Integrated Circuits

Supercharge your designs! Integrated circuits galore await. From industry leaders like Texas Instruments, Microchip, and Analog Devices, we offer a massive selection to power your project. Microcontrollers, logic gates, memory chips – find the perfect IC for any need, all conveniently located in one place. Stop the chip chase and start building – it’s all here!

Showing 81–100 of 861 results

Select Product Manufacturer Description Availability Datasheet Web Price Quantity
VND7NV04TR-E

VND7NV04TR-E

Category: Integrated CircuitsPower Distribution Switch, Power ICsSTMicroelectronics
STMicroelectronics The VNN7NV04, VNS7NV04, VND7NV04 VND7NV04-1, are monolithic devices designed in STMicroelectronics VIPower M0-3 Technology, intended for replacement of standard Power MOSFETs from DC up to 50 kHz applications. Built in thermal shutdown, linear current limitation and overvoltage clamp protect the chip in harsh environments.Fault feedback can be detected by monitoring the voltage at the input pin.

Packaging: BLK
Supplier Type: Authorized Distributor
5,103
available
QtyPrice
14.18376
103.54144
253.31576
503.09008
1002.88176

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PCA9557PWR

PCA9557PWR

Category: GPIO Expander, Integrated CircuitsInterface ICsTexas Instruments
Texas Instruments I2C/SMBus Interface 100kHz/400kHz 5.5V 16-Pin TSSOP T/R

Packaging: N/A
Supplier Type: Authorized Distributor
1,891
available
QtyPrice
12.57656
102.1763
252.14956
1001.8179
2501.69498
5001.46776
1,0001.1263

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PCA9557PW,118

PCA9557PW,118

Category: GPIO Expander, Integrated CircuitsInterface ICsNXP
NXP I2C/SMBus Interface 100kHz/400kHz 5.5V 16-Pin TSSOP T/R

Packaging: N/A
Supplier Type: Authorized Distributor
137
available
QtyPrice
11.86018
101.70394
251.66138
1001.21954

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PCA9557PW118

PCA9557PW118

Category: I/O Expander, Integrated CircuitsInterface ICsNXP
NXP The PCA9557 is a silicon CMOS circuit which provides parallel input/output expansion for SMBus and I²C-bus applications. The PCA9557 consists of an 8-bit input port register, 8-bit output port register, and an I²C-bus/SMBus interface. It has low current consumption and a high-impedance open-drain output pin, IO0. The system master can enable the PCA9557's I/O as either input or output by writing to the configuration register. The system master can also invert the PCA9557 inputs by writing to the active HIGH polarity inversion register. Finally, the system master can reset the PCA9557 in the event of a time-out by asserting a LOW in the reset input. The power-on reset puts the registers in their default state and initializes the I²C-bus/SMBus state machine. The RESET pin causes the same reset/initialization to occur without de-powering the part.

Packaging: TAP
Supplier Type: Authorized Distributor
72
available
QtyPrice
11.70828

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74HCT4851BQ-Q100,1

74HCT4851BQ-Q100,1

Category: CMOS Logic IC, Integrated CircuitsLogic ICsNexperia
Nexperia Analog Multiplexer Single 8:1 Automotive AEC-Q100 16-Pin DHVQFN EP T/R

Packaging: N/A
Supplier Type: Authorized Distributor
10
available
QtyPrice
10.83454
100.79632
250.78834
1000.721
2500.71372
5000.66752
1,0000.59108
3,0000.5663
6,0000.54348
9,0000.53466
15,0000.52528
24,0000.5166

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TJA1040T/CM,118

TJA1040T/CM,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 1MBd Standby 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
127,500
available
QtyPrice
2,5001.54518
5,0001.50402

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MMPF0100NPAEP

MMPF0100NPAEP

Category: Integrated CircuitsPMIC, Power ICsNXP
NXP PF0100: 4.5 V 14 Channel Configurable Power Management Integrated Circuit-QFN-56

Packaging: TRAY
Supplier Type: Authorized Distributor
260
available
QtyPrice
2608.4196

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MMPF0100NPAEPR2

MMPF0100NPAEPR2

Category: Integrated CircuitsPMIC, Power ICsNXP
NXP PMIC Solution 2.8V to 4.5V 56-Pin HVQFN EP T/R

