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/Categories/Buffer Amps

Buffer Amps

3176 products

Buffer Amps

In many electronic systems, stable operation depends on how power is generated, distributed, and sequenced across different circuit blocks. If power rails turn on in the wrong order or voltage levels are unstable, processors may fail to boot, memory can lose data, and sensitive components may get damaged. Managing this using multiple discrete regulators and control circuits increases design complexity and failure risk. A Power Management IC helps solve this by controlling multiple power functions inside a single device.

ImagePart Number / ManufacturerDescription / SpecsMOQDatasheetRFQ
ISL28107FUZ-T13S2568
ISL28107FUZ-T13S2568
Manufacturer: Renesas Electronics America Inc.
Category: Buffer Amps
IC OP AMP 8MSOP
1
MP8110DK-LF
MP8110DK-LF
Manufacturer: Monolithic Power Systems Inc.
Category: Buffer Amps
IC CURR SENSE 1 CIRCUIT 8MSOP
1
MP8103DK-LF
MP8103DK-LF
Manufacturer: Monolithic Power Systems Inc.
Category: Buffer Amps
IC OPAMP GP 2 CIRCUIT 8MSOP
1
LM324F-E2
LM324F-E2
Manufacturer: Rohm Semiconductor
Category: Buffer Amps
IC OP AMP GRND SENSE SOP14
1
LM358F-E2
LM358F-E2
Manufacturer: Rohm Semiconductor
Category: Buffer Amps
IC COMP 2CH GRND SENSE SOP8
1
LMC660CMX/ELLD734
LMC660CMX/ELLD734
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP GP 4 CIRCUIT 14SOIC
1
LMV321IST5
LMV321IST5
Manufacturer: MaxLinear, Inc.
Category: Buffer Amps
IC OPAMP GP 1MHZ RRO SOT23-5
1
LMH6723 MDC
LMH6723 MDC
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP CFA 1 CIRCUIT DIESALE
1
LMH6629 MDC
LMH6629 MDC
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP VFB 1 CIRCUIT DIESALE
1
LMV794 MDA
LMV794 MDA
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP GP 2 CIRCUIT DIESALE
1
LMH6646 MDC
LMH6646 MDC
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP VFB 2 CIRCUIT DIESALE
1
LMH6622 MDC
LMH6622 MDC
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP VFB 2 CIRCUIT DIESALE
1
LMP2234A MDC
LMP2234A MDC
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP GP 4 CIRCUIT DIESALE
1
LM4250C MDA
LM4250C MDA
Manufacturer: Texas Instruments
Category: Buffer Amps
IC OPAMP GP 1 CIRCUIT DIESALE
1
LM2904DR2GH
LM2904DR2GH
Manufacturer: ON Semiconductor
Category: Buffer Amps
IC OPAMP GP 2 CIRCUIT 8SOIC
1
MP118FDA
MP118FDA
Manufacturer: Apex Microtechnology
Category: Buffer Amps
IC OPAMP GP 1 CIRCUIT 34FD
1
LM358SNG
LM358SNG
Manufacturer: ON Semiconductor
Category: Buffer Amps
IC OPAMP GP 2 CIRCUIT 8DIP
1
LM2904SNG
LM2904SNG
Manufacturer: ON Semiconductor
Category: Buffer Amps
IC OPAMP GP 2 CIRCUIT 8DIP
1
LM2902SNG
LM2902SNG
Manufacturer: ON Semiconductor
Category: Buffer Amps
IC OPAMP GP 4 CIRCUIT 14DIP
1
LM324SNG
LM324SNG
Manufacturer: ON Semiconductor
Category: Buffer Amps
IC OPAMP GP 4 CIRCUIT 14DIP
1
Showing 1-20 of 3176 results

Applications of Power Management ICs

  • Processor and microcontroller-based embedded systems
  • Mobile and battery-powered electronic devices
  • Industrial automation and control electronics
  • Communication and networking equipment
  • Automotive electronic control modules
  • Medical electronic monitoring and control devices
  • Power-sensitive embedded monitoring systems

Key Technical Specifications

  • Input voltage range and output voltage regulation
  • Number of regulated output rails
  • Power sequencing and startup timing control
  • Protection features such as over-voltage and over-current
  • Communication interfaces such as I2C or SPI
  • Power efficiency and thermal performance
  • Package type and thermal characteristics

Types of Power Management ICs

  • Multi-rail power management ICs
  • Battery management integrated PMIC devices
  • Processor-specific PMIC controllers
  • Industrial-grade power management ICs
  • Automotive-qualified PMIC devices

Lifecycle and Replacement Considerations

Many systems in operation rely on PMICs selected during original product design. These devices are often tightly linked to processor requirements, board power architecture, and system startup behavior. When a PMIC reaches end-of-life, replacing it can be difficult. Differences in pin layout, sequencing behavior, voltage accuracy, or protection response can affect system stability.

This is common in industrial, automotive, and medical systems where equipment remains active for many years. Maintenance teams often require the same PMIC to avoid redesign or system requalification. Delays in sourcing compatible PMICs can increase downtime and service cost.

Maketronics supports global engineering and procurement teams with reliable sourcing of both active and obsolete Power Management ICs.

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FAQs

What is a Power Management IC (PMIC)?

A PMIC is an integrated circuit that manages voltage regulation, power sequencing, monitoring, and protection to ensure stable system operation.

Why is power sequencing important?

Correct power sequencing ensures processors, memory, and peripherals start safely and operate reliably without damage or data corruption.

Where are PMICs commonly used?

PMICs are widely used in embedded systems, mobile devices, industrial equipment, automotive electronics, and communication hardware.

What happens if a PMIC becomes obsolete?

Replacing an obsolete PMIC may require redesign and system validation because differences in pin layout, sequencing behavior, and protection features can affect stability.