• Part: EZASC
  • Description: Chip 3-Terminal Capacitor Array
  • Manufacturer: Panasonic
  • Size: 169.99 KB
Download EZASC Datasheet PDF
Panasonic
EZASC
EZASC is Chip 3-Terminal Capacitor Array manufactured by Panasonic.
- Part of the EZANC comparator family.
Features 1. - - 2. - - 3. - - Suitable for EMI suppression filtering The low residual inductance at high frequency range provides effective reduction of noise Equivalent noise reduction to the EMI filters with low cost design pact design for high density PWB assembly EZASC : 4.0 mm ҂ 2.1 mm ҂ 0.65 mm, 0.8 mm pitch EZANC : 6.4 mm ҂ 3.1 mm ҂ 0.75 mm, 1.27 mm pitch Flat and square packages suitable for high speed automatic placement machine Superior mountability with concave terminals Firm solder joint (2 times that of convex terminal type) Self-aligning placement during reflow soldering <Effect of high density placing, PWB space saving> Digital cordless phone (4 line mounting) RF Circuit (EZA SC) I/O I/O I/O I/O Digital Control Circuit 3-Terminal Capacitors or EMI Filters EZASC: 0.8 mm pitch EZANC: 1.27 mm pitch Prevent high frequency harmonic noise to RF circuits - Remended Applications - - - - Digital equipment such as PCs, printers, HDD, PCMCIA cards, PDAs, and word processors munication equipment, digital cordless phones, automobile phones, GSM, PHS, DECT Digital audio and video equipment Electronic musical instruments, and other digital devices Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Feb. 2006 Chip 3-Terminal Capacitor Array .. - Explanation of Part Number 1 2 3 4 5 6 7 8 9 10 11 Product Code Capacitance Suffix for Special Tolerance Requirement Dimensions and Temperature Capacitance Value Circuit Configuration Characteristics Thick Film Noise Suppression and Filtering ponents 4.0 mm ҂2.1 mm Four 3-Terminal Capacitors 6.4 mm NC ҂3.1 mm SC +20 %/- 55 % E (- 25°C to +85 °C) The first two digits are significant figures of capacitance value, and the third one denotes the number of zeros following ex. 101ৎ100 p F +30 % - 20...