I/O Port Expanders

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PCF8575MS/TR
HGSEMi
encapsulation:SSOP-24
Quantity: 25000
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22+
2500+ $1.0087
12500+ $0.9919
25000+ $0.9666
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x $1.0087
Ext. Price: $2521.75
MOQ: 2500
Mult: 2500
SPQ: 2500
PCF8574AT
HGSEMi
10μA I2C 8 2.5V 6V 100KHz SO-16 SMD mount
Quantity: 20000
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2000+ $0.5504
10000+ $0.5412
20000+ $0.5275
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x $0.5504
Ext. Price: $1100.80
MOQ: 2000
Mult: 2000
SPQ: 2000
PCF8574M/TR
HGSEMi
Quantity: 2500
In Stock
24+
1+ $0.3254
10+ $0.3136
30+ $0.3063
100+ $0.2861
1000+ $0.277
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x $0.3254
Ext. Price: $0.32
MOQ: 1
Mult: 1
SPQ: 2500
PCF8574AM/TR
HGSEMi
encapsulation:SOP-16-150Mil
Quantity: 25000
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22+
2500+ $0.4701
12500+ $0.4623
25000+ $0.4505
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x $0.4701
Ext. Price: $1175.25
MOQ: 2500
Mult: 2500
SPQ: 2500
PCF8574AT/TR
HGSEMi
Quantity: 1965
In Stock
25+
1+ $0.6485
10+ $0.6114
30+ $0.5477
100+ $0.3965
2000+ $0.3817
6000+ $0.3705
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x $0.6485
Ext. Price: $0.64
MOQ: 1
Mult: 1
SPQ: 2000
PCF8574T/TR
HGSEMi
I2C 8 2.5V 6V SOP-16W
Quantity: 6030
In Stock
24+
1+ $0.2975
10+ $0.2868
30+ $0.28
100+ $0.2616
1000+ $0.2532
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x $0.2975
Ext. Price: $0.29
MOQ: 1
Mult: 1
SPQ: 2000
PCF8574P
HGSEMi
I2C 8 2.5V 6V 100KHz DIP-16 Through hole mounting
Quantity: 10000
In Stock
22+
1000+ $0.5504
5000+ $0.5412
10000+ $0.5275
- +
x $0.5504
Ext. Price: $550.40
MOQ: 1000
Mult: 1000
SPQ: 1000
PCF8574AP
HGSEMi
I2C 8 2.5V 6V 100KHz DIP-16 Through hole mounting
Quantity: 10000
In Stock
22+
1000+ $0.6397
5000+ $0.629
10000+ $0.613
- +
x $0.6397
Ext. Price: $639.70
MOQ: 1000
Mult: 1000
SPQ: 1000
HG82C55AN
HGSEMi
encapsulation:DIP-40
Quantity: 0
In Stock
10400+ $1.6811
- +
x $1.6811
Ext. Price: $17483.43
MOQ: 10400
Mult: 10
SPQ: 10

I/O Port Expanders

I/O Expanders, or Input/Output Expanders, are integrated circuits (ICs) that allow a microcontroller or processor to control a larger number of input/output (I/O) pins than it has available. They are essential in systems where a high number of I/O interfaces are required, such as in industrial automation, home automation, and data acquisition systems.

Definition:
An I/O Expander is a device that extends the I/O capabilities of a microcontroller by providing additional digital or analog I/O pins. These devices can be connected to the microcontroller via a serial communication protocol, such as I2C, SPI, or UART, which allows for efficient communication with a minimal number of physical connections.

Functions:
1. Digital I/O: Expanders can provide additional digital input/output pins, which can be used for reading digital signals (e.g., button presses, sensor outputs) or controlling digital outputs (e.g., LEDs, relays).
2. Analog I/O: Some expanders offer analog-to-digital conversion (ADC) or digital-to-analog conversion (DAC) capabilities, allowing microcontrollers to interface with analog signals.
3. Interrupt Handling: Many I/O expanders support interrupt signals, which can notify the microcontroller of specific events, such as a change in input state, reducing the need for continuous polling.
4. Configuration Flexibility: They often allow for individual pin configuration, enabling different modes of operation (e.g., input, output, interrupt, pull-up/pull-down resistors).

Applications:
- Industrial Automation: For controlling and sensors and actuators in machinery.
- Home Automation: To manage smart home devices like lights, thermostats, and security systems.
- Data Acquisition Systems: For collecting and processing data from various sensors in real-time.
- Medical Equipment: To interface with patient devices and control medical instruments.

Selection Criteria:
1. Protocol Compatibility: Ensure the expander's communication protocol (I2C, SPI, etc.) matches the microcontroller's capabilities.
2. I/O Pin Count: Choose an expander with the number of I/O pins required for the application.
3. Voltage Levels: The expander should support the voltage levels of the system it will interface with.
4. Current Sourcing/Sinking: Consider the current requirements of the connected devices.
5. Interrupt Capabilities: If real-time response is needed, look for expanders with interrupt support.
6. Package Size: For space-constrained applications, a smaller package size may be necessary.
7. Cost: Evaluate the cost-effectiveness of the expander in relation to the required functionality and performance.

In summary, I/O expanders are crucial components in electronic systems that require a high density of I/O interfaces. They enable microcontrollers to manage more inputs and outputs than their native capabilities allow, through efficient serial communication and configurable pin functions.
Please refer to the product rule book for details.