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Sikun 500

Sikun 500 adopts fluorescence sequencing technology and algorithms based on DNA amplification on the chip surface. It identifies and processes the optical signals of bases to generate image data, and finally obtains the corresponding gene sequence

Product Features

  • Accurate

    Excellent data quality, with an accuracy rate exceeding 99.9%.

  • Fast

    Sequencing can be completed in 2.5 h.

  • Flexible

    An open platform, supporting multiple sequencing modes and adapting to various application needs.

  • Stable

    Stable performance with strict quality control, delivering consistent and reliable results.

Specifications

Performance DescriptionParameters

Flow Cell Type

Mid Output 60M Reads

High Output 170M Reads

Data Output

Mid Output 3-18 Gb

High Output 8.5-50 Gb

Sequencing Time

2.5-24 h

Data Quality

Q30>85%-90%

Dimensions

825×687×788 mm

Net Weight

155kg

*Note: The above indicators are based on sequencing using the enterprise reference library.

Performance Parameters

TypeFlow Cell TypeRead LengthData OutputSequencing QualityMinimum Runtime

High Output

170M

50cycles

8.5G

>90%

3.5h

170M

75cycles12.5G>90%4.5h

170M

300cycles50G>85%24h

80M

600cycles50G>85%43.5h

Mid Output

60M

50cycles

3G

>90%

2.5h

60M

75cycles
4.5G>90%3.5h

60M

300cycles18G>85%22.5h
30M600cycles18G>85%33.5h

Notes:1.The maximum value of effective reads is obtained under standard protocol operation; the recommended loading density is 260–300 K/mm². In actual applications, it will vary depending on sample type and library preparation method.
2.The Q30 base percentage (above the standard threshold) is an average derived from a full run of standard libraries. Actual performance may differ in real-world use, depending on sample type, library quality, insert fragment length, and other variables.
3.The runtime refers to the total duration from sample loading on the machine, library amplification (approximately 1-2 h), sequencing, to data analysis. All steps are completed within a single machine.

4.The chip is processed with double-surface modification technology, allowing both its upper and lower surfaces to be used for simultaneous amplification and sequencing.

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