TXB0108PWR


8-bit bidirectional voltage translator, 1.2-3.6V A / 1.65-5.5V B, auto-direction, 100Mbps, TSSOP-20, -40~85C

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Manufacturer Part:

TXB0108PWR

Package:

TSSOP-20 (PW Package) (6.5 x 4.4 x 1.15 mm)

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Description

The TXB0108PWR from Texas Instruments is an 8-bit bidirectional voltage-level translator with auto-direction sensing and +/-15kV ESD protection in a 20-pin TSSOP package (6.5 x 4.4 mm). The A port accepts I/O voltages from 1.2V to 3.6V, while the B port accepts 1.65V to 5.5V (VCCA must not exceed VCCB). The device uses a buffered architecture with edge-rate accelerators (one-shots) to achieve data rates up to 100Mbps. It supports universal low-voltage bidirectional translation between 1.2V, 1.5V, 1.8V, 2.5V, 3.3V, and 5V nodes. The OE (output enable) input is referenced to VCCA; when OE is low, all outputs are placed in high-impedance state. VCC isolation feature ensures all outputs are high-impedance if either VCC input is at GND. The Ioff feature supports partial-power-down mode, preventing damaging backflow current. Maximum propagation delay: 9.5ns at 1.8V. Quiescent current: 4uA max (10uA max over full temperature). ESD: +/-15kV HBM on B port, 2000V HBM on A port, 1000V CDM on both ports. Latch-up exceeds 100mA per JESD 78 Class II. Operating temperature: -40C to 85C. Pb-free, RoHS compliant, EAR99. Active product.

The TXB0108PWR from Texas Instruments is an 8-bit bidirectional voltage-level translator specifically designed for translating logic voltage levels between two independent power rails. The A port accepts I/O voltages from 1.2V to 3.6V, while the B port accepts 1.65V to 5.5V, enabling universal translation between any combination of 1.2V, 1.5V, 1.8V, 2.5V, 3.3V, and 5V logic nodes. The constraint VCCA <= VCCB must be observed at all times. The device uses a buffered architecture with integrated edge-rate accelerators (one-shots) that improve the overall data rate up to 100Mbps. Unlike passive translator architectures, the TXB0108 actively drives the output transitions using short-duration current pulses from the one-shot circuits, achieving faster edge rates than the passive pull-up/pull-down alone could provide. After the initial edge-rate-accelerated transition, the output is held by weak internal pull-up and pull-down drivers (approximately 4kohm each), which maintain the logic level but provide very low DC drive current (only +/-20uA source/sink). The auto-direction sensing feature eliminates the need for a direction control signal. The TXB0108 automatically detects which side (A or B) is being driven by an external device and translates the signal to the opposite side. This makes the device ideal for bidirectional buses such as I2C, SDIO, and other open-drain or push-pull interfaces where direction changes dynamically. Important design consideration: The TXB0108 is designed to translate push-pull CMOS logic outputs only. For open-drain signal translation (such as I2C with pull-up resistors), TI recommends the TXS010x family which integrates additional pull-up resistors and edge-rate accelerators suited for open-drain topologies. Adding external pull-up or pull-down resistors to TXB0108 I/O pins can interfere with the weak internal drivers and cause output level issues. The OE (output enable) input is referenced to VCCA and is active HIGH. When OE is LOW, all outputs are placed in the high-impedance state. During power-up or power-down, OE should be tied to GND through a pull-down resistor to ensure the high-impedance state is maintained. The Ioff circuitry disables the outputs when either supply is removed, preventing damaging backflow current through the device. The TXB0108PWR is the TSSOP-20 package variant (PW suffix). Other available packages include USON-20 (DQS), VQFN-20 (RGY), VSSOP-20 (DGS), WQFN-20 (RUK), DSBGA-20 (YZP), and NFBGA-20 (NME). The TSSOP-20 is the most commonly used package for prototyping and production due to its reasonable pin pitch (0.65mm) and ease of assembly. Key specifications: maximum propagation delay 9.5ns at 1.8V, quiescent current 4uA typical (10uA max over temperature), output drive current +/-20uA DC, +/-15kV ESD protection on B port, 2000V HBM on A port, 1000V CDM on both ports, latch-up exceeds 100mA, operating temperature -40C to 85C.

The TXB0108PWR operates as an 8-bit bidirectional auto-sensing voltage-level translator using a buffered architecture with edge-rate accelerators.

