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  3. 日本テキサス・インスツルメンツ
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日本テキサス・インスツルメンツ

addressTokyo/Shinjuku-ku/3rd Floor, Mitsui Building, 6-24-1 Nishi-Shinjuku, Nishi-Shinjuku
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last updated:Jul 03, 2017
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日本テキサス・インスツルメンツ List of Products and Services

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SN74AVC8T245

8-bit dual power bus transceiver 'SN74AVC8T245' with adjustable voltage conversion function and 3-state output.

An 8-bit non-inverting bus transceiver using two independent configurable power rails. It is optimized for operation at VCCA/VCCB set between 1.4V and 3.6V. It operates at a low VCCA/VCCB of 1.2V. Port A tracks VCCA, which can accommodate any supply voltage from 1.2V to 3.6V. Port B tracks VCCB, which can also accommodate any supply voltage from 1.2V to 3.6V. This enables general-purpose low-voltage bidirectional level shifting between any voltage nodes of 1.2V, 1.5V, 1.8V, 2.5V, and 3.3V. The 'SN74AVC8T245' is designed for asynchronous communication between data buses. Depending on the logic level at the direction control (DIR) input, data transmission occurs from bus A to bus B or from bus B to bus A. The output enable (OE) input can be used to disable the output, allowing for efficient isolation of the bus. The control pins (DIR and OE) are powered by VCCA.

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DP83848Q-Q1

PHYTER Extended Temperature Single-Port 10/100 Mb/s Ethernet Physical Layer Transceiver 'DP83848Q-Q1'

Supports an extended temperature range and addresses the technical challenges of Ethernet connectivity applications used in harsh environments. It is highly reliable, equipped with rich features and robust performance, and meets the IEEE 802.3u standard over an extended temperature range of -40°C to +105°C. Compliant with AEC-Q100 Grade-2. Suitable for use in harsh environments such as automotive, transportation, wireless remote radio base stations, and industrial control applications. It provides enhanced ESD protection features and offers a choice of MII or RMII interfaces, maximizing flexibility in MPU selection. Supplied in a 40-pin WQFN package. The 'DP83848Q-Q1' is a product of TI's PHYTER(TM) transceiver family. PHYTER transceivers are based on TI's extensive expertise in Ethernet accumulated over many years, enabling high performance and flexibility for easy implementation by end users and meeting application needs.

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DRV10987

12V to 24V, 3-phase sensorless 180° sinusoidal BLDC motor driver 'DRV10987'

Suitable for fan and pump applications with low cost, low noise, and fewer external components. It incorporates a power MOSFET and continuously drives up to 2A of current. It supplies current to the motor with a minimum supply voltage of 6.2V. When the supply voltage exceeds 28V, it stops driving the motor to protect the circuit. Using a unique sensorless control scheme, it performs continuous sinusoidal drive, significantly reducing pure tones typically generated by rectification. The interface to the 'DRV10987' is simple and flexible. The motor can be directly controlled via PWM, analog, or I2C inputs. Motor speed feedback is provided simultaneously from both the FG pin and the I2C interface. The 'DRV10987' features a buck regulator that efficiently steps down the supply voltage to 5V for powering internal and external circuits. A 3.3V LDO is also available for powering external circuits. The I2C interface allows for reprogramming specific motor parameters in the registers, as well as programming the EEPROM to optimize performance for any application.

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TLIN2029-Q1

Dominant state timeout/fault protection feature equipped LIN transceiver 'TLIN2029-Q1'

Compliant with AEC-Q100 and ISO/DIS 17987-4.2 standards. This is a physical layer transceiver for the Local Interconnect Network (LIN), compliant with LIN 2.0, LIN 2.1, LIN 2.2, and LIN 2.2A. It has built-in wake-up and protection features and supports 24V applications. It accommodates a wide operating voltage and includes additional bus fault protection features. The LIN receiver supports data rates of up to 100kbps for in-line programming. It converts the LIN protocol data stream from the TXD input into LIN bus signals using a current-limited waveform shaping driver, reducing electromagnetic emissions (EM). The receiver converts the data stream into logic level signals and transmits them to the microprocessor via the open-drain RXD pin. It allows for wake-up via the LIN bus or pins from sleep mode, achieving very low power consumption. It has built-in resistors, ESD, and fault protection features, enabling a reduction in board size.

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『TLV7041』

Ultra-small single-channel nanoPower low-voltage comparator 'TLV7041'

Ideal for portable/battery-operated devices with strict space constraints. It achieves an optimal balance between speed and power consumption, with a propagation delay of 3μs and a quiescent current of 335nA. This combination of fast response time and nanoPower allows for quick responses to fault conditions even in power-limited systems. The operating voltage range is 1.6V to 6.5V, making it compatible with 3V and 5V systems. It is guaranteed that the output phase does not invert with respect to the overdrive input, and due to the presence of internal hysteresis, it is optimal for high-precision voltage monitoring when it is necessary to convert slowly varying input signals into clean digital outputs in harsh and noisy environments. It features an open-drain output stage, allowing output levels that exceed VCC, making it ideal for level shifters and converters from bipolar to single-ended. It is supplied in an ultra-compact 0.8mm × 0.8mm leadless package, as well as in standard 5-pin SC70 and SOT-23 packages.

