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TCA6424ARGJR: CAD Models, Datasheet, Features [FAQ]

  • Contents

Catalog

TCA6424ARGJR Product Overview

TCA6424ARGJR CAD Models

TCA6424ARGJR Pin Configuration

TCA6424ARGJR Block Diagram

TCA6424ARGJR Typical Application

TCA6424ARGJR Features

TCA6424ARGJR Applications

TCA6424ARGJR Package Outline

TCA6424ARGJR Datasheet

TCA6424ARGJR Specifications

TCA6424ARGJR Manufacturer

Using Warning

TCA6424ARGJR FAQ

 

TCA6424ARGJR Product Overview

The TCA6424ARGJR is a Low-Voltage 24-Bit I2C and SMBus I/O Expander With Interrupt Output, Reset, and Configuration Registers. Using the I2C interface [serial clock (SCL) and serial data (SDA)], this 24-bit I/O expander for the two-line bidirectional bus (I2C) is intended to enable general-purpose remote I/O expansion for the majority of microcontroller families.

 

This device's broad VCC range is one of its main advantages. On the SDA/SCL side as well as the P-port side, it can function between 1.65 V and 5.5 V. As a result, the SDA/SCL side of the TCA6424ARGJR may interface with next-generation microprocessors and microcontrollers, where supply levels are decreasing to save power.

 

While the power supplies of microprocessors and microcontrollers are lowering, some PCB components, including LEDs, continue to operate at a 5-V power source.

 

TCA6424ARGJR CAD Models

 

Figure: PCB Symbol

 

 

Figure: Footprint

 

 

Figure: 3D Models

 

TCA6424ARGJR Pin Configuration

 

Figure: Pin Configuration

Pin Number Pin Name Description
1 P00 P-port input/output (push-pull design structure). At power on, P00 is configured as an input.
2 P01 P-port input/output (push-pull design structure). At power on, P01 is configured as an input.
3 P02 P-port input/output (push-pull design structure). At power on, P02 is configured as an input.
4 P03 P-port input/output (push-pull design structure). At power on, P03 is configured as an input.
5 P04 P-port input/output (push-pull design structure). At power on, P04 is configured as an input.
6 P05 P-port input/output (push-pull design structure). At power on, P05 is configured as an input.
7 P06 P-port input/output (push-pull design structure). At power on, P06 is configured as an input.
8 P07 P-port input/output (push-pull design structure). At power on, P07 is configured as an input.
9 P10 P-port input/output (push-pull design structure). At power on, P10 is configured as an input.
10 P11 P-port input/output (push-pull design structure). At power on, P11 is configured as an input.
11 P12 P-port input/output (push-pull design structure). At power on, P12 is configured as an input.
12 P13 P-port input/output (push-pull design structure). At power on, P13 is configured as an input.
13 P14 P-port input/output (push-pull design structure). At power on, P14 is configured as an input.
14 P15 P-port input/output (push-pull design structure). At power on, P15 is configured as an input.
15 P16 P-port input/output (push-pull design structure). At power on, P16 is configured as an input.
16 P17 P-port input/output (push-pull design structure). At power on, P17 is configured as an input.
17 P20 P-port input/output (push-pull design structure). At power on, P20 is configured as an input.
18 P21 P-port input/output (push-pull design structure). At power on, P21 is configured as an input.
19 P22 P-port input/output (push-pull design structure). At power on, P22 is configured as an input.
20 P23 P-port input/output (push-pull design structure). At power on, P23 is configured as an input.
21 P24 P-port input/output (push-pull design structure). At power on, P24 is configured as an input.
22 P25 P-port input/output (push-pull design structure). At power on, P25 is configured as an input.
23 P26 P-port input/output (push-pull design structure). At power on, P26 is configured as an input.
24 P27 P-port input/output (push-pull design structure). At power on, P27 is configured as an input.
25 GND Ground
26 ADDR Address input. Connect directly to VCCP or ground.
27 VCCP Supply voltage of TCA6424A for P port
28 RESET Active-low reset input. Connect to VCCI through a pullup resistor, if no active connection is used.
29 SCL Serial clock bus. Connect to VCCI through a pullup resistor.
30 SDA Serial data bus. Connect to VCCI through a pullup resistor.
31 VCCI Supply voltage of I2C bus. Connect directly to the VCC of the external I2C controller. Provides voltage-level
translation.
32 INT Interrupt output. Connect to VCCI through a pullup resistor.

