Features: • 1.5 Giggabit ( 8-Meg X 48-Bit X 4-Banks)• RAD-PAK® radiation-hardened against natural space radiation• Total Dose Hardness:>100 krad (Si), depending upon space mission• Excellent Single Event Effects:SELTH > 85 MeV/mg/cm2 @ 25°C• JEDEC Standard 3...
97SD3248: Features: • 1.5 Giggabit ( 8-Meg X 48-Bit X 4-Banks)• RAD-PAK® radiation-hardened against natural space radiation• Total Dose Hardness:>100 krad (Si), depending upon space m...
SeekIC Buyer Protection PLUS - newly updated for 2013!
268 Transactions
All payment methods are secure and covered by SeekIC Buyer Protection PLUS.
PARAMETER | SYMBOL | MAX | UNIT |
Voltage on any pin relative to VSS | VIN VOUT |
-0.5 to VCC + 0.5 (< 4.6(max)) |
V |
Supply voltage relative to VSS | VCC | -0.5 to +4.6 | V |
Short circuit output current | IOUT | 50 | mA |
Operating Temperature | TOPR | -55 to +125 | |
Storage Temperature | TSTG | -65 to +150 |
Maxwell Technologies' Synchronous Dynamic Random Access Memory (SDRAM) 97SD3248 is ideally suited for space applications requiring high performance computing and high density memory storage. As microprocessors increase in speed and demand for higher density memory escalates, SDRAM 97SD3248 has proven to be the ultimate solution by providing bit-counts up to 1.5 Gigabits and speeds up to 100 Megahertz. SDRAMs represent a significant advantage in memory technology over traditional DRAMs including the ability to burst data synchronously at high rates with automatic column-address generation,the ability to interleave between banks masking precharge time
Maxwell Technologies' patented RAD-PAK® packaging technology incorporates radiation shielding in the microcircuit package. 97SD3248 eliminates the need for box shielding for a lifetime in orbit or space mission. In a typical GEO orbit, RAD-PAK® provides greater than 100 krads(Si)radiation dose tolerance. 97SD3248 is available with screening up to Maxwell Technologies self-defined Class K.