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M5M5V208RV-12LL Datasheet(PDF) 3 Page - Mitsubishi Electric Semiconductor |
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M5M5V208RV-12LL Datasheet(HTML) 3 Page - Mitsubishi Electric Semiconductor |
3 / 7 page MITSUBISHI LSIs 2097152-BIT (262144-WORD BY 8-BIT) CMOS STATIC RAM MITSUBISHI ELECTRIC M5M5V208FP,VP,RV,KV,KR -70L , -85L, -10L , -12L, -70LL, -85LL, -10LL, -12LL '97.3.21 3 ABSOLUTE MAXIMUM RATINGS CAPACITANCE Symbol Parameter Test conditions pF pF Unit Max 7 9 Typ Min Limits VI=GND, VI=25mVrms, f=1MHz VO=GND,VO=25mVrms, f=1MHz Input capacitance Output capacitance CI CO DC ELECTRICAL CHARACTERISTICS (Ta=0~70°C, Vcc= 2.7 ~ 3.6V, unless otherwise noted) Symbol Parameter V V V Limits Test conditions Unit V µA (Ta=0 ~ 70°C, Vcc= 2.7 ~ 3.6V, unless otherwise noted) * –3.0V in case of AC ( Pulse width ≤ 30ns ) Note 1: Direction for current flowing into an IC is positive (no mark). 2: Typical value is for Vcc = 3V, Ta = 25°C mA * –3.0V in case of AC ( Pulse width ≤ 30ns ) µA µA mA V Active supply current (CMOS-level Input) Active supply current (TTL-level Input) Icc1 Icc2 Stand-by current Icc4 VIH High-level input voltage VIL Low-level input voltage IO Output current in off-state Icc3 Stand-by current VOH1 High-level output voltage 1 IOH= –0.5mA VOH2 High-level output voltage 2 IOH= –0.05mA VOL Low-level output voltage IOL=2mA II Input current VI=0 ~ Vcc S1=VIH or S2=VIL or OE=VIH VI/O=0 ~ Vcc S1=VIL,S2=VIH, o ther inputs=VIH or VIL output-open 1) S2 ≤ 0.2V or 2) S1 ≥ Vcc-0.2V, S2 ≥ Vcc-0.2V other inputs=0 ~ Vcc S1=VIH or S2=VIL,other inputs=0 ~ Vcc Vcc +0.3V 0.6 2.0 –0.3* 2.4 0.33 0.4 ±1 25 20 60 10 Vcc -0.5V ±1 13 10 -L -LL Max Typ Min Parameter Supply voltage Input voltage Output voltage Power dissipation Operating temperature Storage temperature Unit V V V mW °C °C Conditions With respect to GND Ta=25°C 700 0 ~ 70 – 65 ~150 Ratings Symbol Vcc VI VO Pd Topr Tstr – 0.5*~4.6 – 0.5* ~ Vcc + 0.5 0 ~ Vcc (Max 4.6) 0.3 27 22 15 12 mA S1 ≤ 0.2V, S2≥ Vcc-0.2V, o ther inputs ≤ 0.2V or ≥ Vcc-0.2V,output-open 0.6 1 -20 ~ +70°C -20 ~ +70°C -20 ~ +40°C +25°C f= 10MHz f= 5MHz f= 10MHz f= 5MHz |
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