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『TLV7031』

Ultra-small single-channel nanoPower low-voltage comparator 'TLV7031'

Ideal for portable/battery-operated devices with strict space constraints. It achieves an optimal balance between speed and power consumption, with a propagation delay of 3μs and a quiescent current of 335nA. This combination of fast response time and nanoPower allows for quick responses while monitoring fault conditions, even in power-limited systems. The operating voltage range is 1.6V to 6.5V, making it compatible with 3V and 5V systems. It is guaranteed that the output phase does not invert with respect to overdrive input, and due to the presence of internal hysteresis, it is ideal for high-precision voltage monitoring when there is a need to convert slowly varying input signals into clean digital outputs in harsh and noisy environments. It features a push-pull output stage, capable of sinking and sourcing several milliamps of current when controlling LEDs or driving capacitive loads. It is available in an ultra-small 0.8mm × 0.8mm leadless package, as well as in standard 5-pin SC70 and SOT-23 packages.

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『TLV7021』

1-channel, rail-to-rail input micro-power low voltage comparator 'TLV7021'

Ideal for portable/battery-operated devices with strict space constraints. This is a single-channel Micro-Power comparator that operates at low voltage and has rail-to-rail input capability. It offers an excellent combination of speed and power consumption, with a propagation delay of 260ns and a quiescent current of 5μA. This combination of fast response time and Micro-Power allows for quick responses to fault conditions even in power-limited systems. The operating voltage range is 1.6V to 5.5V, making it compatible with 3V and 5V systems. There is no phase inversion of the output for overdrive input, and it features internal hysteresis. It is ideal for accurate voltage monitoring when there is a need to convert slowly varying input signals into clean digital outputs in harsh and noisy environments. It has an open-drain output stage, allowing for output levels that can exceed VCC, making it suitable for level shifters and converters from bipolar to single-ended. The package is an ultra-small leadless package measuring 0.8mm x 0.8mm.

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『TLV7011』

1-channel, rail-to-rail input, micro-power low voltage comparator 'TLV7011'

Ideal for portable/battery-powered devices with strict space constraints. This is a single-channel micro-power comparator that operates at low voltage and has rail-to-rail input capability. It offers an excellent combination of speed and power consumption, with a propagation delay of 260 ns and a quiescent current of 5 μA. This high response time, combined with micro-power consumption, allows for quick responses to fault conditions even in power-limited systems. The operating voltage range is 1.6V to 5.5V, making it compatible with 3V and 5V systems. There is no phase inversion of the output for overdrive inputs, and it features internal hysteresis. It is ideal for accurate voltage monitoring when there is a need to convert slowly varying input signals into clean digital outputs in harsh and noisy environments. It has a push-pull output stage, capable of sinking and sourcing several milliamps of current when controlling LEDs or driving capacitive loads. The package is an ultra-small leadless package measuring 0.8mm x 0.8mm.

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『TLV320AIC3120』

Low power mono audio codec with miniDSP, 'TLV320AIC3120'

A highly integrated high-performance codec with a built-in mono audio DAC/ADC. It features 24-bit mono playback/recording capabilities. It includes analog functions such as a microphone interface, headphone driver, and speaker driver. Additionally, it is equipped with a fully programmable miniDSP for digital audio processing. The digital audio data format can be programmed to support common audio standard protocols (I2S, left-justified, right-justified) in master, slave, DSP, and TDM modes. Bus boost, treble, and EQ are supported by a programmable digital signal processing block (PRB). The built-in PLL provides the high-speed clock required by the digital signal processing block. Volume levels can be controlled via pin control or register control, and audio functions are controlled through an I2C serial bus. The package is a 32-pin VQFN measuring 5mm on each side. An evaluation module is also available.

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『TLV320ADC3101』

miniDSP built-in low power stereo ADC 'TLV320ADC3101'

Equipped with a programmable gain amplifier that provides up to 40dB of analog gain or automatic gain control (AGC), supporting sampling rates from 8kHz to 96kHz. It features a programmable miniDSP for custom audio processing. The front-end input attenuation can be set to 0dB, -6dB, or off. Inputs can be programmed in a combination of single-ended or fully differential configurations. Extensive register-based power control via I2C interface enables mono or stereo recording. It has low power consumption, making it ideal for battery-operated portable devices. The AGC can be programmed for a wide range of attack times (7ms to 1.4s) and decay times (50ms to 22.4s). To prevent noise pumping, it includes a programmable noise gate function. It also features low-latency IIR filters optimized for voice and telecommunication, linear phase FIR filters optimized for audio, and programmable IIR filters that can be used for sound equalization and noise component removal. Evaluation modules and reference designs are also available.

