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M5M51016RT-12VLL Datasheet(PDF) 3 Page - Mitsubishi Electric Semiconductor |
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M5M51016RT-12VLL Datasheet(HTML) 3 Page - Mitsubishi Electric Semiconductor |
3 / 7 page MITSUBISHI LSIs 1048576-BIT(65536-WORD BY 16-BIT)CMOS STATIC RAM MITSUBISHI ELECTRIC M5M51016BTP,RT-12VL, -12VLL 9 Jul ,1997 ABSOLUTE MAXIMUM RATINGS CAPACITANCE Symbol Parameter Test conditions pF pF Unit Max 6 8 Typ Min Limits VI=GND, VI=25mVrms, f=1MHz VO=GND,VO=25mVrms, f=1MHz Input capacitance ( except BC1,BC2) Output capacitance CI CO Parameter Supply voltage Input voltage Output voltage Power dissipation Operating temperature Storage temperature Unit V V V W Conditions With respect to GND Ta=25 1 0 ~ 70 – 65 ~ 150 Ratings Symbol Vcc VI VO Pd Topr Tstg DC ELECTRICAL CHARACTERISTICS (Ta=0 ~70 , Vcc=2.7V ~ 3.6V, unless otherwise noted) – 0.3 ~ 4.6 (Ta=0 ~ 70 , Vcc=2.7V ~ 3.6V, unless otherwise noted) 0 ~ Vcc * –3.0V in case of AC ( Pulse width 50ns ) Note 1: Direction for current flowing into an IC is positive (no mark). 2: Typical value is Vcc = 3.3V, Ta = 25 3 pF 9 VI=GND, VI=25mVrms, f=1MHz Input capacitance ( BC1,BC2 ) CIBC VIH VIL VOH1 Symbol Parameter V V V Max Vcc+0.3V 0.6 Typ Limits Min 2.0 – 0.3* 2.4 Test conditions Unit High-level input voltage Low-level input voltage High-level output voltage 1 CC3 VOL I I ICC1W I V µA µA 0.4 Low-level output voltage Input current Output current in off-state IO 0.33 Stand-by current mA * –3.0V in case of AC ( Pulse width 30ns ) mA 55 Stand-by current 60 -VL -VLL 12 IOH = – 1mA IOH = – 0.1mA IOL = 2mA VI =0 ~ Vcc BC1 and BC2 = VIH or CS = VIL or OE = VIH, VI/O = 0 ~ Vcc 1 BC1 and BC2 = VIL, CS = VIH other inputs = VIH or VIL Output-open(duty 100%) Min cycle 1MHz mA 12 VOH2 High-level output voltage 2 CC4 I Vcc–0.5V V ICC1B mA Min cycle 1MHz mA Active supply current (AC,TTL level) Word operation (16bit) Active supply current (AC,TTL level) Byte operation (8bit) (BC1 = VIH and BC2 = VIL) or (BC1 = VIL and BC2 = VIH), CS = VIH other inputs = VIH or VIL Output-open(duty 100%) 10 35 ICC2W ICC2B < – 0.3* ~ Vcc + 0.3 C o C o C o C o + _ 1 + _ 2) BC1,BC2 Vcc - 0.2V, other inputs = 0 ~Vcc BC1 and BC2 = VIH or CS = VIL, other inputs = 0 ~Vcc 1) CS 0.2V, other inputs = 0 ~Vcc CS Vcc - 0.2V < > > µA µA C o C o < |
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