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A120J15C0GF5UAA Datasheet

Part Number A120J15C0GF5UAA
Manufacturers BC
Logo BC
Description Leaded ceramic multilayer capacitors
Datasheet A120J15C0GF5UAA DatasheetA120J15C0GF5UAA Datasheet (PDF)

BCcomponents DATA SHEET www.DataSheet4U.com Mono-axialTM series Leaded ceramic multilayer capacitors Product specification Supersedes data of 24th October 2001 File under BCcomponents, BC06 2002 Sep 10 BCcomponents Product specification Leaded ceramic multilayer capacitors FEATURES DESCRIPTION Mono-axialTM series Metal end terminations are applied and fired to provide electrical connection between the individual layers. Tinned leads are attached using a solder. Encapsulation consists of a.

  A120J15C0GF5UAA   A120J15C0GF5UAA






Leaded ceramic multilayer capacitors

BCcomponents DATA SHEET www.DataSheet4U.com Mono-axialTM series Leaded ceramic multilayer capacitors Product specification Supersedes data of 24th October 2001 File under BCcomponents, BC06 2002 Sep 10 BCcomponents Product specification Leaded ceramic multilayer capacitors FEATURES DESCRIPTION Mono-axialTM series Metal end terminations are applied and fired to provide electrical connection between the individual layers. Tinned leads are attached using a solder. Encapsulation consists of a moisture resistant gold colour conformal epoxy coating that meets the flame requirements of “UL94V-0”. • High capacitance per unit volume • Low cost. APPLICATIONS These conformally coated axial leaded capacitors are designed for commercial and industrial applications in four dielectrics, NP0 (ultra-stable), X7R (stable) and Z5U, Y5V (general purpose). Applications include timing, coupling/decoupling, signal comparison and biasing. Mono-axial™ capacitors are suitable for automatic insertion equipment. QUICK REFERENCE DATA The basic capacitor construction consists of ceramic dielectric materials processed into a tape with a typical thickness range from 0.025 to 0.076 mm. Metal electrode patterns are applied using a thick film screening process. Multiple layers are stacked and laminated in such a manner that electrodes are alternately exposed when the pattern is cut into individual chip capacitors. The capacitors are fired through a high temperature profile to mature the ceramic and me.


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