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  <title>[elecena] 4-bit dual-supply bus transceiver - zmiany ceny</title>
  <description>The SN74AXCH4T245 is a four-bit noninverting bus transceiver that uses two individually
		configurable power-supply rails. The device is operational with both VCCA
		and VCCB supplies as low as 0.65 V. The A port is designed to track
		VCCA, which accepts any supply voltage from 0.65 V to 3.6 V. The B port is
		designed to track VCCB, which accepts any supply voltage from 0.65 V to 3.6
		V. The SN74AXCH4T245 device is compatible with a single-supply system.

The SN74AXCH4T245 device is designed for asynchronous communication between data buses
		and transmits data from the A bus to the B bus or from the B bus to the A bus, depending on the
		logic level of the direction-control inputs (1DIR and 2DIR). The output-enable inputs
		(1OE and 2OE) are used to disable the outputs so the
		buses are effectively isolated. All control pins (xDIR and xOE) are
		referenced to VCCA.

Active bus-hold circuitry holds unused or undriven inputs at a valid logic state. Use of
		pullup or pulldown resistors with the bus-hold circuitry is not recommended. If a supply is present
		for VCCA or VCCB, the bus-hold circuitry always
		remains active on the A or B inputs respectively, independent of the state of the direction control
		or output enable pins.

To ensure the high-impedance state of the level shifter I/Os during power up or power
		down, the xOE pins should be tied to VCCA through a
		pullup resistor.

This device is fully specified for partial-power-down applications using the
		Ioff current. The Ioff protection circuitry ensures
		that no excessive current is drawn from or sourced into an input, output, or combined I/O that is
		biased to a specific voltage while the device is powered down.

The VCC isolation feature ensures that if either
		VCCA or VCCB is less than 100 mV, all I/O ports enter
		a high-impedance state by disabling the outputs.

Glitch-free power supply sequencing allows either supply rail to be powered on or off in
		any order while providing robust power sequencing performance.</description>
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