Packaging: N/A
Supplier Type: Authorized Distributor
4,000
available
QtyPrice
320.9839

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UJA1078ATW/5V0/WDJ

UJA1078ATW/5V0/WDJ

Category: Integrated CircuitsInterface ICsSpecialized Interface ICNXP
NXP System Basis Chip Automotive AEC-Q100 32-Pin HTSSOP EP T/R

Packaging: N/A
Supplier Type: Authorized Distributor
2,000
available
QtyPrice
110.22672
108.71472
258.54462
1007.35364
2506.90928
5006.14376
1,0005.19764

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TJA1042T/3/1J

TJA1042T/3/1J

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 5Mbps Standby 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
2,490
available
QtyPrice
12.67106
102.38294
252.17854
1001.83302
2501.77786
5001.4924
1,0001.05546

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TJA1042T/3,118

TJA1042T/3,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP The TJA1042 high-speed CAN transceiver provides an interface between a Controller Area Network (CAN) protocol controller and the physical two-wire CAN bus. The transceiver is designed for high-speed CAN applications in the automotive industry, providing the differential transmit and receive capability to (a microcontroller with) a CAN protocol controller. The TJA1042 belongs to the third generation of high-speed CAN transceivers from NXP Semiconductors, offering significant improvements over first- and second-generation devices such as the TJA1040. It offers improved ElectroMagnetic Compatibility (EMC) and ElectroStatic Discharge (ESD) performance, and also features: The TJA1042 implements the CAN physical layer as defined in the current ISO11898 standard (ISO11898-2:2003, ISO11898-5:2007). Pending the release of the updated version of ISO11898-2 including CAN FD, additional timing parameters defining loop delay symmetry are specified. This implementation enables reliable communication in the CAN FD fast phase at data rates up to 2 Mbit/s. These features make the TJA1042 an excellent choice for all types of HS-CAN networks, in nodes that require a low-power mode with wake-up capability via the CAN bus.

Packaging: TAP
Supplier Type: Authorized Distributor
1,150
available
QtyPrice
13.15952
102.82968
252.67344
502.48248
1002.29152

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TJA1042T/3/CM,118

TJA1042T/3/CM,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 5Mbps Standby 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
7,500
available
QtyPrice
12.34066
102.17154
252.08418
1001.84156
2501.77016
5001.56338
1,0001.29892
3,0001.28324
6,0001.26756

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VN5050JTR-E

VN5050JTR-E

Category: Current Limit Switch, Integrated CircuitsPower ICsSTMicroelectronics
STMicroelectronics The VN5050J-E is a monolithic device made using STMicroelectronics VIPower technology. It is intended for driving resistive or inductive loads with one side connected to ground. Active VCC pin voltage clamp protects the device against low energy spikes (see ISO7637 transient compatibility table). The device detects open load condition both in on and off state, when STAT_DIS is left open or driven low. Output shorted to VCC is detected in the off state.When STAT_DIS is driven high, the STATUS pin is in a high impedance condition.Output current limitation protects the device in overload condition. In case of long duration overload, the device limits the dissipated power to safe level up to thermal shut-down intervention.Thermal shutdown with automatic restart allows the device to recover normal operation as soon as fault condition disappears.

Packaging: TR
Supplier Type: Authorized Distributor
2,500
available
QtyPrice
2,5002.20052
5,0002.15516
10,0002.1098

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MMPF0100F0AEP

MMPF0100F0AEP

Category: Integrated CircuitsPMIC, Power ICsNXP
NXP PF0100 Series 4.5 V SMARTMOS Power Management Integrated Circuit - QFN-56

Packaging: TRAY
Supplier Type: Authorized Distributor
520
available
QtyPrice
2608.4196

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TJA1057T,118

TJA1057T,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP The TJA1057 is a high-speed CAN transceiver that provides an interface between a Controller Area Network (CAN) protocol controller and the physical two-wire CAN bus. The transceiver is designed for high-speed CAN applications in the automotive industry, providing the differential transmit and receive capability to (a microcontroller with) a CAN protocol controller. The TJA1057 offers a feature set optimized for 12 V automotive applications, with significant improvements over NXP's first- and second-generation CAN transceivers, such as the TJA1050, and excellent ElectroMagnetic Compatibility (EMC) performance. The TJA1057 also displays ideal passive behavior to the CAN bus when the supply voltage is off. These features make the TJA1057 an excellent choice for HS-CAN networks that only require basic CAN functionality. The TJA1057 implements the CAN physical layer as defined in the current ISO11898-2:2003 standard. The TJA1057T is specified for data rates up to 1 Mbit/s. Pending the release of the updated version of ISO11898-2 including CAN FD, additional timing parameters defining loop delay symmetry are specified for the TJA1057GT. This implementation enables reliable communication in the CAN FD fast phase at data rates up to 5 Mbit/s.

