PCA9306DCTR - 

Traductor de Nivel de Tensión, Bidireccional, 2 Entradas, 64 mA, 900 ps, 0 V a 5 V, SSOP-8


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Información del producto

Cinta Cortada
Traductor de Nivel
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Resumen del producto

The PCA9306DCTR is a dual bidirectional I²C and SMBus voltage-level Translator IC with an enable (EN) input, is operational from 1.2 to 3.3V VREF1 and 1.8 to 5.5V VREF2. It allows bidirectional voltage translations between 1.2 and 5V, without the use of a direction pin. The low ON-state resistance (RON) of the switch allows connections to be made with minimal propagation delay. When EN is high, the translator switch is ON and the SCL1 and SDA1 I/O are connected to the SCL2 and SDA2 I/O, respectively, allowing bidirectional data flow between ports. When EN is low, the translator switch is off and a high-impedance state exists between ports. In addition to voltage translation, the IC can be used to isolate a 400kHz bus from a 100kHz by controlling the EN pin.
  • 2-bit Bidirectional Translator for SDA and SCL Lines in Mixed-mode
  • I²C Applications
  • I²C and SMBus Compatible
  • 1.5ns Propagation delay to accommodate Standard-mode and Fast-mode I²C devices and Multiple Masters
  • Provides Bidirectional Voltage Translation with No Direction Pin
  • Low 3.5R ON-state Connection Between Input and Output Ports Provides Less Signal Distortion
  • Open-drain I²C I/O Ports (SCL1, SDA1, SCL2 and SDA2)
  • 5V Tolerant I²C I/O Ports to Support Mixed-mode Signal Operation
  • High-impedance SCL1, SDA1, SCL2 and SDA2 Pins for EN = Low
  • Lock-up-free Operation for Isolation When EN = Low
  • Flow-through Pin-out for Ease of Printed Circuit Board Trace Routing
  • Latch-up Performance Exceeds 100mA Per JESD 78, Class II
  • Green Product, No Sb/Br


Procesado de Señal, Comunicaciones y Red, Computers & Computer Peripherals, Industrial, Automatización y Control de Procesos


Device has limited built-in ESD protection, leads should be shorted together or the device placed in conductive foam during storage or handling to prevent electrostatic damage to the MOS gates.


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