Logic - Translators, Level Shifters

Image Part Number Description / PDF Quantity Rfq
NVT2006PW,118

NVT2006PW,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 16TSSOP

3354

GTL2002D/DG,118

GTL2002D/DG,118

NXP Semiconductors

IC XLATR 2BIT BI-DIREC 8-SOIC

2974

NTS0103GU10,115

NTS0103GU10,115

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 10XQFN

3198

74AUP1T58GF

74AUP1T58GF

NXP Semiconductors

LOGIC CIRCUIT, CMOS, PDSO6

0

NTB0101GW,125

NTB0101GW,125

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 6TSSOP

15

GTL2014PW,118

GTL2014PW,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 14TSSOP

275

GTL2012DP,118

GTL2012DP,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 8TSSOP

263

NVT2002DP,118

NVT2002DP,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 8TSSOP

54

GTL2003PW,118

GTL2003PW,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 20TSSOP

3994

GTL2014PW,112-NXP

GTL2014PW,112-NXP

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 14TSSOP

12596

74ALVC164245BX,518

74ALVC164245BX,518

NXP Semiconductors

BUS TRANSCEIVER

19865

NTB0102GT,115

NTB0102GT,115

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 8XSON

3703

PCA9306GD1,125

PCA9306GD1,125

NXP Semiconductors

TRANSLATOR I2C BUS SMBUS 8XSON

6065

74AUP1T97GF/S500132

74AUP1T97GF/S500132

NXP Semiconductors

74AUP1T97GF - LOGIC CIRCUIT

0

NTB0101GW-Q100H

NTB0101GW-Q100H

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 6TSSOP

0

GTL2005PW,118

GTL2005PW,118

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 14TSSOP

7267

PTN3310D,118

PTN3310D,118

NXP Semiconductors

IC XLATR HS SERIAL LOGIC 8SOIC

9120

NTS0102DP-Q100H

NTS0102DP-Q100H

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 8TSSOP

17063

NTB0101AGWH

NTB0101AGWH

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL SC88

2837

NTS0101GS132

NTS0101GS132

NXP Semiconductors

IC TRNSLTR BIDIRECTIONAL 6XSON

5000

Logic - Translators, Level Shifters

1. Overview

Logic translators and level shifters are semiconductor devices that enable signal compatibility between circuits operating at different voltage levels. These ICs ensure reliable data transmission by converting logic signals from one voltage domain to another, maintaining signal integrity in mixed-voltage systems. Their importance has grown with the proliferation of low-voltage CMOS technologies and multi-rail power architectures in modern electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Single-direction translatorsUnidirectional voltage conversion with isolationSPI interface between 3.3V FPGA and 1.8V sensors
Bi-directional translatorsAutomatic direction detection, dual-voltage I/OI2C bus bridging between 5V microcontroller and 2.5V EEPROM
Multi-channel level shiftersParallel conversion of multiple signals (4-32 channels)Memory interface between SoC and DDR4 SDRAM modules
Direction-controlled translatorsExternal control pin for signal direction selectionUART level conversion in industrial communication modules

3. Structure and Composition

Typical devices feature a monolithic CMOS structure with dual power supply inputs (VCCA and VCCB). Physical components include:

  • Dual-supply MOSFET pairs for voltage translation
  • Integrated clamp circuits for ESD protection
  • Direction control logic (for bidirectional types)
  • Channel-specific enable/disable circuitry

Common package types: TSSOP (14-48 pins), QFN (20-64 pins), WLCSP (1.5 1.5mm ultra-compact).

4. Key Technical Specifications

ParameterSignificance
Voltage range (1.2V-5.5V)Determines compatibility with different logic families
Conversion rate (100Mbps-1.2Gbps)Limits maximum operating frequency
Channel count (1-32)Impacts system integration density
Propagation delay (2-20ns)Affects timing critical applications
Quiescent current (1-100 A)Power efficiency in battery-powered systems

5. Application Areas

Key industries include:

  • Telecommunications: 5G baseband processors interfacing with RF front-ends
  • Industrial automation: PLC modules connecting 24V sensors to 3.3V MCUs
  • Consumer electronics: Smartphone PMIC to application processor communication
  • Automotive systems: CAN-FD transceiver voltage adaptation
  • IoT devices: Sensor hub interfacing between different voltage rail components

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)TXB01088-channel, 1.2-3.6V to 1.65-5.5V translation, auto-direction detection
NXP SemiconductorsLTC28503.3/5V dual supply, 15kV ESD protection, RS485/UART interface
ON SemiconductorNXU4084-channel, 0.9-5.5V range, sub-1ns propagation delay
STMicroelectronicsL6470Stepper motor driver with integrated level shifting for industrial automation

7. Selection Guidelines

Key considerations:

  • Match supply voltage ranges with source/target systems
  • Ensure conversion rate meets timing requirements
  • Choose appropriate channel density to minimize PCB area
  • For bidirectional buses, select devices with automatic direction sensing
  • Consider thermal performance for high-current applications
  • Evaluate ESD protection levels for industrial environments

8. Industry Trends

Development directions include:

  • Voltage scaling down to 0.8V core operation
  • Integration with signal conditioning functions
  • Increased adoption of capacitive isolation technology
  • Advanced packaging (3D TSV, fan-out WLP)
  • Protocol-aware smart translation (I3C, PCIe 6.0)
RFQ BOM Call Skype Email
Top