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SFS44T25-10K384E-F SFS44T25-10K384E-F 24966 Cornell Dubilier Electronics (CDE) CAP ARRAY 10UF/25UF 440V RADIAL Radial, Can
SFS37T30-15K384E-F SFS37T30-15K384E-F 2026 Cornell Dubilier Electronics (CDE) CAP ARRAY 15UF/30UF 370V RADIAL Radial, Can
SFS37T40-5K384E-F SFS37T40-5K384E-F 8756 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/40UF 370V RADIAL Radial, Can
CKCM25X8R1H102M060AL CKCM25X8R1H102M060AL 17976 TDK Corporation CAP ARRAY 1000PF 50V X8R 0504 0504 (1410 Metric)
SFT37S70-7.5K491E-F SFT37S70-7.5K491E-F 35473 Cornell Dubilier Electronics (CDE) CAP ARRAY 7.5UF/70UF 370V RADIAL Radial, Can - 3 Lead
SFS37T45-5K384E-F SFS37T45-5K384E-F 24753 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/45UF 370V RADIAL Radial, Can
SFS37S30-5K400E-F SFS37S30-5K400E-F 3880 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/30UF 370V RADIAL Radial, Can
SFS37T35-7.5K384E-F SFS37T35-7.5K384E-F 37380 Cornell Dubilier Electronics (CDE) CAP ARRAY 7.5UF/35UF 370V RADIAL Radial, Can
SFS44T15-5K291E-F SFS44T15-5K291E-F 4902 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/15UF 440V RADIAL Radial, Can
SFS37T45-10K475E-F SFS37T45-10K475E-F 33415 Cornell Dubilier Electronics (CDE) CAP ARRAY 10UF/45UF 370V RADIAL Radial, Can
SFT44S35-20K491E-F SFT44S35-20K491E-F 27703 Cornell Dubilier Electronics (CDE) CAP ARRAY 20UF/35UF 440V RADIAL Radial, Can - 3 Lead
SFS37T35-15K384E-F SFS37T35-15K384E-F 8982 Cornell Dubilier Electronics (CDE) CAP ARRAY 15UF/35UF 370V RADIAL Radial, Can
SFT37S80-7.5K575E-F SFT37S80-7.5K575E-F 3495 Cornell Dubilier Electronics (CDE) CAP ARRAY 7.5UF/80UF 370V RADIAL Radial, Can - 3 Lead
SFS44S35-5K475E-F SFS44S35-5K475E-F 26900 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/35UF 440V RADIAL Radial, Can
SFS37T20-10K291E-F SFS37T20-10K291E-F 30502 Cornell Dubilier Electronics (CDE) CAP ARRAY 10UF/20UF 370V RADIAL Radial, Can
SFS37T25-5K291E-F SFS37T25-5K291E-F 35255 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/25UF 370V RADIAL Radial, Can
SFS37T15-5K291E-F SFS37T15-5K291E-F 10069 Cornell Dubilier Electronics (CDE) CAP ARRAY 5UF/15UF 370V RADIAL Radial, Can
CKCM25X5R1H102M060AA CKCM25X5R1H102M060AA 3634 TDK Corporation CAP ARRAY 1000PF 50V X5R 0504 0504 (1410 Metric)
SFS37T25-10K291E-F SFS37T25-10K291E-F 29885 Cornell Dubilier Electronics (CDE) CAP ARRAY 10UF/25UF 370V RADIAL Radial, Can
CKCM25X5R1E103M060AA CKCM25X5R1E103M060AA 19870 TDK Corporation CAP ARRAY 10000PF 25V X5R 0504 0504 (1410 Metric)

Capacitor Networks, Arrays

Capacitor Networks/Arrays are widely used in miniaturized, high-performance electronic devices, especially in consumer electronics, automotive electronics, and communication equipment.

 

1. ‌Definition and Basic Structure of Capacitor Networks or Arrays‌

‌Integrated Design‌: Capacitor Networks/Arrays are a combination of multiple capacitors in a single package, usually containing multiple capacitor units, whose parameters (such as capacitance and withstand voltage) may be the same or different.

‌Packaging Form‌: Common packages include SMD packages, which are suitable for high-density circuit board design, can reduce space occupation, and improve wiring efficiency.

 

2. ‌Functions and Application Scenarios of Capacitor Networks or Arrays‌

‌Circuit Decoupling and Filtering‌: Used in power management circuits, multiple capacitor units work together to effectively suppress high-frequency noise and stabilize voltage, especially suitable for digital circuits and high-speed signal processing scenarios.

‌Signal Coupling and Matching‌: In radio frequency (RF) and communication circuits, array capacitors are used to achieve signal coupling or impedance matching to improve signal integrity.

 

3. What are the ‌Technical Advantages of Capacitor Networks or Arrays?‌

‌Consistency and Reliability‌: Integrated packaging ensures parameter consistency of each capacitor unit and reduces performance fluctuations of discrete components due to process differences‌.

‌Simplified Design and Production‌: By reducing the number of discrete capacitors used, assembly complexity is reduced, and production yield is improved while facilitating automated mounting‌.

 

4. How to Choose Capacitor Networks or Arrays?‌

‌Capacitance Configuration‌: It is divided into symmetrical type (all units have the same capacitance) and asymmetrical type (capacitance difference configuration), which can be flexibly selected according to circuit requirements‌.

‌Withstand Voltage and Temperature Characteristics‌: It is necessary to select a model that meets industrial standards (such as AEC-Q200) in combination with the working environment (such as temperature range, and voltage fluctuation).