Dual-Supply Architecture: The device has two independent power supply rails: VCCA (1.2V to 3.6V) for the A port, and VCCB (1.65V to 5.5V) for the B port. Each A-port I/O pin is referenced to VCCA, and each B-port I/O pin is referenced to VCCB. The constraint VCCA <= VCCB must be maintained at all times to ensure proper operation. Both supplies must be present for the device to function; if either VCC is at GND, all outputs enter the high-impedance state (VCC isolation feature). Auto-Direction Sensing: Each of the 8 channels is bidirectional and auto-sensing, meaning no direction control pin is needed. The device monitors both the A and B sides of each channel. When an external driver on one side begins to drive the line, the TXB0108 detects the transition and translates it to the opposite side. The direction sensing works by monitoring the voltage on both sides and determining which side is being actively driven by comparing the rate of change. Edge-Rate Accelerators (One-Shots): The core of the TXB0108 translation mechanism is the edge-rate accelerator circuit. When a logic transition is detected on one side (e.g., A1 going from LOW to HIGH), a one-shot circuit fires a short-duration current pulse (approximately 10-20ns wide) into the output driver on the opposite side (B1). This pulse actively drives the output through the transition much faster than the weak DC drivers alone could achieve, enabling data rates up to 100Mbps. After the one-shot pulse expires, the output is maintained by weak internal pull-up and pull-down drivers (approximately 4kohm output impedance), which provide enough current to hold the logic level but only +/-20uA of DC drive capability. Weak DC Drivers: The steady-state output drivers are intentionally weak (approximately 4kohm to VCC and 4kohm to GND, forming a voltage divider at mid-supply when no external driver is present). This weak drive is essential for bidirectional operation because it allows an external driver on either side to easily override the output and establish a new logic level, which the device then translates to the opposite side. The trade-off is that the DC drive capability is very low (+/-20uA), making the device unsuitable for driving heavy loads or long transmission lines. Push-Pull Only: Because the output holding current is so weak, the TXB0108 is designed exclusively for push-pull CMOS drivers. Open-drain outputs (with external pull-up resistors) can conflict with the internal weak drivers, potentially causing output level problems (VOL too high or VOH too low). For open-drain applications, the TXS010x family with integrated pull-up resistors should be used instead. OE and Ioff: The OE pin is referenced to VCCA. When OE = LOW, all outputs are high-impedance (tri-stated). The Ioff circuit ensures that if either VCCA or VCCB is removed, the I/O pins do not source or sink significant current, protecting both the TXB0108 and the connected devices from backflow damage. During power sequencing, OE should be held LOW via a pull-down resistor until both supplies are stable. Translation Example: For a 1.8V to 3.3V translation, VCCA = 1.8V and VCCB = 3.3V. A LOW on A1 (0V) is translated to B1 at 0V (LOW). A HIGH on A1 (1.8V) is translated to B1 at 3.3V (HIGH). The one-shot fires during each transition to actively drive B1 through the voltage change, and the weak DC drivers hold the level steady between transitions.

Pin Name Type Description
1 A1 I/O A port channel 1 bidirectional I/O; referenced to VCCA (1.2V-3.6V); auto-direction sensing
2 VCCA Power A port power supply; 1.2V to 3.6V; must not exceed VCCB; decouple with 0.1uF capacitor to GND
3 A2 I/O A port channel 2
4 A3 I/O A port channel 3
5 A4 I/O A port channel 4
6 A5 I/O A port channel 5
7 A6 I/O A port channel 6
8 A7 I/O A port channel 7
9 A8 I/O A port channel 8
10 OE Input Output enable; active HIGH; referenced to VCCA; LOW = all outputs high-impedance; tie to GND through pull-down resistor during power sequencing
11 GND Power Ground; common reference for both A and B ports
12 B8 I/O B port channel 8 bidirectional I/O; referenced to VCCB (1.65V-5.5V); +/-15kV ESD protection
13 B7 I/O B port channel 7
14 B6 I/O B port channel 6
15 B5 I/O B port channel 5
16 B4 I/O B port channel 4
17 B3 I/O B port channel 3
18 B2 I/O B port channel 2
19 VCCB Power B port power supply; 1.65V to 5.5V; must equal or exceed VCCA; decouple with 0.1uF capacitor to GND
20 B1 I/O B port channel 1
Application Description
Processor-to-Peripheral Voltage Translation Translate between 1.8V processor I/O and 3.3V or 5V peripheral logic; 8-bit width covers typical parallel bus interfaces; auto-direction sensing eliminates direction control overhead
SDIO/SD Card Interface Level Shifting Translate 1.8V MCU SDIO signals to 3.3V SD card interface; 4-bit SDIO uses channels A1-A4/B1-B4; remaining channels available for other translation needs; 100Mbps data rate supports high-speed SD modes
Multi-Voltage FPGA/CPU I/O Banks Bridge between different I/O voltage domains in FPGA or multi-processor systems; 8-bit width matches common bus widths; bidirectional capability suits data buses with direction changes
UART/SPI Level Translation Translate 3.3V UART or SPI signals to 5V logic in legacy systems; push-pull CMOS outputs of UART/SPI controllers are compatible with TXB0108 requirements; auto-direction suits half-duplex SPI with MISO line
Mobile Device Interface Translation Translate 1.2V or 1.8V baseband processor signals to 2.5V or 3.3V display/camera/sensor interfaces; low quiescent current (4uA) suits battery-powered devices; compact TSSOP-20 package
Model Manufacturer Compatibility Key Difference
TXS0108EPWR TI Functionally Similar Open-drain compatible version with integrated pull-up resistors; same pinout and voltage ranges; use for I2C and other open-drain buses; slightly higher supply current
TXB0104PWR TI Same Family, 4-bit 4-bit version of TXB0108; same architecture and voltage ranges; TSSOP-14 package; use when fewer translation channels are needed
SN74LVC8T245PWR TI Functionally Similar 8-bit direction-controlled translator; requires DIR pin for direction control; higher output drive (+/-32mA); wider voltage range; no auto-direction sensing; use when higher drive current is needed
NCA3292 Nexperia Functionally Similar 8-bit auto-direction translator; similar voltage ranges; different package options; potentially lower cost alternative; check ESD ratings for specific applications
FXMA108 Fairchild/ON Functionally Similar 8-bit auto-direction translator; similar architecture with one-shot accelerators; same TSSOP-20 pinout; check voltage range compatibility for specific application
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Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

Service & Packaging

All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.