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CP2102N-A01-GQFN20

Silicon Labs

CP2102N-A01-GQFN20 by Silicon Labs

Silicon Labs' CP2102N-A01-GQFN20 is a bus controller with 20 terminals, operating voltage of 3-3.6V, and data transfer rate up to 1.5 MBps. It is used in industrial applications requiring UART and VBUS compatibility, with drive interface standards RS232 and RS485.

Median Price

$1.151

Lifecycle Status

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Nova Conductors

Japan . 83 parts In-Stock

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Digiode

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Inventory MP

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Bristol Electronics

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Continental Prestige Electronics

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Netroflash

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Argo Parts USA

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Semicontronic

India . 818 parts In-Stock

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AZTECH Wire

Italy . 718 parts In-Stock

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Corohmni

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Ampacity Inc.

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Advanced Electronics

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Aztec Data Supply Inc.

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Lucentia Tech

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Corphita

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Authorized Procurement Solutions

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Microchip USA

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Overview

Enhance your electronic designs with the high-quality CP2102N-A01-GQFN20 by Silicon Labs, a leading manufacturer in the industry. As a bus controller, this innovative product offers seamless communication between devices, making it ideal for a wide range of applications. With its surface mount design and advanced technology, this chip carrier provides reliable performance and flexibility. Experience the benefits of fast data transfer rates, industrial-grade temperature tolerance, and compatibility with UART and VBUS systems. Trust Silicon Labs to deliver cutting-edge solutions that elevate your projects to new heights.

Feature Benefit Bullets

Surface Mount: YES

Ease of installation on PCBs, saves space and reduces assembly time.

Maximum Supply Voltage: 3.6 V

Supports a wide range of supply voltage, making it versatile for different applications.

Package Shape: SQUARE

Compact shape allows for efficient use of PCB space and design flexibility.

No. of Terminals: 20

Sufficient number of terminals for connecting to various peripherals and components.

Package Style (Meter): CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Variety of package styles for compatibility with different PCB designs and heat dissipation needs.

Minimum Supply Voltage: 3 V

Low minimum supply voltage requirement for energy-efficient operation.

Maximum Operating Temperature: 85 °C

Can operate in a wide temperature range, suitable for industrial environments.

Maximum Data Transfer Rate: 1.5 MBps

High data transfer rate for fast and efficient communication between devices.

Minimum Operating Temperature: -40 °C

Operates in extreme cold temperatures, making it suitable for outdoor or harsh environments.

Terminal Position: QUAD

Quad terminal position for stable and secure connections with other components.

Maximum Seated Height: 0.8 mm

Low profile height for compact and slim device design.

Width: 3 mm

Compact width for space-saving installation on PCB.

Length: 3 mm

Compact length for efficient use of PCB space.

Temperature Grade: INDUSTRIAL

Industrial-grade temperature tolerance for reliable operation in harsh conditions.

Peripheral IC Type: BUS CONTROLLER, UNIVERSAL SERIAL BUS

Supports universal serial bus communication protocol for versatile compatibility with various devices.

Technology: CMOS

CMOS technology for low power consumption and high performance.

Terminal Form: NO LEAD

Lead-free terminal form for environmentally friendly manufacturing and disposal.

Maximum Supply Current: 100 mA

Low supply current requirement for energy-efficient operation.

Nominal Supply Voltage: 3.3 V

Stable nominal supply voltage for consistent device performance.

Bus Compatibility: UART; VBUS

Compatible with UART and VBUS bus systems for seamless integration into existing setups.

Terminal Pitch: 0.5 mm

Fine terminal pitch for high-density installation on PCBs.

Drive Interface Standard: RS232; RS485

Supports RS232 and RS485 drive interfaces for versatile communication options.

Technical Specifications

Bus Controllers CP2102N-A01-GQFN20 attributes and parameters. Explore more Bus Controllers devices from Silicon Labs

Specs

Bus Compatibility:

UART; VBUS

Maximum Data Transfer Rate:

1.5 MBps

Drive Interface Standard:

RS232; RS485

JESD-30 Code:

S-XQCC-N32

Length:

3 mm

No. of Terminals:

20

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Package Body Material:

UNSPECIFIED

Package Code:

Package Equivalence Code:

LCC20,.12SQ,20

Package Shape:

Package Style (Meter):

CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Maximum Seated Height:

.8 mm

Maximum Supply Current:

100 mA

Maximum Supply Voltage:

3.6 V

Minimum Supply Voltage:

3 V

Nominal Supply Voltage:

3.3 V

Surface Mount:

YES

Technology:

CMOS

Temperature Grade:

Terminal Form:

Terminal Pitch:

.5 mm

Terminal Position:

QUAD

Width:

3 mm

Trade Compliance

CP2102N-A01-GQFN20 Peripheral ICs trade compliance attributes, and parameters.

HTS

8542.31.00.01

SB

8542.31.00.00

PCN

Manufacturer Highlights

Silicon Labs

Silicon Laboratories, Inc. (Silicon Labs) is a fabless global technology company that designs and manufactures semiconductors, other silicon devices and software, which it sells to electronics design engineers and manufacturers in Internet of Things (IoT) infrastructure worldwide. It is headquartered in Austin, Texas, United States. The company focuses on microcontrollers (MCUs) and wireless system on chips (SoCs) and modules. The company also produces software stacks including firmware libraries and protocol-based software, and a free software development platform called Simplicity Studio. Silicon Labs was founded in 1996 and released its first product, an updated DAA design that enabled manufacturers to reduce the size and cost of a modem, two years later. During its first three years, the company focused on RF and CMOS integration, and developed the world's first CMOS RF synthesizer for mobile phones which was released in 1999. Following the appointment of Tyson Tuttle as the CEO in 2012, Silicon Labs has increasingly focused on developing technologies for the IoT market, which in 2019 accounted for more than 50 percent of the company's revenue, but in 2020 had increased to about 58 percent. In 1998, Silicon Labs released its first product, an updated Direct Access Arrangement (DAA) design that enabled manufacturers to reduce the size and cost of a modem.

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