DescriptionThe XR16V2752IJ is designed as a high performance dual universal asynchronous receiver and transmitter (UART) with 64 byte TX and RX FIFOs. The device operates from 2.25 to 3.6 volts with 5 Volt tolerant inputs and is pin-to-pin compatible to exar's ST16C2552, XR16L2552 and XR16L2752. T...
XR16V2752IJ: DescriptionThe XR16V2752IJ is designed as a high performance dual universal asynchronous receiver and transmitter (UART) with 64 byte TX and RX FIFOs. The device operates from 2.25 to 3.6 volts with...
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The XR16V2752IJ is designed as a high performance dual universal asynchronous receiver and transmitter (UART) with 64 byte TX and RX FIFOs. The device operates from 2.25 to 3.6 volts with 5 Volt tolerant inputs and is pin-to-pin compatible to exar's ST16C2552, XR16L2552 and XR16L2752. Typical applications include portable appliances, telecommunication network routers, ethernet network routers, cellular data devices and factory automation and process controls.
XR16V2752IJ has nine features. (1)2.25 to 3.6volt operation. (2)5 volt tolerant inputs. (3)Pin-to-pin compatible to exar's XR16L2752. (4)Two independent UART channels. (5)Alternate function register. (6)Device identification and revision. (7)Crystal oscillator or external clock input. (8)Crystal oscillator (up to 32MHz) or external clock (up to 64MHz) input. (9)44-PLCC and 32-QFN packages. That are all the main features.
Some absolute maximum ratings of XR16V2752IJ have been concluded into several points as follow. (1)Its power supply range would be 4V. (2)Its voltage at any pin would be from GND-0.3V to 5.5V. (3)Its operating temperature range would be from -40°C to +85°C. (4)Its storage temperature range would be from -65°C to +150°C. (5)Its package dissipation would be 500mW. It should be noted that stresses above those listed in absolute maximum ratings may cause permanent damage to device.
Also some electrical characteristics of XR16V2752IJ at limits 2.5V are concluded as follow. (1)Its clock input low level would be min -0.3V and max 0.4V. (2)Its clock input high level would be min 2.0V and max Vcc. (3)Its input low voltage would be min -0.3V and max 0.5V. (4)Its input high voltage would be min 1.8V and max 5.5V. (5)Its output low voltage would be max 0.4V. (6)Its output high voltage would be min 1.8V. (7)Its input low leakage current would be max +/-10uA. (8)Its input high leakage current would be max +/-10uA. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!