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SI53305-B-GMR

Silicon Labs

SI53305-B-GMR by Silicon Labs

SI53305-B-GMR by Silicon Labs is a Clock Driver with 1 ns Propagation Delay, suitable for industrial applications. It features Differential MUX Input Conditioning, 44 terminals in a Square package style, and operates at temperatures ranging from -40 to 85 °C.

Median Price

$5.564

Lifecycle Status

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7

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1k+

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Arrow

USA . 958 parts In-Stock

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$4.367

100+ parts

$3.450

1k+ parts

$3.189

10k+ parts

$3.116

958

$4.367

$3.450

$3.189

$3.116

DigiKey

USA . 1,000 parts In-Stock

1+ parts

$6.760

100+ parts

$4.386

1k+ parts

$3.959

10k+ parts

$3.876

1,000

$6.760

$4.386

$3.959

$3.876

Mouser Electronics

USA . 4,751 parts In-Stock

1+ parts

$7.830

100+ parts

$4.770

1k+ parts

$3.960

10k+ parts

$3.860

4,751

$7.830

$4.770

$3.960

$3.860

Verical

USA . 1,000 parts In-Stock

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$3.912

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$3.912

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Vyrian

USA . 450 parts In-Stock

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$3.912

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450

$3.912

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Digiode

USA . 31 parts In-Stock

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$4.164

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31

$4.164

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Component Sense

UK . 2,030 parts In-Stock

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2,030

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Corphita

USA . 302 parts In-Stock

1+ parts

$3.945

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302

$3.945

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Component Stockers USA

USA . 21,202 parts In-Stock

1+ parts

$6.760

100+ parts

$5.050

1k+ parts

$3.830

10k+ parts

-

21,202

$6.760

$5.050

$3.830

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QUARKTWIN TECHNOLOGY LTD

USA . 6,600 parts In-Stock

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Authorized Procurement Solutions

USA . 4,500 parts In-Stock

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Overview

Elevate your electronic designs with the Silicon Labs SI53305-B-GMR clock driver, a top-tier product crafted by industry leader Silicon Labs. This cutting-edge device offers unparalleled precision and reliability in clock signal distribution, making it ideal for a wide range of applications in the tech world. From reducing system jitter to optimizing signal integrity, this clock driver is engineered to deliver superior performance and efficiency. Transform your projects with the SI53305-B-GMR and experience the innovation and quality that Silicon Labs is renowned for.

Feature Benefit Bullets

Propagation Delay At Nominal Supply: 1 ns

Low propagation delay ensures fast operation and minimal signal delay in clock distribution.

Surface Mount: YES

Surface mount capability allows for easy and efficient PCB assembly.

Input Conditioning: DIFFERENTIAL MUX

Differential MUX input conditioning enables robust signal processing and compatibility with various input signals.

Package Shape: SQUARE

Square package shape provides efficiency in board space utilization.

Nominal Supply Voltage / Vsup (V): 1.8

Stable supply voltage of 1.8V ensures consistent performance and compatibility with standard voltage levels.

Load Capacitance (CL): 5 pF

Low load capacitance of 5pF minimizes capacitive loading effects and ensures signal integrity.

No. of Terminals: 44

Ample number of terminals provide versatility and connectivity options in system integration.

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

Various package styles offer flexibility in mounting and thermal management for diverse application requirements.

Output Characteristics: 3-STATE

3-STATE output allows for high impedance state, enhancing bus control and signal routing capabilities.

Minimum Operating Temperature: -40 °C

Wide operating temperature range of -40°C ensures reliability in diverse environmental conditions.

Technology: CMOS

CMOS technology offers low power consumption and high noise immunity, ideal for efficient clock management.

Technical Specifications

Clock Drivers & Buffers SI53305-B-GMR attributes and parameters. Explore more Clock Drivers & Buffers devices from Silicon Labs

Specs

Additional Features:

ALSO OPERATES AT 2.5, 3.3V SUPPLY

Family:

53305

Input Conditioning:

DIFFERENTIAL MUX

JESD-30 Code:

S-XQCC-N44

Length:

7 mm

Load Capacitance (CL):

5 pF

Logic IC Type:

No. of Functions:

1

No. of Inverted Outputs:

0

No. of Terminals:

44

No. of True Outputs:

10

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

Output Characteristics:

3-STATE

Package Body Material:

UNSPECIFIED

Package Code:

Package Equivalence Code:

LCC44,.28SQ,20

Package Shape:

Package Style (Meter):

CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

Packing Method:

TR

Maximum Power Supply Current (ICC):

100 mA

Propagation Delay At Nominal Supply:

1 ns

Propagation Delay (tpd):

1 ns

Maximum Same Edge Skew (tskwd):

.12 ns

Maximum Seated Height:

.9 mm

Maximum Supply Voltage (Vsup):

1.89 V

Minimum Supply Voltage (Vsup):

1.71 V

Nominal Supply Voltage / Vsup (V):

1.8

Surface Mount:

YES

Technology:

CMOS

Temperature Grade:

Terminal Form:

Terminal Pitch:

.5 mm

Terminal Position:

QUAD

Width:

7 mm

Trade Compliance

SI53305-B-GMR Logic ICs trade compliance attributes, and parameters.

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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