Features: • State-of-the-art architecture - Non-volatile data storage - Low voltage operation: 3.0V (Vcc = 2.7V to 6.0V) - Full TTL compatible inputs and outputs - Auto increment for efficient data dump• Low voltage read operation - Down to 2.7V• Hardware and software write prote...
IS93C46-3: Features: • State-of-the-art architecture - Non-volatile data storage - Low voltage operation: 3.0V (Vcc = 2.7V to 6.0V) - Full TTL compatible inputs and outputs - Auto increment for efficient...
SeekIC Buyer Protection PLUS - newly updated for 2013!
268 Transactions
All payment methods are secure and covered by SeekIC Buyer Protection PLUS.
The IS93C46-3 is ideal for high-volume applications requiring low power and low density storage. This device uses a low cost, space saving 8-pin package. Candidate applications include robotics, alarm devices, electronic locks, meters and instrumentation settings.
Symbol | Parameter |
Value |
Unit |
VGND | Voltage with Respect to GND |
0.3 tp +6.5 |
V |
TBIAS | Temperature Under Bias (IS93C46-3) |
0 to +70 |
|
TBIAS | Temperature Under Bias (IS93C46-3I) |
40 to +85 |
|
TSTG | Storage Temperature |
65 to +125 |
The IS93C46-3 is a low cost 1,024-bit, non-volatile, serial E2PROM. It is fabricated using ISSI's advanced CMOS E2PROM technology. The IS93C46-3 provides efficient non-volatile read/write memory arranged as 64 registers of 16 bits each. Seven 9-bit instructions control the operation of the device, which includes read, write, and mode enable functions. The data out pin (DOUT) indicates the status of the device during in the self-timed nonvolatile programming cycle.
The self-timed write cycle includes an automatic erasebefore- write capability. To protect against inadvertent writes, the WRITE instruction is accepted only while the chip is in the write enabled state. Data is written in 16 bits per write instruction into the selected register. If Chip Select (CS) is brought HIGH after initiation of the write cycle, the Data Output (DOUT) pin will indicate the READY/BUSY status of the chip.