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PCK351 Datasheet(PDF) 6 Page - NXP Semiconductors |
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PCK351 Datasheet(HTML) 6 Page - NXP Semiconductors |
6 / 17 page Philips Semiconductors PCK351 1:10 clock distribution device with 3-State outputs Product data Rev. 01 — 14 May 2002 6 of 17 9397 750 09791 © Koninklijke Philips Electronics N.V. 2002. All rights reserved. 7. Limiting values [1] Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under ‘recommended operating conditions’ is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. [2] The performance capability of a high-performance integrated circuit in conjunction with its thermal environment can create junction temperatures which are detrimental to reliability. The maximum junction temperature of this integrated circuit should not exceed 150 °C. [3] The input and output negative voltage ratings may be exceeded if the input and output clamp currents are observed. 8. Recommended operating conditions [1] Unused pins (input or I/O) must be held HIGH or LOW. Table 5: Limiting values In accordance with the Absolute Maximum Rating System (IEC 60134).[1], [2] Symbol Parameter Conditions Min Max Unit VCC supply voltage range −0.5 +4.6 V VI input voltage range [3] −0.5 +7.0 V VO output voltage range [3] −0.5 +3.6 V IIK input clamp current VI <0V - −18 mA IOK output clamp current VI <0V - −50 mA IO output sink current - 64 mA ICC, IGND VCC or GND current - ±75 mA Tstg storage temperature −65 +150 °C PD maximum power dissipation SO package Tamb = +55 °C - 0.65 W SSOP package Tamb = +55 °C - 1.7 W Table 6: Recommended operating conditions See note 1. Symbol Parameter Conditions Min Max Unit VCC supply voltage 3.0 3.6 V VIH HIGH-level input voltage 2.0 5.5 V VI input voltage 0 0.8 V Tamb ambient temperature see Table 7 “DC characteristics” and Table 8 “AC characteristics” per device −40 +85 °C tr, tf input rise and fall times VCC = 3.3 ±0.3 V - 100 ns/V |
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