Features: • The IDT7280 is equivalent to two IDT7200 256 x 9 FIFOs• The IDT7281 is equivalent to two IDT7201 512 x 9 FIFOs• The IDT7282 is equivalent to two IDT7202 1,024 x 9 FIFOs• The IDT7283 is equivalent to two IDT7203 2,048 x 9 FIFOs• The IDT7284 is equivalent to...
IDT7283: Features: • The IDT7280 is equivalent to two IDT7200 256 x 9 FIFOs• The IDT7281 is equivalent to two IDT7201 512 x 9 FIFOs• The IDT7282 is equivalent to two IDT7202 1,024 x 9 FIFOs...
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Symbol |
Rating |
Commercial &Industrial |
Unit |
VTERM(2) |
Terminal Voltage with Respect to GND |
-0.5 to +4.6 |
V |
TSTG |
Storage Temperature |
-55 to +125 |
oC |
IOUT |
DC Output Current |
-55 to +50 |
mA |
The IDT7283 are dual-FIFO memories that load and empty data on a first-in/first-out basis. These devices are functional and compatible to two IDT7200/7201/7202/7203/7204/7205 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. The devices use Full and Empty flags to prevent data overflow and underflow and expansion logic to allow for unlimited expansion capability in both word size and depth.
The reads and writes of the IDT7283 are internally sequential through the use of ring pointers, with no address information required to load and unload data. Data is toggled in and out of the devices through the use of the Write (W) and Read (R) pins.
The IDT7283 utilize a 9-bit wide data array to allow for control and parity bits at the user's option. This feature is especially useful in data communications applications where it is necessary to use a parity bit for transmission/reception error checking. It also features a Retransmit (RT) capability that allows for reset of the read pointer to its initial position when RT is pulsed LOW to allow for retransmission from the beginning of data. A Half-Full Flag is available in the single device mode and width expansion modes.
These FIFOs of the IDT7283 are fabricated using IDT's high-speed CMOS technology. They are designed for those applications requiring asynchronous and simultaneous read/writes in multiprocessing and rate buffer applications.