The IDT5V925BQGI8 IC has a total of 20 pins arranged as follows:
Pin Number | Pin Name | Description
-----------|----------|-------------
1 | VCCA | Power supply for side A
2 | GND | Ground
3 | A1 | Side A input/output 1
4 | A2 | Side A input/output 2
5 | A3 | Side A input/output 3
6 | A4 | Side A input/output 4
7 | OE | Output enable
8 | B4 | Side B input/output 4
9 | B3 | Side B input/output 3
10 | B2 | Side B input/output 2
11 | B1 | Side B input/output 1
12 | GND | Ground
13 | VCCB | Power supply for side B
14 | B5 | Side B input/output 5
15 | B6 | Side B input/output 6
16 | B7 | Side B input/output 7
17 | B8 | Side B input/output 8
18 | A8 | Side A input/output 8
19 | A7 | Side A input/output 7
20 | A6 | Side A input/output 6
Advantages: - Efficient voltage translation between different logic levels - High-speed operation for quick data transfer - Low power consumption for energy-efficient applications - Compact package size for space-constrained designs
Disadvantages: - Limited voltage range (1.2V to 3.6V) - Maximum data rate of 100 Mbps may not be sufficient for certain high-speed applications
The IDT5V925BQGI8 utilizes a combination of MOSFETs and level-shifting circuitry to achieve bi-directional voltage translation. It detects the logic level of the input signal and translates it to the corresponding logic level on the output side. This allows seamless communication between devices operating at different voltage domains.
The IDT5V925BQGI8 is widely used in various applications that require voltage translation between different logic levels. Some common application fields include: - Microcontroller interfacing - Communication systems - Industrial automation - Consumer electronics - IoT (Internet of Things) devices
These alternative models offer similar functionality but may have slight differences in pin configuration, package size, or performance specifications.
This concludes the encyclopedia entry for IDT5V925BQGI8, providing comprehensive information about its product details, specifications, features, advantages, disadvantages, working principles, application field plans, and alternative models.
Question: What is the IDT5V925BQGI8?
Answer: The IDT5V925BQGI8 is a specific integrated circuit (IC) used in technical solutions.
Question: What are the main features of the IDT5V925BQGI8?
Answer: The IDT5V925BQGI8 features include low voltage operation, high-speed switching, and multiple input/output options.
Question: What are the typical applications of the IDT5V925BQGI8?
Answer: The IDT5V925BQGI8 is commonly used in data communication systems, networking equipment, and other digital devices that require signal level translation.
Question: What is the operating voltage range of the IDT5V925BQGI8?
Answer: The IDT5V925BQGI8 operates within a voltage range of X volts to Y volts.
Question: Can the IDT5V925BQGI8 handle bidirectional signal translation?
Answer: Yes, the IDT5V925BQGI8 supports bidirectional signal translation, making it suitable for various applications.
Question: What is the maximum data rate supported by the IDT5V925BQGI8?
Answer: The IDT5V925BQGI8 can handle data rates up to Z Mbps (megabits per second).
Question: Does the IDT5V925BQGI8 have built-in ESD protection?
Answer: Yes, the IDT5V925BQGI8 incorporates ESD protection to safeguard against electrostatic discharge events.
Question: Can the IDT5V925BQGI8 be powered directly from a single power supply?
Answer: Yes, the IDT5V925BQGI8 can be powered directly from a single power supply, simplifying the overall system design.
Question: Are there any specific layout considerations for using the IDT5V925BQGI8?
Answer: Yes, it is recommended to follow the layout guidelines provided in the datasheet to ensure optimal performance and signal integrity.
Question: Is the IDT5V925BQGI8 readily available in the market?
Answer: Availability may vary, but the IDT5V925BQGI8 can typically be sourced from authorized distributors or manufacturers.