
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.
| Image | Part Number / Manufacturer | Description / Specs | MOQ | Datasheet | RFQ | |
|---|---|---|---|---|---|---|
| MPR181EJR2 Manufacturer: NXP USA Inc. Category: Touch Screen Controllers | IC SCREEN CNTRL 16TSSOP | 1 | ||||
| MPR181EJ Manufacturer: NXP USA Inc. Category: Touch Screen Controllers | IC SCREEN CNTRL 16TSSOP | 1 | ||||
| LM8500IMT9B Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 48-TSSOP | 1 | ||||
| LM8300IMT9B Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 48-TSSOP | 1 | ||||
| LM8500IMT9B/NOPB Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 48-TSSOP | 1 | ||||
| LM8300IMT9B/NOPB Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 48-TSSOP | 1 | ||||
| LM8500HLQ9 Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 44-WQFN | 1 | ||||
| LM8300HLQ9 Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 44-WQFN | 1 | ||||
| LM8500IMT9 Manufacturer: National Semiconductor Category: Touch Screen Controllers | IC TSC 4 WIRE RES 48-TSSOP | 1 | ||||
| LM8500HVA9 Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 44-PLCC | 1 | ||||
![]() | LM8300IMT9 Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC SCREEN CNTRL 10BIT 48TSSOP | 1 | |||
| LM8300HVA9 Manufacturer: Texas Instruments Category: Touch Screen Controllers | IC TSC 4 WIRE RES 44-PLCC | 1 | ||||
![]() | MTCH6102-I-SS Manufacturer: Microchip Technology Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 28SSOP | 1 | |||
![]() | MTCH6102-I-MV Manufacturer: Microchip Technology Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 28QFN | 1 | |||
![]() | ADS7846E Manufacturer: Texas Instruments Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 12BIT 16SSOP | 1 | |||
| ADS7843EG4 Manufacturer: Texas Instruments Category: Touch Screen Controllers RoHSREACH | IC TSC 4 WIRE RES 16-SSOP | 1 | ||||
![]() | ADS7846N Manufacturer: Texas Instruments Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 12BIT 16TSSOP | 1 | |||
![]() | BU21026MUV-E2 Manufacturer: Rohm Semiconductor Category: Touch Screen Controllers RoHSREACH | IC SCREEN CON 12BIT VQFN020V4040 | 1 | |||
![]() | TSC2046IPWR Manufacturer: Texas Instruments Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 12BIT 16TSSOP | 1 | |||
![]() | ADS7843E Manufacturer: Texas Instruments Category: Touch Screen Controllers RoHSREACH | IC SCREEN CNTRL 12BIT 16SSOP | 1 |
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.
A PMIC is an integrated circuit that manages voltage regulation, power sequencing, monitoring, and protection to ensure stable system operation.
Correct power sequencing ensures processors, memory, and peripherals start safely and operate reliably without damage or data corruption.
PMICs are widely used in embedded systems, mobile devices, industrial equipment, automotive electronics, and communication hardware.
Replacing an obsolete PMIC may require redesign and system validation because differences in pin layout, sequencing behavior, and protection features can affect stability.