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MCM63P919ZP200R Datasheet(PDF) 11 Page - Motorola, Inc |
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MCM63P919ZP200R Datasheet(HTML) 11 Page - Motorola, Inc |
11 / 30 page MCM63P837 •MCM63P919 11 MOTOROLA FAST SRAM PACKAGE THERMAL CHARACTERISTICS Rating Symbol Max Unit Notes TQFP Junction to Ambient (@ 200 lfm) Single–Layer Board Four–Layer Board R θJA 40 25 °C/W 1, 2 Junction to Board (Bottom) R θJB 17 °C/W 3 Junction to Case (Top) R θJC 9 °C/W 4 PBGA Junction to Ambient (@ 200 lfm) Single–Layer Board Four–Layer Board R θJA 38 22 °C/W 1, 2 Junction to Board (Bottom) R θJB 14 °C/W 3 Junction to Case (Top) R θJC 5 °C/W 4 NOTES: 1. Junction temperature is a function of on–chip power dissipation, package thermal resistance, mounting site (board) temperature, ambient temperature, air flow, board population, and board thermal resistance. 2. Per SEMI G38–87. 3. Indicates the average thermal resistance between the die and the printed circuit board. 4. Indicates the average thermal resistance between the die and the case top surface via the cold plate method (MIL SPEC–883 Method 1012.1). DC OPERATING CONDITIONS AND CHARACTERISTICS (VDD = 3.3 V ±5%, TA = 0 to 70°C, Unless Otherwise Noted) RECOMMENDED OPERATING CONDITIONS AND DC CHARACTERISTICS (Voltages Referenced to VSS = 0 V) Parameter Symbol Min Typ Max Unit 2.5 V I/O SUPPLY Supply Voltage VDD 3.135 3.3 3.465 V I/O Supply Voltage VDDQ 2.375 2.5 2.9 V Input Low Voltage VIL –0.3* — 0.7 V Input High Voltage VIH 1.7 — VDD + 0.3** V Input High Voltage I/O Pins VIH2 1.7 — VDDQ + 0.3** V Output Low Voltage (IOL = 2 mA) VOL — — 0.7 V Output High Voltage (IOH = –2 mA) VOH 1.7 — — V 3.3 V I/O SUPPLY Supply Voltage VDD 3.135 3.3 3.465 V I/O Supply Voltage VDDQ 3.135 3.3 VDD V Input Low Voltage VIL –0.5* — 0.8 V Input High Voltage VIH 2 — VDD + 0.5** V Input High Voltage I/O Pins VIH2 2 — VDDQ + 0.5** V Output Low Voltage (IOL = 8 mA) VOL — — 0.4 V Output High Voltage (IOH = –4 mA) VOH 2.4 — — V * Undershoot: VIL ≤ –1.5 V for t < 20% tKHKH. ** Overshoot: VIH/VIH2 ≤ VDD/VDDQ + 1.0 V (not to exceed 4.6 V) for t < 20% tKHKH. Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com |
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