Analog Devices 18-Channel I/O Expander I2C 24-Pin LFCSP WQ, ADP5587ACPZ-R7

RS Stock No.: 809-9815PBrand: Analog DevicesManufacturers Part No.: ADP5587ACPZ-R7
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Technical documents

Specifications

Number of I/O Channels

18

Interface

I2C

Number of Pins

24

Package Type

LFCSP WQ

Clock Frequency

400kHz

Mounting Type

Surface Mount

Maximum Supply Voltage

3.6 V

Minimum Supply Voltage

1.65 V

Product details

Serial I/O Peripherals, Analog Devices

This range of mobile I/O expanders and keypad controllers from Analog Devices are ideal for applications which need a large extended keypad and/or expanded I/Os. This is applications such as portable devices, smartphones, inventory scanners, medical equipment and meter readers.
Mobile I/O expanders take some of the functionality that is carried out by a microprocessor, for example GPIO and key scan function. Microprocessors are then able to carry out higher priority functions whilst providing higher efficiency and lower power consumption.

P.O.A.

Each (Supplied on a Reel) (ex VAT)

Analog Devices 18-Channel I/O Expander I2C 24-Pin LFCSP WQ, ADP5587ACPZ-R7
Select packaging type

P.O.A.

Each (Supplied on a Reel) (ex VAT)

Analog Devices 18-Channel I/O Expander I2C 24-Pin LFCSP WQ, ADP5587ACPZ-R7

Stock information temporarily unavailable.

Select packaging type

Stock information temporarily unavailable.

Technical documents

Specifications

Number of I/O Channels

18

Interface

I2C

Number of Pins

24

Package Type

LFCSP WQ

Clock Frequency

400kHz

Mounting Type

Surface Mount

Maximum Supply Voltage

3.6 V

Minimum Supply Voltage

1.65 V

Product details

Serial I/O Peripherals, Analog Devices

This range of mobile I/O expanders and keypad controllers from Analog Devices are ideal for applications which need a large extended keypad and/or expanded I/Os. This is applications such as portable devices, smartphones, inventory scanners, medical equipment and meter readers.
Mobile I/O expanders take some of the functionality that is carried out by a microprocessor, for example GPIO and key scan function. Microprocessors are then able to carry out higher priority functions whilst providing higher efficiency and lower power consumption.