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PCA9615DPZ
+NomenclatureIC REDRIVER I2C 2CH 10TSSOP
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FabricantNXP USA Inc.
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Pièce fabricant #PCA9615DPZ
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Fiche technique PCA9615DPZ DataSheet
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En stock7482
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Spécifications
| Attribut | Valeur |
| Part Status | Active |
| Type | Buffer, ReDriver |
| Applications | I2C |
| Input | 2-Wire Bus |
| Output | 2-Wire Bus |
| Data Rate (Max) | 1MHz |
| Number of Channels | 2 |
| Delay Time | 150ns |
| Capacitance - Input | 6 pF |
| Voltage - Supply | 2.3V ~ 3V, 3V ~ 5.5V |
| Current - Supply | 16µA |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | 10-TFSOP, 10-MSOP (0.118", 3.00mm Width) |
| Supplier Device Package | 10-TSSOP |
Présentation
Description
Key features include two sets of I²C SDA and SCL lines, built-in pull-up resistors, and the ability to support multiple devices on the bus. The PCA9615DPZ can also handle clock stretching, allowing slower slaves to manage communication without data loss. Its design minimizes capacitance loading on the bus, which is essential for maintaining signal quality over longer distances.
The PCA9615DPZ is commonly used in applications such as sensor networks, industrial control systems, and remote device interfacing, making it a valuable component in modern electronic designs.
Equivalent
1. TXS0102 - Dual voltage level shifter.
2. TCA9517 - I2C bus buffer with level shifting.
3. PCA9306 - Dual bidirectional I2C level translator.
4. LVC4245A - Dual 4-bit bus transceiver with level shifting.
Always verify compatibility with specific application requirements.
Features
1. Dual-Channel Buffer: Supports two I²C channels, allowing for multiple devices to be interfaced.
2. Voltage Range: Operates with a supply voltage from 1.8V to 5.5V, facilitating compatibility with various logic levels.
3. Bus Extending: Enables I²C bus extension over longer distances with minimal signal degradation.
4. Open-Drain Outputs: Features open-drain output for flexibility in connecting multiple devices.
5. Fast Mode Support: Supports standard and fast I²C modes (up to 1 MHz).
6. Active Pull-Up: Incorporates active pull-up, enhancing rise times and signal integrity.
7. Low Power Consumption: Operates with low power, making it suitable for battery-operated devices.
8. Fault Isolation: Provides fault isolation capabilities to protect the main I²C bus from potential bus faults.
These features make the PCA9615DPZ ideal for applications requiring reliable communication between I²C devices over extended distances.
Pinout
### Pin Functions:
1. VREF1 (Pin 1): Reference voltage for the high side (V_H).
2. VREF2 (Pin 2): Reference voltage for the low side (V_L).
3. A1 (Pin 3): I²C data line (SDA) for the high side.
4. A2 (Pin 4): I²C clock line (SCL) for the high side.
5. B1 (Pin 5): I²C data line (SDA) for the low side.
6. B2 (Pin 6): I²C clock line (SCL) for the low side.
7. GND (Pin 7): Ground.
8. V_H (Pin 8): High voltage supply (up to 5.5V).
The PCA9615DPZ facilitates communication between devices operating at different voltage levels, enhancing compatibility in mixed-voltage environments.
Manufacturer
The PCA9615DPZ is a dual bidirectional I2C bus and SMBus voltage-level translator. It enables communication between devices that operate at different voltage levels, making it essential for multi-voltage systems and applications. NXP's expertise in semiconductor technology positions it as a key player in the electronics industry, delivering innovative solutions that cater to modern connectivity and processing demands.
Application
1. Embedded Systems: Enhancing communication between microcontrollers and peripherals.
2. Consumer Electronics: Improving data transfer in devices like TVs, cameras, and audio equipment.
3. Industrial Automation: Facilitating reliable communication in sensors and controllers.
4. Telecommunication Equipment: Supporting data transfer in networking devices.
5. Automotive Systems: Ensuring robust communication in various vehicle control units.
6. Medical Devices: Assisting in data acquisition and monitoring systems.
These applications benefit from the PCA9615DPZ's ability to extend I²C bus distances and improve signal integrity.