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規格
| 屬性 | 價值 |
| EU Ro HS | Not Compliant |
| ECCN (US) | 7A994 |
| Part Status | Active |
| HTS | 8542.39.00.10 |
| Automotive | No |
| PPAP | No |
| Minimum Operating Temperature (°C) | -40 |
| Maximum Operating Temperature (°C) | 85 |
| Mounting Type | Surface Mount |
| Package Height | 1.4 |
| Package Width | 10 |
| Package Length | 10 |
| PCB changed | 44 |
| Package / Case | QFP |
| Supplier Device Package | PQFP |
| Pin Count | 44 |
| Lead Shape | Gull-wing |
| Maximum Supply Current (m A) | 75 |
| Number of Transceivers | 1 |
| Power Supply Type | Single |
| Supplier Temperature Grade | Industrial |
| Function | Line Transceiver |
| Number of Receivers | 2 |
| Receiver Signal Type | Differential |
| Minimum Single Supply Voltage (V) | 3.15 |
| Typical Single Supply Voltage (V) | 3.3 |
| Maximum Single Supply Voltage (V) | 3.45 |
| Data Rate | 100Kbps |
| Number of Transmitters | 1 |
| Transmitter Signal Type | Differential |
概述
Description
The HI-3593PQI is a component from Holt Integrated Circuits, designed for interfacing with ARINC 429, a widespread data transfer protocol used in avionics. It is a three-channel ARINC 429 line receiver IC that enables reliable communication between avionics systems by converting ARINC 429 bus data into a format suitable for microprocessors. The device supports multiple data rates, typically 12.5 kHz or 100 kHz, accommodating various communication needs in aerospace applications.
Key features of the HI-3593PQI include its ability to handle high noise environments through differential signaling and its compliance with ARINC 429 specifications, ensuring compatibility with other equipment using the same protocol. The IC also features a selectable label recognition system, which streamlines data handling by filtering relevant information.
Overall, the HI-3593PQI serves as a critical component in modern avionics systems, facilitating efficient and reliable data transfer between aircraft components, thereby enhancing system performance and safety.
Key features of the HI-3593PQI include its ability to handle high noise environments through differential signaling and its compliance with ARINC 429 specifications, ensuring compatibility with other equipment using the same protocol. The IC also features a selectable label recognition system, which streamlines data handling by filtering relevant information.
Overall, the HI-3593PQI serves as a critical component in modern avionics systems, facilitating efficient and reliable data transfer between aircraft components, thereby enhancing system performance and safety.
Equivalent
The HI-3593PQI is an ARINC 429 interface chip. Equivalent products include:
1. Holt Integrated Circuits HI-3593 series variants.
2. DDC (Data Device Corporation) BU-65863 series.
3. AIM AC429 series.
4. GE Intelligent Platforms (formerly Condor Engineering) CEI-520 series.
These alternatives vary in specific features and configurations, so ensure compatibility with your application requirements.
1. Holt Integrated Circuits HI-3593 series variants.
2. DDC (Data Device Corporation) BU-65863 series.
3. AIM AC429 series.
4. GE Intelligent Platforms (formerly Condor Engineering) CEI-520 series.
These alternatives vary in specific features and configurations, so ensure compatibility with your application requirements.
Features
The HI-3593PQI is a three-channel ARINC 429 line driver IC designed for avionics communication systems. Key features include:
1. Three-Channel Output: Each channel can transmit ARINC 429 data independently, offering flexibility in data communications.
2. Built-in Line Driver: Includes differential line drivers to directly drive ARINC 429 bus lines, simplifying design and reducing the need for external components.
3. Wide Temperature Range: Operates reliably over a broad temperature range, typically suitable for avionics and industrial environments.
4. Compact Package: Available in a small PQFP package, optimizing space on printed circuit boards.
5. Low Power Consumption: Designed to minimize power usage, crucial for energy-efficient systems.
6. Fault Tolerance: Provides features for error detection and handling, enhancing system reliability.
7. Compliance: Meets ARINC 429 standards, ensuring compatibility with existing avionic systems.
This IC is ideal for aerospace applications where robust and reliable data communication is critical.
1. Three-Channel Output: Each channel can transmit ARINC 429 data independently, offering flexibility in data communications.
2. Built-in Line Driver: Includes differential line drivers to directly drive ARINC 429 bus lines, simplifying design and reducing the need for external components.
3. Wide Temperature Range: Operates reliably over a broad temperature range, typically suitable for avionics and industrial environments.
4. Compact Package: Available in a small PQFP package, optimizing space on printed circuit boards.
5. Low Power Consumption: Designed to minimize power usage, crucial for energy-efficient systems.
6. Fault Tolerance: Provides features for error detection and handling, enhancing system reliability.
7. Compliance: Meets ARINC 429 standards, ensuring compatibility with existing avionic systems.
This IC is ideal for aerospace applications where robust and reliable data communication is critical.
Pinout
The HI-3593PQI is a 3.3V ARINC 429 line driver and receiver IC produced by Holt Integrated Circuits. It is designed to interface with ARINC 429 serial buses used in avionics. The HI-3593PQI typically comes in a 20-pin plastic QFN (Quad Flat No-leads) package.
The main functions of the HI-3593PQI include:
1. ARINC 429 Transmitter: It encodes and transmits data onto an ARINC 429 bus.
2. ARINC 429 Receiver: It decodes incoming data from an ARINC 429 bus.
3. Programmable: It can be configured for different data rates and protocols to meet specific avionics requirements.
The IC provides a straightforward interface with a host microcontroller or processor, making it a suitable choice for applications that require interfacing with ARINC 429 data buses in aircraft systems.
The main functions of the HI-3593PQI include:
1. ARINC 429 Transmitter: It encodes and transmits data onto an ARINC 429 bus.
2. ARINC 429 Receiver: It decodes incoming data from an ARINC 429 bus.
3. Programmable: It can be configured for different data rates and protocols to meet specific avionics requirements.
The IC provides a straightforward interface with a host microcontroller or processor, making it a suitable choice for applications that require interfacing with ARINC 429 data buses in aircraft systems.
Manufacturer
The HI-3593PQI is manufactured by Renesas Electronics Corporation, a global leader in the semiconductor industry. Renesas specializes in the design and production of microcontrollers, system-on-chip (SoC) solutions, and a wide range of analog and power devices. The company plays a critical role in various sectors, including automotive, industrial, infrastructure, and consumer electronics, providing essential components that power modern electronic systems. Renesas is known for its advanced technology and comprehensive solutions that enable innovation and efficiency in numerous applications worldwide.
Application
The HI-3593PQI is a 3.3V ARINC 429 line driver/receiver, typically used in avionics for communication between aircraft systems. Its primary application areas include commercial and military aircraft for data transfer between navigation, control, and sensor systems. It facilitates reliable high-speed data communication in environments with stringent requirements for electromagnetic interference and signal integrity. Additionally, it is used in ground support and test equipment where ARINC 429 protocol is necessary. The device is valued for its compact design, low power consumption, and compliance with aerospace standards, making it suitable for integration in modern avionics systems.
Package
The HI-3593PQI is a line driver/receiver IC designed for MIL-STD-1553 applications. It comes in a 28-lead PLCC (Plastic Leaded Chip Carrier) package. This type of package is commonly used for integrated circuits due to its compact size and ability to accommodate a relatively high pin count.