)

Automotive and Industrial Grade XTALs are manufactured on TS 16949 certified production lines, AEC-Q200 certified and PPAP ready up to level 3. Frequencies from 32.768kHz up to 62.5MHz. Package options available as small as 2.0x1.6mm. Select product supports operation up to 150°C.

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Automotive Aig

SMD MHz

SMD quartz crystals from 3MHz to 125MHz offer industry leading low CL with guaranteed low ESR optimized for low power and IoT applications. A variety of packages as small as 1.2x1.0mm with low 0.3mm profile target compact devices. Tight tolerance & stability operation over wide operating temperature ranges available.

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Smd Khz

SMD kHz

SMD tuning forks resonating at 32.768kHz are ideal for compact applications requiring industry leading low CL and guaranteed low ESR that increases oscillator loop gain margin. Packages as small as 1.6x1.0mm and low profile options of 0.38mm are available. Wide temperature options are supported.

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Thruhole Mhz

Thru-Hole MHz

Quartz crystals with through-hole package are an accurate low cost option for oscillator designs. Useful in applications requiring initial tolerance in the 10ppm to 30ppm range with temperature stability from 10ppm to 50ppm. Available frequencies vary from 1MHz to 200MHz.

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Thruhole Khz

Thru-Hole kHz (Tuning Fork)

Tuning fork crystals in through-hole packages are designed to operate at 32.768kHz specifically designed to connect to RTC and MCU oscillators.

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Test Calibration

Test & Calibration Services

Pierce Analyzer System (PAS) test solutions from Abracon provide a complete in-circuit characterization quartz crystal, PCB trace parasitics, loading capacitors and Pierce oscillator loop within the MCU or chipset. Any potential failures are discovered and corrected.

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