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JS28F256P33BFE 数据表(PDF) 47 Page - Micron Technology |
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JS28F256P33BFE 数据表(HTML) 47 Page - Micron Technology |
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47 / 90 page ![]() Datasheet Aug 2009 47 Order Number:320003-08 P33-65nm 14.2 DC Voltage Characteristics IPPBC VPP Blank Check 0.05 0.10 0.05 0.10 mA VPP = VPPL, erase in progress 3 0.05 0.10 0.05 0.10 VPP = VPPH, erase in progress Notes: 1. All currents are RMS unless noted. Typical values at typical VCC, TC = +25 °C. 2. ICCS is the average current measured over any 5 ms time interval 5 µs after CE# is deasserted. 3. Sampled, not 100% tested. 4. ICCES is specified with the device deselected. If device is read while in erase suspend, current is ICCES plus ICCR. 5. ICCW, ICCE measured over typical or max times specified in Section 15.5, “Program and Erase Characteristics” on page 58. 6. if VIN > VCC the input load current increases to 10uA max. 7. the IPPS,IPPWS,IPPES Will increase to 200uA when VPP/WP# is at VPPH. Table 20: DC Voltage Characteristics Sym Parameter CMOS Inputs (VCCQ = 2.3 V – 3.6 V) TTL Inputs (1) (VCCQ = 2.4 V – 3.6 V) Unit Test Conditions Notes Min Max Min Max VIL Input Low Voltage -0.5 0.4 -0.5 0.6 V 2 VIH Input High Voltage VCCQ – 0.4 VCCQ + 0.5 2.0 VCCQ + 0.5 V VOL Output Low Voltage - 0.2 - 0.2 V VCC = VCC Min VCCQ = VCCQ Min IOL = 100 µA - VOH Output High Voltage VCCQ – 0.2 - VCCQ – 0.2 - V VCC = VCC Min VCCQ = VCCQ Min IOH = –100 µA - VPPLK VPP Lock-Out Voltage - 0.4 - 0.4 V 3 VLKO VCC Lock Voltage 1.5 - 1.5 - V - VLKOQ VCCQ Lock Voltage 0.9 - 0.9 - V - VPPL VPP Voltage Supply (Logic Level) 1.5 3.6 1.5 3.6 V VPPH Buffered Enhanced Factory Programming VPP 8.5 9.5 8.5 9.5 V Notes: 1. Synchronous read mode is not supported with TTL inputs. 2. VIL can undershoot to –1.0 V for duration of 2ns or less and VIH can overshoot to VCCQ + 1.0 V for durations of 2ns or less. 3. VPP ≤ VPPLK inhibits erase and program operations. Do not use VPPL and VPPH outside their valid ranges. Table 19: DC Current Characteristics (Sheet 2 of 2) Sym Parameter CMOS Inputs (VCCQ = 2.3 V - 3.6 V) TTL Inputs (VCCQ = 2.4 V - 3.6 V) Unit Test Conditions Notes Typ Max Typ Max |
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