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Z86233 Datasheet(PDF) 7 Page - Zilog, Inc. |
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Z86233 Datasheet(HTML) 7 Page - Zilog, Inc. |
7 / 18 page 7 Z86233/243 CP96DZ81201 CP96DZ81201 (8/96) ABSOLUTE MAXIMUM RATINGS Parameter Min Max Units Ambient Temperature under Bias –40 +105 C Storage Temperature –65 +150 C Voltage on any Pin with Respect to V SS [Note 1] –0.6 +7 V Voltage on V DD Pin with Respect to VSS –0.3 +7 V Voltage on XTAL1 and /RESET Pins with Respect to V SS [Note 2] –0.6 V DD+1 V Total Power Dissipation 1.21 W Maximum Allowable Current out of V SS 220 mA Maximum Allowable Current into V DD 180 mA Maximum Allowable Current into an Input Pin [Note 3] –600 +600 µA Maximum Allowable Current into an Open-Drain Pin [Note 4] –600 +600 µA Maximum Allowable Output Current Sinked by Any I/O Pin 25 mA Maximum Allowable Output Current Sourced by Any I/O Pin 25 mA Notice: Stresses greater than those listed under Absolute Maxi- mum Ratings may cause permanent damage to the de- vice. This is a stress rating only; functional operation of the device at any condition above those indicated in the operational sections of these specifications is not implied. Exposure to absolute maximum rating conditions for an extended period may affect device reliability. STANDARD TEST CONDITIONS The characteristics listed below apply for standard test conditions as noted. All voltages are referenced to Ground. Positive current flows into the referenced pin (Test Load). Test Load Diagram CAPACITANCE T A = 25°C, VCC = GND = 0V, f = 1.0 MHz; unmeasured pins returned to GND. Parameter Min Max Input capacitance 0 12 pF Output capacitance 0 12 pF I/O capacitance 0 12 pF Notes: [1] This applies to all pins except XTAL pins and where otherwise noted. [2] There is no input protection diode from pin to V DD. [3] This excludes XTAL pins. [4] Device pin is not at an output Low state. 150 pF From Output Under Test Total power dissipation should not exceed 1.21 W for the package. Power dissipation is calculated as follows: Total Power Dissipation = V DD x [ IDD – (sum of IOH) ] + sum of [ (V DD – VOH) x IOH ] + sum of (V 0L x I0L) |
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