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PCAL6416AEV中文資料恩XP數(shù)據(jù)手冊(cè)PDF規(guī)格書

PCAL6416AEV
廠商型號(hào)

PCAL6416AEV

功能描述

Low-voltage translating 16-bit I2C-bus/SMBus I/O expander with interrupt output, reset, and configuration registers

絲印標(biāo)識(shí)

L16A

封裝外殼

VFBGA24

文件大小

840.48 Kbytes

頁(yè)面數(shù)量

56 頁(yè)

生產(chǎn)廠商 未知制造商
企業(yè)簡(jiǎn)稱

恩XP

中文名稱

未知制造商

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數(shù)據(jù)手冊(cè)

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更新時(shí)間

2025-5-28 23:01:00

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PCAL6416AEV規(guī)格書詳情

General description

The PCAL6416A is a 16-bit general-purpose I/O expander that provides remote I/O

expansion for most microcontroller families via the I2C-bus interface.

NXP I/O expanders provide a simple solution when additional I/Os are needed while

keeping interconnections to a minimum, for example, in battery-powered mobile

applications for interfacing to sensors, push buttons, keypad, etc. In addition to providing

a flexible set of GPIOs, it simplifies interconnection of a processor running at one

voltage level to I/O devices operating at a different (usually higher) voltage level. The

PCAL6416A has built-in level shifting feature that makes these devices extremely flexible

in mixed signal environments where communication between incompatible I/O voltages

is required. Its wide VDD range of 1.65 V to 5.5 V on the dual power rail allows seamless

communications with next-generation low voltage microprocessors and microcontrollers

on the interface side (SDA/SCL) and peripherals at a higher voltage on the port side.

There are two supply voltages for PCAL6416A: VDD(I2C-bus) and VDD(P). VDD(I2Cbus)

provides the supply voltage for the interface at the master side (for example, a

microcontroller) and the VDD(P) provides the supply for core circuits and Port P. The

bidirectional voltage level translation in the PCAL6416A is provided through VDD(I2C-bus).

VDD(I2C-bus) should be connected to the VDD of the external SCL/SDA lines. This indicates

the VDD level of the I2C-bus to the PCAL6416A, while the voltage level on Port P of the

PCAL6416A is determined by the VDD(P).

The PCAL6416A contains the PCA6416A register set of four pairs of 8-bit Configuration,

Input, Output, and Polarity Inversion registers and additionally, the PCAL6416A

has Agile I/O, which are additional features specifically designed to enhance the I/

O. These additional features are: programmable output drive strength, latchable

inputs, programmable pull-up/pull-down resistors, maskable interrupt, interrupt status

register, programmable open-drain or push-pull outputs. The PCAL6416A is a pinto-

pin replacement to the PCA6416A, however, the PCAL6416A powers up with all I/

O interrupts masked. This mask default allows for a board bring-up free of spurious

interrupts at power-up.

At power-on, the I/Os are configured as inputs. However, the system master can enable

the I/Os as either inputs or outputs by writing to the I/O configuration bits. The data for

each input or output is kept in the corresponding input or output register. The polarity of

the Input Port register can be inverted with the Polarity Inversion register, saving external

logic gates. Programmable pull-up and pull-down resistors eliminate the need for discrete

components.

The system master can reset the PCAL6416A in the event of a time-out or other

improper operation by asserting a LOW in the RESET input. The power-on reset puts

the registers in their default state and initializes the I2C-bus/SMBus state machine. The

RESET pin causes the same reset/initialization to occur without depowering the part.

The PCAL6416A open-drain interrupt (INT) output is activated when any input state

differs from its corresponding Input Port register state and is used to indicate to the

system master that an input state has changed.

INT can be connected to the interrupt input of a microcontroller. By sending an interrupt

signal on this line, the remote I/O can inform the microcontroller if there is incoming data

on its ports without having to communicate via the I2C-bus. Thus, the PCAL6416A can

remain a simple slave device. The input latch feature holds or latches the input pin state

and keeps the logic values that created the interrupt until the master can service the

interrupt. This minimizes the host’s interrupt service response for fast moving inputs.

The device Port P outputs have 25 mA sink capabilities for directly driving LEDs while

consuming low device current.

One hardware pin (ADDR) can be used to program and vary the fixed I2C-bus address

and allow up to two devices to share the same I2C-bus or SMBus.

Features and benefits

? I2C-bus to parallel port expander

? Operating power supply voltage range of 1.65 V to 5.5 V

? Allows bidirectional voltage-level translation and GPIO expansion between:

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

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

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

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

? Low standby current consumption:

– 1.5 μA typical at 5 V VDD

– 1.0 μA typical at 3.3 V VDD

? Schmitt trigger action allows slow input transition and better switching noise immunity

at the SCL and SDA inputs

– Vhys = 0.18 V (typical) at 1.8 V

– Vhys = 0.25 V (typical) at 2.5 V

– Vhys = 0.33 V (typical) at 3.3 V

– Vhys = 0.5 V (typical) at 5 V

? 5 V tolerant I/O ports

? Active LOW reset input (RESET)

? Open-drain active LOW interrupt output (INT)

? 400 kHz Fast-mode I2C-bus

? 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 25 mA drive maximum capability for directly driving LEDs

? Latch-up performance exceeds 100 mA per JESD 78, Class II

? ESD protection exceeds JESD 22

– 2000 V Human-Body Model (A114-A)

– 1000 V Charged-Device Model (C101)

? Packages offered: TSSOP24, HWQFN24, VFBGA24, X2QFN24 (LGA, Land Grid

Array)

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