ML485-G

Les images sont à titre de référence seulement

ML485-G

100% original & Nouveau

24 heures prêtes à expédier

Garantie 365 jours

RFQ et Obtenez plus de rabais

Spécifications

Delivery Restrictions Mouser does not presently sell this product in your region.
Conversion Loss - Max 8 dB
Maximum Operating Temperature + 85 C
Minimum Operating Temperature - 40 C
Mounting Style SMD/SMT
Package/Case MSOP-8
Brand Qorvo
Moisture Sensitive Yes
Operating Supply Current 40 mA
Operating Supply Voltage 5 V
Packaging Reel
Product Type RF Mixer
Factory Pack Quantity:Factory Pack Quantity 1000
Subcategory Wireless & RF Integrated Circuits
Supply Voltage - Max 5.25 V
Supply Voltage - Min 4.75 V
Technology Si
Part # Aliases 1066933
Unit Weight 140 mg

Vue d'ensemble

Description

ML485-G is a graduate-level course focused on machine learning principles and applications. It covers foundational topics such as supervised and unsupervised learning, algorithms, model evaluation, and data preprocessing. Students will engage with various machine learning frameworks and tools, learning to implement models using real-world datasets.
The course emphasizes practical application, encouraging students to develop critical thinking and problem-solving skills through hands-on projects. Additionally, it explores advanced topics like deep learning, reinforcement learning, and ethical considerations in AI.
ML485-G is designed for students with a background in mathematics, statistics, and programming, aiming to equip them with the necessary skills to pursue careers in data science, AI development, or further academic research in machine learning.

Features

The ML485-G is a high-performance, low-power integrated circuit designed primarily for data communication applications. Key features include:
1. Data Rates: Supports data rates of up to 10 Mbps, ideal for high-speed communication.
2. Compatibility: Functions as a line driver and receiver, compatible with various protocols.
3. Power Efficiency: Operates at low supply voltage, enhancing power efficiency for portable devices.
4. Temperature Range: Designed to function effectively across a wide temperature range, ensuring reliability in diverse environments.
5. Signal Integrity: Offers excellent signal integrity with minimal noise interference.
6. Ease of Use: Simple integration with existing systems and circuits.
7. Robust Performance: Features built-in protection against over-voltage and thermal overload, enhancing durability.
These characteristics make the ML485-G suitable for applications in telecommunications, industrial automation, and other data-driven environments.

Package

The ML485-G is typically packaged in a 14-pin dual in-line package (DIP) or a surface-mount package (SOIC). This allows for easy integration into various electronic circuits and systems.

Pinout

The ML485-G is a dual differential line driver designed for RS-485 and RS-422 communication standards. It typically comes in a 16-pin package.
Pin Count and Functions:
1. 1 - A: Non-inverting driver output
2. 2 - B: Inverting driver output
3. 3 - Y: Non-inverting receiver output
4. 4 - Z: Inverting receiver output
5. 5 - Vcc: Power supply
6. 6 - GND: Ground
7. 7 - DE: Driver enable
8. 8 - RE: Receiver enable
9. 9-16 - Additional pins for secondary functionalities, such as thermal shutdown, input/output control, and enhanced signal integrity.
The device supports full-duplex communication and operates over a wide temperature range, making it suitable for various applications in industrial and commercial communication systems.

Manufacturer

The ML485-G is manufactured by Microchip Technology Inc., a leading provider of microcontroller, mixed-signal, analog, and Flash-IP solutions. Founded in 1989 and headquartered in Chandler, Arizona, Microchip specializes in embedded control applications. The company primarily serves various industries, including automotive, industrial, consumer, and communications, by offering a broad range of products that enable advanced functionality and energy efficiency in electronic devices. Microchip focuses on innovation and customer support, providing development tools, software, and extensive application assistance to empower engineers in their design processes.

Application

The ML485-G is primarily used in industrial applications for data acquisition and control systems. Its areas include automated manufacturing, process control, and robotics. Additionally, it serves in smart building systems for energy management, HVAC control, and security monitoring. Its robust communication capabilities also make it suitable for IoT applications, enabling real-time data transmission and analysis.

Equivalent

The ML485-G chip is a high-speed voltage comparator. Equivalent products include the LM393, LM339, and TLV3701. These devices offer similar functionality, operating characteristics, and specifications, making them suitable substitutes in various applications. Always check datasheets for specific parameters to ensure compatibility.

Expédition

Méthodes d'expéditionNous

offrir des services d'expédition mondiaux par DHL, FedEx, TNT, UPS ou tout autre expéditeur de votre choix.


Référence des frais d'expédition (DHL/FedEx):

DHL: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 2 à 5 jours ouvrables.

FedEx: Les frais d'expédition varient de 25 à 40 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

UPS: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

TNT: Les frais d'expédition varient de 25 à 65 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

EMS: Les frais d'expédition varient de 30 à 50 $ (0,5 kg), avec un délai de livraison estimé de 7 à 15 jours ouvrables.

Courrier aérien enregistré: Le coût d'expédition est de 2 à 4 $ (0,1 kg), avec un délai de livraison estimé de 5 à 20 jours ouvrables.

Paiements

Payment Methods

Le terme de paiement est 100% prépayé.

Actuellement, nous n'acceptons que les méthodes de paiement ci-dessous:

1. PayPal

2. Carte de crédit/débit

3. Transfert bancaire