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4-Bit Dual-Supply Translating Transceiver with Configurable Voltage Translation and 3-State Outputs.
74AVC4T245Q 74AVC4T245Q.pdf

No.14127

FEATURES

? AEC-Q100 Qualified for Automotive 

  Applications Device Temperature Grade 1

  TA = -40℃ to +125℃

? VCCA Supply Voltage Range: 0.8V to 3.6V

? VCCB Supply Voltage Range: 0.8V to 3.6V

? Inputs Accept Voltages up to 3.6V

? +12mA/-12mA Output CurrentData Rates:

  380Mbps (≥ 1.8V to 3.3V Translation)

  200Mbps (≥ 1.1V to 3.3V Translation)

  200Mbps (≥ 1.1V to 2.5V Translation)

  200Mbps (≥ 1.1V to 1.8V Translation)

  100Mbps (≥ 1.1V to 1.2V Translation)

? Outputs in High-Impedance 

  State when VCCA or VCCB = 0V

? -40℃ to +125℃ Operating Temperature Range

? Available in a Green TSSOP-16 Package

DESCRIPTION
The 74AVC4T245Q is a 4-bit, dual-supply voltage level transceiver with 3-state outputs and bidirectional level translation. The device can be used as two 2-bit transceivers or one 4-bit transceiver. The nAn and nBn are four data input-output ports. nDIR are the direction control inputs and nOE are the output enable inputs.
VCCA and VCCB are the supply pins. The supply voltage of VCCA and VCCB can range from 0.8V to 3.6V, making the device suitable for bidirectional translating among any of the 0.8V, 1.2V, 1.5V, 1.8V, 2.5V and 3.3V voltage nodes. The nAn, nDIR and nOE signals are referenced to VCCA and nBn signals are referenced to VCCB.
When nDIR is set high, it allows transmission from nAn to nBn. When nDIR is set low, it allows transmission from nBn to nAn. nOE can be used to make the outputs disabled so that the buses are effectively isolated. In suspend mode, both nAn and nBn are in high-impedance state when either VCCA or VCCB input is at GND level.
This device is highly suitable for partial power-down applications using power-off leakage current (IOFF) circuit. When the device is powered down, the current backflow will be prevented from passing through the device.
This device is AEC-Q100 qualified (Automotive Electronics Council Standard Q100 Grade 1) and the use of this device is suitable for automotive applications.
APPLICATION CIRCUIT
PIN CONFIGUTION
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