Packaging: TR
Supplier Type: Authorized Distributor
37,500
available
QtyPrice
2,5000.76916
5,0000.75278
10,0000.73626
15,0000.71974
20,0000.70322
25,0000.68684
250,0000.67032

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TJA1057T/1Z

TJA1057T/1Z

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 5Mbps Normal/Silent 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
2,500
available
QtyPrice
311.84156
501.56702
1001.34344
2001.2726
5001.1907
1,0001.11776
2,5001.0248

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TJA1051T/3/1J

TJA1051T/3/1J

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 5Mbps Normal/Silent 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
5,000
available
QtyPrice
12.3212
102.12632
251.87684
1001.68266
2501.51564
5001.3972
1,0000.99624
3,0000.94458

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TJA1051T/3,118

TJA1051T/3,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP The TJA1051 is a high-speed CAN transceiver that provides an interface between a Controller Area Network (CAN) protocol controller and the physical two-wire CAN bus. The transceiver is designed for high-speed CAN applications in the automotive industry, providing differential transmit and receive capability to (a microcontroller with) a CAN protocol controller. The TJA1051 belongs to the third generation of high-speed CAN transceivers from NXP Semiconductors, offering significant improvements over first- and second-generation devices such as the TJA1050. It offers improved ElectroMagnetic Compatibility (EMC) and ElectroStatic Discharge (ESD) performance, and also features: The TJA1051 implements the CAN physical layer as defined in the current ISO11898 standard (ISO11898-2:2003). Pending the release of the updated version of ISO11898-2 including CAN FD, additional timing parameters defining loop delay symmetry are specified. This implementation enables reliable communication in the CAN FD fast phase at data rates up to 2 Mbit/s. These features make the TJA1051 an excellent choice for all types of HS-CAN networks, in nodes that do not require a standby mode with wake-up capability via the bus.

Packaging: TR
Supplier Type: Authorized Distributor
52,500
available
QtyPrice
2,5001.1501
5,0001.12546
10,0001.10082
15,0001.07618
20,0001.05154
25,0001.0269
250,0001.00226

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TJA1021T/20/CM,118

TJA1021T/20/CM,118

Category: Integrated CircuitsInterface ICsLIN TransceiverNXP
NXP LIN Transceivers LIN 2.1/SAE J2602/ISO17987 transceiver

Packaging: N/A
Supplier Type: Authorized Distributor
7,361
available
QtyPrice
11.6464
101.274
251.2054
1001.13092
2501.10152
5001.09368
1,0001.03488
2,5001.0094

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TJA1051T/3/CM,118

TJA1051T/3/CM,118

Category: CAN Transceiver, Integrated CircuitsInterface ICsNXP
NXP CAN 5Mbps Normal/Silent 5V Automotive AEC-Q100 8-Pin SO T/R

Packaging: N/A
Supplier Type: Authorized Distributor
2,475
available
QtyPrice
12.40604
102.17028
252.14774
1001.73656
2501.7192
5001.5645
1,0001.05994

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Frequently Asked Questions About Integrated Circuits

A microcontroller we've designed around is at end-of-life. What's involved in finding a compatible replacement, and how does IC crossing differ from crossing a passive component?

Crossing a microcontroller is far more involved than crossing a capacitor or resistor. The electrical parameters are only part of the picture. Peripheral compatibility (including whether the replacement MCU offers the same UART, SPI, I2C, ADC, and timer configurations in matching pin assignments) determines whether firmware can be migrated without a rewrite. Package and footprint must match if you're avoiding a PCB respin. Flash size, RAM capacity, operating frequency, and core architecture all affect whether existing code will run on the replacement with acceptable modification effort. ASC's sourcing team can pull the original datasheet and cross-reference against those parameters to identify candidates from Texas Instruments, Microchip, Analog Devices, Renesas, STMicroelectronics, NXP, or other manufacturers in current production. Submit the original part number and any constraints on firmware portability with your RFQ, and the team can narrow the list to options most likely to minimize re-qualification effort.

