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Q67100-Q519 Datasheet(PDF) 5 Page - Siemens Semiconductor Group |
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Q67100-Q519 Datasheet(HTML) 5 Page - Siemens Semiconductor Group |
5 / 22 page Semiconductor Group 37 HYB 511000BJ/BJL-50/-60/-70 1 M × 1-DRAM Absolute Maximum Ratings Operating temperature range .........................................................................................0 to + 70 ˚C Storage temperature range......................................................................................– 55 to + 150 ˚C Soldering temperature ............................................................................................................260 ˚C Soldering time .............................................................................................................................10 s Input/output voltage ........................................................................................................ – 1 to + 7 V Test Function Input voltage ....................................................................................... – 1 to + 10.5 V Power supply voltage...................................................................................................... – 1 to + 7 V Power dissipation..................................................................................................................... 0.6 W Data out current (short circuit) ................................................................................................ 50 mA Note: Stresses above those listed under “Absolute Maximum Ratings” may cause permanent damage of the device. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. DC Characteristics T A = 0 to 70 ˚C; VSS = 0 V; VCC = 5 V ± 10 % Parameter Symbol Limit Values Unit Test Condition min. max. Input high voltage V IH 2.4 6.5 V 1) Input low voltage V IL – 1.0 0.8 V 1) Test enable input high voltage V IH(TF) V CC + 4.5 10.5 V 1) Test disable input low voltage V IL(TF) – 1.0 V CC + 1.0 V 1) Output high voltage ( I OUT = – 5 mA) V OH 2.4 – V 1) Output low voltage ( I OUT = 4.2 mA) V OL – 0.4 V 1) Input leakage current, any input except TF (0 V ≤ V IN ≤ 6.5 V, all other pins = 0 V) I I(L) – 10 10 µA 1) Output leakage current (DO is disabled, 0 V ≤ V OUT ≤ 5.5 V) I O(L) – 10 10 µA 1) Average V CC supply current: -50 version -60 version -70 version (RAS, CAS, address cycling: t RC = tRC min.) I CC1 – – – 90 80 70 mA mA mA 2) 3) 2) 3) 2) 3) Standby V CC supply current (RAS = CAS = VIH) I CC2 –2mA – |
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