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EZR32WG330F128R69G-B0

Silicon Labs

EZR32WG330F128R69G-B0 by Silicon Labs

EZR32WG330F128R69G-B0 by Silicon Labs is a 32-bit microcontroller with 64 terminals, operating at max 32 MHz. It features 8-ch ADC, 2-ch DAC, and low power mode suitable for IoT devices, wearables, and industrial automation applications. With Cortex-M4 CPU family and various peripherals like PWM(3) and UART(2), it offers versatile connectivity options.

Median Price

$5.691

Lifecycle Status

Suppliers In-Stock

3

In-Stock Inventory

1k+

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Nova Conductors

Japan . 150 parts In-Stock

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Vyrian

USA . 1,632 parts In-Stock

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Digiode

USA . 360 parts In-Stock

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Continental Prestige Electronics

USA . 2,660 parts In-Stock

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$5.577

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Netroflash

USA . 50 parts In-Stock

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$5.691

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$5.406

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$5.292

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AZTECH Wire

Italy . 797 parts In-Stock

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$15.550

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Aztec Data Supply Inc.

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Semicontronic

India . 677 parts In-Stock

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$21.000

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$20.475

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$20.370

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Ampacity Inc.

Singapore . 755 parts In-Stock

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$34.000

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Corohmni

South Africa . 415 parts In-Stock

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Argo Parts USA

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Overview

Enhance your electronic designs with the EZR32WG330F128R69G-B0 microcontroller from Silicon Labs. As a leading manufacturer in the industry, Silicon Labs guarantees quality and reliability in their products. This microcontroller is versatile and suitable for a wide range of applications. With features like low power mode, multiple peripherals, and high-speed connectivity options, this product offers exceptional value to customers looking for efficient and effective solutions. Upgrade your projects today with the EZR32WG330F128R69G-B0 and experience the benefits firsthand.

Feature Benefit Bullets

Surface Mount: YES

Surface mount capability allows for easy and efficient assembly onto circuit boards, saving time and effort during production.

Maximum Supply Voltage: 3.8 V

Can handle higher supply voltages, providing flexibility in various application scenarios.

On Chip Data RAM Width: 8

Wider data RAM width allows for faster processing and storage of data.

Package Shape: SQUARE

Square package shape can save space and provide a more compact design for the product.

Bit Size: 32

32-bit architecture enables handling of larger data sets and computations with higher precision.

DAC Channels: YES

Digital-to-analog converter channels offer the ability to convert digital signals into analog outputs for various applications.

No. of Terminals: 64

Higher number of terminals allow for increased connectivity options and integration with external components.

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

Offers multiple package styles to suit different mounting and cooling requirements, enhancing versatility.

Minimum Supply Voltage: 1.98 V

Low minimum supply voltage allows for operation in low-power scenarios and extends battery life.

Maximum Operating Temperature: 85 °C

High maximum operating temperature range ensures reliable performance even in elevated temperature environments.

Technical Specifications

Microcontrollers EZR32WG330F128R69G-B0 attributes and parameters. Explore more Microcontrollers devices from Silicon Labs

Specs

ADC Channels:

YES

Address Bus Width:

0

Bit Size:

32

Boundary Scan:

NO

CPU Family:

CORTEX-M4

Maximum Clock Frequency:

32 MHz

DAC Channels:

YES

DMA Channels:

YES

External Data Bus Width:

0

Format:

FIXED POINT

Integrated Cache:

NO

JESD-30 Code:

S-XQCC-N64

Length:

9 mm

Low Power Mode:

YES

Moisture Sensitivity Level (MSL):

3

No. of External Interrupts:

16

No. of I/O Lines:

38

No. of Serial I/Os:

7

No. of Terminals:

64

No. of Timers:

7

On Chip Data RAM Width:

8

On Chip Program ROM Width:

8

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

PWM Channels:

YES

Package Body Material:

UNSPECIFIED

Package Code:

Package Equivalence Code:

LCC64,.35SQ,20

Package Shape:

Package Style (Meter):

CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Peak Reflow Temperature (C):

260

RAM Bytes:

32768

ROM Words:

131072

ROM Programmability:

FLASH

Maximum Seated Height:

.9 mm

Speed:

48 rpm

Maximum Supply Voltage:

3.8 V

Minimum Supply Voltage:

1.98 V

Nominal Supply Voltage:

3 V

Surface Mount:

YES

Technology:

CMOS

Terminal Form:

Terminal Pitch:

.5 mm

Terminal Position:

QUAD

Width:

9 mm

Peripheral IC Type:

Data EEPROM Size:

0

Connectivity:

I2C(2), LEUART(2), UART(2), USART(2), USB

Peripherals:

ANALOG COMPARATOR(2), BOD, DMA, POR, PWM(3), RTC, TIMER(5), WDT

Analog To Digital Convertors:

8-Ch 12-Bit

Digital To Analog Convertors:

2 Ch 12-Bit

Trade Compliance

EZR32WG330F128R69G-B0 Peripheral ICs trade compliance attributes, and parameters.

ECCN

3A991.A.2

ECCN Governance

EAR

HTS

8542.31.00.01

SB

8542.31.00.00

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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