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M48T248Y Datasheet(PDF) 14 Page - STMicroelectronics |
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M48T248Y Datasheet(HTML) 14 Page - STMicroelectronics |
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14 / 24 page ![]() M48T248Y, M48T248V 14/24 Data Retention Mode Data can be read or written only when VCC is greater than VPFD. When VCC is below VPFD (the point at which write protection occurs), the clock registers and the SRAM are blocked from any ac- cess. When VCC falls below the Battery Switch Over threshold (VSO), the device is switched from VCC to battery backup (VBAT). RTC operation and SRAM data are maintained via battery backup un- til power is stable. All control, data, and address signals must be powered down when VCC is pow- ered down. The lithium power source is designed to provide power for RTC activity as well as RTC and RAM data retention when VCC is absent or unstable. The capability of this source is sufficient to power the device continuously for the life of the equip- ment into which it has been installed. For specifi- cation purposes, life expectancy is ten (10) years at 25°C with the internal oscillator running without VCC. Each unit is shipped with its energy source disconnected, guaranteeing full energy capacity. When VCC is first applied at a level greater than VPFD, the energy source is enabled for battery backup operation. The actual life expectancy will be much longer if no battery energy is used (e.g., when VCC is present). Figure 9. Power Down/Up Mode AC Waveforms Table 9. Power Down/Up Trip Points DC Characteristics Note: 1. Valid for Ambient Operating Temperature: TA = 0 to 70°C; VCC = 4.5 to 5.5V or 3.0 to 3.6V (except where noted). 2. At 25°C, VCC = 0V; the expected tDR is defined as cumulative time in the absence of VCC with the clock oscillator running. Symbol Parameter(1) Min Max Unit tREC VPFD (max) to CE low 1.5 2.5 ms tF VPFD (max) to VPFD (min) VCC Fall Time 300 µs tFB VPFD (min) to VSO VCC Fall Time 10 µs tR VPFD (min) to VPFD (max) VCC Rise Time 0 µs tPD CE High to Power-Fail 0 µs tDR (2) Expected Data Retention Time 10 Years tDR tF tREC tR tPD tFB VSO VCC CE VPFD (max) VPFD (min) AI04236 |
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