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Hoeveelheid | |
---|---|
1+ | 28,720 € |
12+ | 27,170 € |
36+ | 26,120 € |
108+ | 25,090 € |
252+ | 23,970 € |
Productgegevens
Productoverzicht
The DS1225AD-150IND+ is a 64K non-volatile SRAM in 28 pin EDIP package. It is a 65,536bit, fully static, non-volatile SRAM organized as 8192 words by 8 bits. Each NV SRAM has a self contained lithium energy source and control circuitry which constantly monitors VCC for an out of tolerance condition. When such a condition occurs, the lithium energy source is automatically switched on and the write protection is unconditionally enabled to prevent data corruption. The NV SRAM can be used in place of existing 8K x 8 SRAMs directly conforming to the popular bytewide 28 pin DIP package. The device matches the pin-out of 2764 EPROM and the 2864 EEPROM allowing direct substitution while enhancing performance. There is no limit on the number of write cycles that can be executed and additional support circuitry is not required for microprocessor interfacing.
- Supply voltage range from 4.5V to 5.5V
- Operating temperature range from -40°C to +85°C
- Data is automatically protected during power loss
- Directly replaces 8K x 8 volatile static RAM or EEPROM
- Unlimited write cycles
- Low power CMOS
- Read and write access time is 150ns
- Lithium energy source is disconnected to retain freshness until power is applied for the first time
- Write protection voltage is 4.37V
- Operating current is 85mA
Toepassingen
Embedded Design & Development
Waarschuwingen
Market demand for this product has caused an extension in leadtimes. Delivery dates may fluctuate. Product exempt from discounts.
Opmerkingen
ADI products are only authorized (and sold) for use by the customer and are not to be resold or otherwise passed on to any third party
Technische specificaties
64Kbit
150ns
4.5V
eDIP
Parallel
-40°C
-
No SVHC (21-Jan-2025)
8K x 8bit
150ns
5.5V
28Pins
Through Hole
85°C
-
Technische documenten (1)
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Wetgeving en milieu
Land waarin het laatste noemenswaardige fabricageproces is uitgevoerdLand van oorsprong:Philippines
Land waarin het laatste noemenswaardige fabricageproces is uitgevoerd
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