1 pcs : CGA6P3X8R2A684K250AE - Multilayer Ceramic Capacitors MLCC - SMD/SMT 1210 100V 0.68uF SOFT 10% AEC-Q200

      Allparts-UK/M/810-CGA6P3X8R2A684KA
      TDK
      1 pcs : CGA6P3X8R2A684K250AE - Multilayer Ceramic Capacitors MLCC - SMD/SMT 1210 100V 0.68uF SOFT 10% AEC-Q200
      £11.06
      Delivery: 7-10 business days
      Quantity
      10 Items

      Description
      CGA Automotive MLCCs TDK CGA Automotive Multilayer Ceramic Chip Capacitors (MLCCs) are AEC-Q200 compliant and feature a tested and stable manufacturing process with increased inspections. These capacitors are available in voltage ratings up to 3kVDC and up to a +150°C operating temperature. In addition, thinner ceramic dielectric layers and multilayer technology give these capacitors a large capacitance. The series is available in standard, flexible (soft), and conductive epoxy terminations. TDK CGA MLCCs are used in a variety of applications, including automotive powertrain systems and safety equipment, smart meters, power supplies, sensor modules, and higher reliability / safety applications.
      Product Details
      TDK
      Allparts-UK/M/810-CGA6P3X8R2A684KA
      CGA6P3X8R2A684K250AE
      10 Items

      Data sheet

      Manufacturer
      TDK
      Capacitance
      0.68 uF
      Tolerance
      10 %
      Width
      2.5 mm (0.098 in)
      Height
      2.5 mm (0.098 in)
      Length
      3.2 mm (0.126 in)
      Series
      CGA
      Maximum Operating Temperature
      + 150 C
      Minimum Operating Temperature
      - 55 C
      Type
      Mid Voltage MLCC Capacitor
      Product Type
      Ceramic Capacitors
      Termination Style
      SMD/SMT
      Product Category
      Multilayer Ceramic Capacitors MLCC - SMD/SMT
      Packaging
      MouseReel
      RoHS
      Details
      Brand
      TDK
      Factory Pack Quantity Factory Pack Quantity
      1000
      Subcategory
      Capacitors
      Unit Weight
      100 mg
      Part # Aliases
      CGA6P3X8R2A684KT0Y0S CGA6P3X8R2A684KT0Y0S
      Voltage Rating DC
      100 VDC