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U74HC4046AL-S16-R Scheda tecnica(PDF) 6 Page - Unisonic Technologies |
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U74HC4046AL-S16-R Scheda tecnica(HTML) 6 Page - Unisonic Technologies |
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6 / 19 page ![]() U74HC4046A CMOS IC UNISONICTECHNOLOGIESCO.,LTD 6 of 19 www.unisonic.com.tw QW-R502-461.C ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNIT DC Supply Voltage VCC -0.5 +7 V DC Input Diode Current ±IIK for VIN <−0.5 V or VIN > VCC + 0.5 V 20 mA DC Output Diode Current ±IOK for VOUT <−0.5 V or VOUT > VCC + 0.5 V 20 mA DC Output Source or Sink Current ±IO for −0.5 V < VOUT < VCC + 0.5 V 25 mA DC VCC or GND Current ±ICC, ±IGND 50 mA Power Dissipation per Package Plastic DIL PD for temperature range: − 40 to +125 °C above +70 °C: derate linearly with 12 mW/K 750 mW Power Dissipation per Package Plastic Mini-Pack(SO) for temperature range: − 40 to +125 °C above +70 °C: derate linearly with 8 mW/K 500 mW Storage Temperature Range TSTG -65 +150 °C Note: Absolute maximum ratings are those values beyond which the device could be permanently damaged. Absolute maximum ratings are stress ratings only and functional device operation is not implied. RECOMMENDED OPERATING CONDITIONS PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNIT DC Supply Voltage VCC 3.0 5.0 6.0 V DC Supply Voltage if VCO Section is not used VCC 2.0 5.0 6.0 V DC Input Voltage Range VIN 0 VCC V DC Output Voltage Range VOUT 0 VCC V Input Rise and Fall Times (pin 5) tR, tF VCC = 2.0 V 6.0 1000 ns VCC = 4.5 V 6.0 500 ns VCC = 6.0 V 6.0 400 ns Ambient Operating Temperature TOPR see DC and AC CHARACTERISTICS -40 +85 °C -40 +125 °C QUICK REFERENCE DATA (GND = 5V; T = 25 °C) PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNIT VCO Centre Frequency fo C1 = 40 pF; R1 = 3 kΩ;VCC = 5V 19 MHz Input Capacitance (pin 5) CIN 3.5 pF Power Dissipation Capacitance per Package CPD (Note) 24 pF Note : CPD is used to determine the dynamic power dissipation (PD in μW): ∑ × × + × × = ) f V (C V C P O 2 CC L i 2 CC PD D f where: fi = input frequency in MHz; CL = output load capacitance in pF; VCC = supply voltage in V; fo =output frequency in MHz; ∑ × × ) V (C O 2 CC L f = sum of outputs. |
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