 

TCA6424ARGJR Block Diagram

 

Figure: Block Diagram

 

TCA6424ARGJR Typical Application

 

Figure: Typical Application

 

TCA6424ARGJR Features

  • 5-V Tolerant I/O ports
  • Active-low reset input ( RESET)
  • Open-drain active-low interrupt output ( INT)
  • 400-kHz Fast I2C Bus
  • Input/output configuration register
  • Polarity inversion register
  • Internal power-on reset
  • Power up with all channels configured as inputs
  • No glitch on power up
  • Noise filter on SCL/SDA inputs
  • Latched outputs with high-current drive maximumcapability for directly driving LEDs
  • Latch-up performance exceeds 100 mA per JESD78, class II
  • ESD protection exceeds JESD 22

– 2000-V Human-body model (A114-A)

– 200-V Machine model (A115-A)

– 1000-V Charged-device model (C101)

  • Operating power-supply voltage range of 1.65 V to5.5 V
  • Allows bidirectional voltage-level translation andGPIO expansion between:

– 1.8-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port

– 2.5-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port

– 3.3-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port

– 5-V SCL/SDA and 1.8-V, 2.5-V, 3.3-V, or 5-V P Port

  • I2C to Parallel port expander
  • Low standby current consumption of 1 μA
  • Schmitt-Trigger action allows slow input transitionand better switching noise immunity at the SCLand SDA inputs

– Vhys = 0.18 V Typ at 1.8 V

– Vhys = 0.25 V Typ at 2.5 V

– Vhys = 0.33 V Typ at 3.3 V

– Vhys = 0.5 V Typ at 5 V

 

TCA6424ARGJR Applications

  • Monitor
  • Control several peripheral signals

 

TCA6424ARGJR Package Outline

 

Figure: Package Outline

 

TCA6424ARGJR Datasheet

You can download the datasheet from the link given below:

 

TCA6424ARGJR Datasheet

 

TCA6424ARGJR Specifications

Type Description
Category Integrated Circuits (ICs)
Interface
I/O Expanders
Mfr Texas Instruments
Series -
Package Tape & Reel (TR)
Cut Tape (CT)
Digi-Reel®
Product Status Active
Number of I/O 24
Interface I²C, SMBus
Interrupt Output Yes
Features POR
Output Type Push-Pull
Current - Output Source/Sink 10mA, 25mA
Clock Frequency 400 kHz
Voltage - Supply 1.65V ~ 5.5V
Operating Temperature -40°C ~ 85°C
Mounting Type Surface Mount
Package / Case 32-UFQFN Exposed Pad
Supplier Device Package 32-UQFN (5x5)
Base Product Number TCA6424

 

TCA6424ARGJR Manufacturer

Texas Instruments Incorporated (TI), a technological firm based in the United States with its headquarters in Dallas, Texas, creates and markets a range of integrated circuits and semiconductors that are sold to producers and designers of electronic devices all over the world. Based on sales volume, it is among the top 10 semiconductor businesses globally. Development of embedded processors and analog chips, which generate more than 80% of the company's income, is its main focus. Calculators, microcontrollers, and multi-core processors are among the devices that TI also makes using its digital light processing technology and for educational purposes. As of 2016, the corporation had 45,000 patents in existence.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

TCA6424ARGJR FAQ

What is I O Expander?

The ability to add extra inputs and outputs (I/O) to a microprocessor (MPU) or microcontroller (MCU) system is made possible by GPIO Expanders, which are devices. They have an efficient data bus interface to reduce the I/O requirements of the MPU or MCU.

 

What is the use of expander?

The dynamic range can be expanded rather than compressed, which is the reverse of what a compressor does. Expanders are thus most effective when you desire a greater dynamic range. Expanders can be used to provide vocal or instrumental performances a little more loudness variation.

 

What is I2C IO expander?

The Raspberry Pi can communicate with other embedded devices via the I2C (eye-squared-cee) protocol (temperature sensors, displays, accelerometers, etc). In this illustration, we'll attach our Raspberry Pi to an MCP23008 I/O expander. The I/O expander increases the number of GPIO ports.

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