SI823H8BB-IS1R

SI823H8BB-IS1R

The SI823H8BB-IS1R Isolated Gate Driver combines power, flexibility, and safety, making it a standout component in the realm of gate drivers for a wide range of industrial and automotive applications.
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Description

Technical Parameters

The SI823H8BB-IS1R Isolated Gate Driver is a highly versatile and robust component designed to meet the stringent demands of modern power electronics applications. Offering the choice of single or dual isolation in a single package, this gate driver provides up to 5 kVRMS isolation and a peak driver-to-driver differential voltage of 1500 VDC, ensuring secure and reliable operation in isolated environments. With features such as enhanced safety options, PWM and dual driver versions, a powerful 4.0 A sink/source peak output, and exceptional electromagnetic and transient immunity, the SI823H8BB-IS1R stands out as a comprehensive solution for diverse applications. Its programmable dead time, deglitch option for noise filtering, wide temperature range, and compliance with RoHS standards further contribute to its appeal. Additionally, AEC-Q100 qualification and automotive-grade options, accompanied by AIAG-compliant PPAP documentation support, as well as IMDS and CAMDS listing support, make it an ideal choice for automotive applications.

product-1269-1103

Related Products:

Mfr Part

SI823H8BB-AS1

SI823H8BB-AS1R

SI823H8BB-IS1

SI823H8BB-IS1R

Description

DGTL ISO GATE DVR

DGTL ISO GATE DVR

DGTL ISO GATE DVR

DGTL ISO GATE DVR

Stock

30000

30000

30000

30000

Product Status

Active

Active

Active

Active

Technology

Capacitive Coupling

Capacitive Coupling

Capacitive Coupling

Capacitive Coupling

Number of Channels

2

2

2

2

Voltage-Isolation

2500Vrms

2500Vrms

2500Vrms

2500Vrms

Common Mode Transient Immunity (Min)

125kV/us

125kV/us

125kV/us

125kV/us

Propagation Delay tpLH / tpHL (Max)

30ns, 58ns

30ns, 58ns

30ns, 58ns

30ns, 58ns

Current - Output High, Low

4A, 4A

4A, 4A

4A, 4A

4A, 4A

Voltage - Supply

8V ~ 30V

8V ~ 30V

8V ~ 30V

8V ~ 30V

Operating Temperature

-40~C ~ 125~C

-40~C ~ 125~C

-40~C ~ 125~C

-40~C ~ 125~C

Package / Case

SOP16

SOP16

SOP16

SOP16

Package

Tape & Reel (TR)

Tape & Reel (TR)

Tape & Reel (TR)

Tape & Reel (TR)

 

Industrial Applications:

 

• Power delivery systems

• Motor control systems

• Isolated dc-dc power supplies

• Lighting control systems

• Solar and industrial inverters

 

Automotive Applications:

 

• On-board chargers

• Battery management systems

• Charging stations

• Traction inverters

• Hybrid Electric Vehicles

• Battery Electric Vehicles

 

GENERAL DESCRIPTION:

 

The Si823Hx combines two isolated gate drivers into a single package for high power applications. The Si823Hx includes devices with single or dual control inputs with independent or high-side/low-side outputs. These drivers can operate with a 3.0 – 5.5 V input VDD and a maximum drive supply voltage of 30 V.

 

The Si823Hx is ideal for driving power MOSFETs and IGBTs used in a wide variety of switched power and motor control applications. These drivers utilize Skyworks' proprietary silicon isolation technology, supporting up to 5 kVRMS for 1 minute isolation voltage. This technology enables high CMTI (125 kV/µs), lower propagation delays and skew, little variation with temperature and age, and low part-to-part matching.

 

The unique architecture of the output stage features a booster device that provides a higher pull up capability at the Miller plateau region of the load power switch to support faster turn-on times. This driver family also offers some unique features such as over-temperature protection, output Undervoltage Lockout (UVLO) fault detection, dead time programmability and fail-safe drivers with default low in case of loss of input side power. The Si823Hx family offers longer service life and dramatically higher reliability compared to opto-coupled gate drivers.

 

Automotive Grade is available. These products are built using automotive specific flows at all steps in the manufacturing process to ensure the robustness and low defectivity required for automotive applications.

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