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NEZHL Datenblatt(PDF) 1 Page - NIC-Components Corp. |
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NEZHL Datenblatt(HTML) 1 Page - NIC-Components Corp. |
1 / 2 page 1 NIC COMPONENTS CORP. www.niccomp.com www.lowESR.com www.RFpassives.com www.SMTmagnetics.com SPECIFICATIONS ARE SUBJECT TO CHANGE Memory Back-Up Capacitors NEZHL Series NIC P/N Case Size (mm) Capacitance (F) Holding Voltage (VDC min.)* Max. Leakage Current @ minutes ( μA) Max. ESR @ 1KHz ( Ω) NEZHL473Z5.5V13.5X9.5F 13.5X9.5 0.047 4.0 69 @ 30 minutes 40 NEZHL104Z5.5V13.5X9.5F 13.5X9.5 0.1 4.0 100 @ 30 minutes 40 NEZHL224Z5.5V13.5X9.5F 13.5X9.5 0.22 4.0 135 @ 30 minutes 40 NEZHL474Z5.5V21.5X9.5F 21.5X9.5 0.47 4.0 216 @ 30 minutes 20 NEZHL105Z5.5V21.5X9.5F 21.5X9.5 1.0 4.0 315 @ 30 minutes 20 Rated Voltage Range 5.5VDC Rated Capacitance Range 0.047F ~ 1.0F (47,000 μF ~ 1,000,000μF) Operating Temp. Range -40°C ~ +85°C Capacitance Tolerance +80%/-20% (Z) Load Life Test @ 85°C 1,000 hours Δ Capacitance Change Less than ±30% of initial measured value Maximum ESR Less than 400% of the specified maximum value Temperature Characteristics -40°C & +85°C Δ Capacitance Change Within ±30% of 20°C value Maximum ESR @ -40°C x7, @ +85°C x5 of 20°C value Shelf Life @ +85°C (1,000 hours) Δ Capacitance Change Less than ±30% of initial measured value Maximum ESR Less than 400% of the specified maximum value FEATURES • DOUBLE LAYER CAPACITOR • WIDE TEMPERATURE (-40°C~ +85°C) • SUITABLE FOR FLOW SOLDERING • LEAD-FREE FINISH STANDARD VALUES AND SPECIFICATIONS CHARACTERISTICS RoHS Compliant includes all homogeneous materials Super Capacitor Super Capacitor Application Guide Application Guide PRECAUTIONS WASHING is NOT RECOMMENDED. Additional guidelines and precautions can be found at www.niccomp.com/precautions If in doubt or uncertainty, please review your specific application - process details with NIC’s technical support personnel: tpmg@niccomp.com *Minimum voltage at 24 hours after charging for 1 hour at 5VDC. NEZHL 105 Z 5.5V 21.5X9.5 F RoHS Compliant Case Size (mm) Working Voltage Tolerance Code Z = +80%/-20% Capacitance Code in μF, first 2 digits are significant Third digit is no. of zeros Series PART NUMBER SYSTEM |
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