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SI5351A-B09936-GMR

Silicon Labs

SI5351A-B09936-GMR by Silicon Labs

SI5351A-B09936-GMR by Silicon Labs is a clock generator with 200 MHz output frequency, 20 terminals, and 1.71-1.89 V supply voltage range. It is used in processors for various applications due to its compact square package and CMOS technology.

Median Price

$2.380

Lifecycle Status

Suppliers In-Stock

9

In-Stock Inventory

1k+

Distributors (Authorized)

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Adafruit Industries

USA . 1,000 parts In-Stock

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$32.941

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$29.976

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$27.012

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$32.941

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Flip Electronics (Authorized)

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Arrow

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$2.380

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Verical

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Chip1Stop

Japan . 12,500 parts In-Stock

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$2.160

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Vyrian

USA . 334 parts In-Stock

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Digiode

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Nova Conductors

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Ampacity Inc.

Singapore . 9,873 parts In-Stock

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$1.840

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Corphita

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Advanced Electronics

New Zealand . 1,000 parts In-Stock

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$27.012

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$32.941

$29.976

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Corohmni

South Africa . 4,897 parts In-Stock

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Component Stockers USA

USA . 31,477 parts In-Stock

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QUARKTWIN TECHNOLOGY LTD

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Microchip USA

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Continental Prestige Electronics

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Argo Parts USA

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Aranea Global

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Overview

Unlock precision timing with the Silicon Labs SI5351A-B09936-GMR clock generator. Manufactured by industry leader Silicon Labs, this surface mount device offers unparalleled quality and reliability. Ideal for a wide range of applications, this clock generator provides precise timing signals up to 200 MHz, making it perfect for processors and other time-sensitive devices. With a low supply voltage, compact package style, and easy installation, this product delivers exceptional value and performance to customers seeking accuracy and efficiency in their designs.

Feature Benefit Bullets

Surface Mount: YES

Surface mount packaging makes it easy to mount this clock generator on a printed circuit board, saving space and allowing for automated assembly processes.

Maximum Supply Voltage: 1.89 V

The high maximum supply voltage ensures reliable operation within specified limits, reducing the risk of damage to the clock generator.

Package Shape: SQUARE

The square package shape provides a compact form factor, making it suitable for applications where space is limited.

Maximum Output Clock Frequency: 200 MHz

With a high maximum output clock frequency of 200 MHz, this clock generator is suitable for applications that require precise timing and fast data processing.

No. of Terminals: 20

The 20 terminals provide multiple connection points for interfacing with other components, offering flexibility in circuit design.

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

The package style options offer versatility in mounting and heat dissipation, allowing for optimal performance in various operating conditions.

Minimum Supply Voltage: 1.71 V

The low minimum supply voltage ensures compatibility with a range of power sources, providing flexibility in system design.

Maximum Operating Temperature: 85 °C

The high maximum operating temperature tolerance allows for reliable performance in temperature-varying environments, enhancing the product's durability.

Minimum Operating Temperature: -40 °C

The low minimum operating temperature ensures that the clock generator can operate effectively in cold environments, making it suitable for a wide range of applications.

Terminal Position: QUAD

The quad terminal position facilitates easy connection to external components, simplifying the installation process.

Maximum Seated Height: 0.9 mm

The low maximum seated height enables a compact overall profile, making this clock generator suitable for space-constrained designs.

Width: 4 mm

The 4 mm width contributes to the compact form factor of the clock generator, allowing for efficient use of board space.

Maximum Time At Peak Reflow Temperature (s): 40

The short maximum time at peak reflow temperature minimizes the risk of thermal damage during the assembly process, ensuring the reliability of the product.

Peak Reflow Temperature °C: 260

The high peak reflow temperature tolerance enables robust soldering processes, ensuring secure connections and long-term functionality.

Length: 4 mm

The 4 mm length contributes to the overall compact size of the clock generator, supporting space-efficient designs.

Peripheral IC Type: CLOCK GENERATOR, PROCESSOR SPECIFIC

Designed specifically for clock generation in processor applications, this clock generator offers optimized performance for such tasks.

Technology: CMOS

The CMOS technology used in this clock generator provides low power consumption and reliable operation, making it suitable for battery-powered devices.

Terminal Form: NO LEAD

The no-lead terminal form simplifies the soldering process and reduces the risk of solder joints cracking, ensuring long-term reliability.

Maximum Supply Current: 40 mA

The low maximum supply current consumption reduces power requirements, making this clock generator energy-efficient and cost-effective to operate.

Nominal Supply Voltage: 1.8 V

The 1.8 V nominal supply voltage provides a standard operating voltage level, ensuring compatibility with common power sources.

Terminal Pitch: 0.5 mm

The small terminal pitch of 0.5 mm allows for densely packed connections on the clock generator, enabling high circuit density and compact designs.

Moisture Sensitivity Level (MSL): 2

The MSL 2 rating indicates that this clock generator has a moderate level of moisture sensitivity, making it suitable for various environmental conditions.

Nominal Primary Clock/Crystal Frequency: 27 MHz

The 27 MHz nominal primary clock/crystal frequency provides a stable timing reference for the clock generator, ensuring accurate and reliable clock generation.

Technical Specifications

Clock Generators SI5351A-B09936-GMR attributes and parameters. Explore more Clock Generators devices from Silicon Labs

Specs

Additional Features:

ALSO OPERATE AT 2.5V AND 3.3V SUPPLY

JESD-30 Code:

S-XQCC-N20

Length:

4 mm

Moisture Sensitivity Level (MSL):

2

No. of Terminals:

20

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Maximum Output Clock Frequency:

200 MHz

Package Body Material:

UNSPECIFIED

Package Code:

Package Equivalence Code:

LCC20,.16SQ,20

Package Shape:

Package Style (Meter):

CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Peak Reflow Temperature (C):

260

Nominal Primary Clock/Crystal Frequency:

27 MHz

Maximum Seated Height:

.9 mm

Maximum Supply Current:

40 mA

Maximum Supply Voltage:

1.89 V

Minimum Supply Voltage:

1.71 V

Nominal Supply Voltage:

1.8 V

Surface Mount:

YES

Technology:

CMOS

Terminal Form:

Terminal Pitch:

.5 mm

Terminal Position:

QUAD

Maximum Time At Peak Reflow Temperature (s):

40

Width:

4 mm

Trade Compliance

SI5351A-B09936-GMR Peripheral ICs trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

HTS

8542.39.00.01

SB

8542.39.00.00

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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