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MT8804AP датащи(PDF) 4 Page - Mitel Networks Corporation |
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MT8804AP датащи(HTML) 4 Page - Mitel Networks Corporation |
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4 / 6 page ![]() MT8804A CMOS 3-6 * Exceeding these values may cause permanent damage. Functional operation under these conditions is not implied. † DC Electrical Characteristics are at ambient temperature (25°C). ‡ Typical figures are for design aid only; not guaranteed and not subject to production testing. Absolute Maximum Ratings* - Voltages are with respect to V EE unless otherwise stated. Parameter Symbol Min Max Units 1 Supply Voltage VDD-VSS VDD-VEE VSS-VEE -0.3 -0.3 -0.3 16 16 16 V V V 2 Analog Input Voltage VINA VEE-0.3 VDD+0.3 V 3 Digital Input Voltage VIN VSS-0.3 VDD+0.3 V 4 Current on any Logic Pin I 10 mA 5 Storage Temperature TS -65 +150 °C 6 Package Power Dissipation PLASTIC DIP CERDIP PD PD 0.6 1.2 W W Recommended Operating Conditions - Voltages are with respect to V EE unless otherwise stated. Characteristics Sym Min Typ Max Units Test Conditions 1 Operating Temperature TO -40 25 85 °C 2 Supply Voltage VDD-VSS VDD-VEE VSS-VEE 5 5 0 5 10 5 15 15 10 V V V 3 Analog Input Voltage VINA VEE VDD V 4 Digital Input Voltage VIN VSS VDD V DC Electrical Characteristics† - Voltages are with respect to V EE=VSS=0V. Characteristics Sym Min Typ‡ Max Units Test Conditions 1 Quiescent Supply Current IDD 1100 µAVDD=15V. All digital inputs at VIN=VSS or VDD 2 Off-state Leakage Current (Any line to any junctor) IOFF ±0.1 ±500 nA VDD=13V, Switch is ‘Off’ IVJi - VLjI = VDD - VEE 3 Input Logic “0” level VIL 3.0 1.5 V V VDD =10V VDD=5V VINA=VDD through 1kΩ 4 Input Logic “1” level VIH 7.0 3.5 V V VDD =10V VDD=5V VINA=VDD through 1kΩ 5 Maximum current through Crosspoint Switch IMAX ±8.0 mA VDD=13V DC Electrical Characteristics- Switch Resistance - V DC is the external DC offset applied at the analog I/O pins. Characteristics Sym 25°C 70°C 85°C Units Test Conditions Min Typ Max Typ Typ 1 On-state VDD=13V Resistance VDD=10V VDD= 5V RON 60 90 105 290 108 160 650 105 120 320 110 125 325 Ω Ω Ω VSS=VEE=0V,VDC=VDD/2, IVJi - VLjI = 0.6V 2 Difference in on-state resistance between two switches VDD=13V VDD=10V ∆R ON 20 30 20 30 20 30 Ω Ω VSS=VEE=0V,VDC=VDD/2, IVJi - VLjI = 0.6V |
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