Our approved vendor list requires at least two qualified sources for every logic IC on our BOM. Can ASC help identify and source pin-compatible alternatives?

Yes. Many standard logic devices, including 74-series gates, flip-flops, buffers, and bus transceivers, are manufactured by multiple vendors in functionally equivalent versions. A Texas Instruments part and a Nexperia or onsemi equivalent in the same package and logic family are typically pin-for-pin compatible, though confirming propagation delay and output drive specifications against your timing requirements is important before approving an alternate source. ASC can source both your primary approved part and alternative manufacturer versions and can provide manufacturer datasheets to support your engineering review alongside the order. If your AVL qualification process requires documentation from a specific supply chain tier, ASC can confirm the sourcing channel and provide traceability documentation with each shipment.

We need to source Flash memory and DRAM for an industrial application with specific endurance and temperature requirements. How does ASC match specifications for memory devices?

Memory devices have several parameters beyond density and interface that determine whether a part is suitable. For Flash, endurance rating in program/erase cycles and data retention spec are critical for embedded applications where the memory is written frequently. For DRAM, timing parameters, operating voltage, and ECC support determine system stability. ASC sources Flash, DRAM, EEPROM, SRAM, and FRAM devices across a range of temperature grades, and can cross-reference by density, interface protocol, package, endurance, and voltage against your design requirements. Submit your target specifications with your RFQ, and the team can identify available options from manufacturers, including Micron, Alliance Memory, Winbond, and ISSI.

We buy ICs in significant volume from multiple sources and need to verify authenticity beyond visual inspection and XRF. What deeper testing does ASC offer or facilitate?

For orders where the counterfeit risk profile warrants it, ASC's quality testing process includes decapsulation and die analysis. This involves chemically removing the IC package and examining the die directly to confirm that the markings, die revision, and internal construction match the authentic manufacturer's documented design. It's one of the most reliable methods for detecting recycled ICs, black-topped remarked parts, and parts where the die doesn't match the housing label. ASC works with third-party labs holding IDEA-ICE-3000 and MIL-STD-883 certifications that include die-level evaluation capabilities. If your incoming inspection program requires decapsulation testing for a specific part family, lot, or supplier, include that requirement with your RFQ and ASC's team can arrange testing through its lab network.

Our design requires ICs rated for extended industrial temperature operation. What risks are associated with sourcing the wrong temperature grade, and how does ASC prevent that?

Commercial-grade ICs are far more widely stocked than industrial or extended temperature versions, and the price differential creates an incentive in the gray market to supply commercial-grade parts in industrial-grade packaging with the temperature rating marked upward. A part that visually passes incoming inspection may still fail in a system running at the temperature extremes its label claims to support. ASC's sourcing process applies XRF and visual inspection to all open-market orders, and electrical testing at temperature is available through ASC's third-party lab network when the application requires it. When sourcing a specific temperature grade, ASC's team confirms the grade as part of the process and documents it in the accompanying certificates of conformance. Note your temperature requirements in your RFQ so the sourcing team can confirm grade availability before the order is placed.

We maintain legacy products that use ICs no longer manufactured anywhere. How does ASC approach sourcing for truly orphaned part numbers?

Legacy product support is one of the more demanding sourcing challenges because options narrow over time. For recently discontinued parts, ASC's global sourcing network can identify remaining new-in-box stock held in distributor warehouses, manufacturing excess inventory, and authorized end-of-life pools before those channels are depleted. For parts that have been out of production longer, the search moves to bonded stock at independent distributors and excess inventory markets, which requires careful authentication because parts from these channels have had more time to circulate through secondary markets. ASC's inspection process under AS 6081:2012 applies to all open-market sourcing regardless of part age. If a part is genuinely unobtainable, ASC can support a cross-referencing exercise to identify a functional equivalent, though for highly integrated ICs, this may require engineering evaluation beyond a simple part swap. Submit your legacy part number and your current inventory runway with your RFQ

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