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『TLIN2029-Q1』

Dominant state timeout/fault protection function equipped LIN transceiver 'TLIN2029-Q1'

Compliant with AEC-Q100 and ISO/DIS 17987-4.2 standards. This is a physical layer transceiver for the Local Interconnect Network (LIN), compliant with LIN 2.0, LIN 2.1, LIN 2.2, and LIN 2.2A. It has built-in wake-up and protection features and supports 24V applications. It accommodates a wide operating voltage range and includes additional bus fault protection features. The LIN receiver supports data rates of up to 100kbps for in-line programming. It converts the LIN protocol data stream from the TXD input into LIN bus signals using a current-limited waveform shaping driver, reducing electromagnetic emissions (EM). The receiver converts the data stream into logic level signals and transmits them to the microprocessor via the open-drain RXD pin. It allows for wake-up via the LIN bus or pins from sleep mode, achieving very low power consumption. It has built-in resistors, ESD, and fault protection features, enabling a reduction in board size.

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『TLIN1029-Q1』

LIN transceiver "TLIN1029-Q1" equipped with dominant state timeout function.

Compliant with AEC-Q100 and ISO/DIS 17987-4.2 standards. This is a physical layer transceiver for LIN (Local Interconnect Network) that complies with LIN 2.0, LIN 2.1, LIN 2.2, and LIN 2.2A. It has built-in wake-up and protection features and supports 12V applications. It accommodates a wide operating voltage and includes additional bus fault protection features. The LIN receiver supports data rates of up to 100kbps for in-line programming. It converts the LIN protocol data stream from the TXD input into LIN bus signals using a current-limited waveform shaping driver, reducing electromagnetic emissions (EM). The receiver converts the data stream into logic level signals and transmits them to the microprocessor via the open-drain RXD pin. It allows for wake-up from sleep mode via the LIN bus or pins, enabling very low current consumption. It has built-in resistors, ESD, and fault protection features, allowing for a reduction in board size.

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『THS4561』

Low power consumption, high power supply voltage range 70MHz fully differential amplifier 'THS4561'

Provides a simple interface to differential output required by high-precision ADCs from single-ended sources. It offers excellent DC accuracy, low noise, and ultra-low harmonic distortion, making it ideal for data acquisition systems that demand the best signal-to-noise ratio (SNR), spurious-free dynamic range (SFDR), and high precision through the combination of amplifiers and ADCs. It supplies the necessary negative rail input when interfacing from a DC-coupled ground midpoint source signal to a single-supply differential input ADC. Ultra-low DC error and drift terms support 16-bit to 20-bit successive approximation register (SAR) input requirements. The power supply requirements are stringent, with a flexible output common mode setting in the range of 2.85V to 12.6V, accommodating a wide range of ADC input/DAC output requirements. It is available in an 8-pin VSSOP package, and evaluation modules are also provided.

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『THS3491』

900MHz High Output Current Feedback Amplifier 'THS3491'

Provides a new level of performance for applications requiring minimal distortion at ultra-high output levels through operating frequencies exceeding 100MHz with a 100Ω load. The gain is specified at 5V/V but maintains nearly constant bandwidth and distortion over a wide gain range. An excellent slew rate of 8000V/µs delivers a 10VPP output with ultra-low distortion through a 320MHz bandwidth, even under demanding loads. Additionally, a small signal bandwidth of 900MHz provides low overshoot with rise times of less than 0.5ns for steps under 4V. The package is VQFN-16 (RGT). An 8-pin SO PowerPA (DDA) package can be used to upgrade existing designs using 'THS3091' or 'THS3095'. The 'THS3491' offers larger output amplitudes on the same ±15V power supply compared to 'THS3091' and 'THS3095'. Evaluation modules are also available.

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『PCM3070』

Stereo audio codec with miniDSP, 'PCM3070'

A highly flexible stereo audio codec equipped with programmable input/output, fully programmable miniDSP, signal processing blocks with fixed predefined parameters that can be displayed, PLL, LDO, and a flexible digital interface. It is available in a 32-pin QFN package with a 5mm square footprint. Evaluation modules and reference designs are also available.

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『PCM1864』

Universal front-end 103dB, 4-channel audio ADC "PCM1864"

Adopting a new approach to audio function integration that facilitates compliance with the European Commission's Ecodesign Directive, achieving high performance in the final product. It enables the development of lower-cost, smaller, and smarter products without the need for a 5V power supply or external programmable gain amplifiers (PGA). The highly flexible audio front end eliminates the need for external voltage divider resistors and accommodates a wide range of input levels from a few mV small microphone inputs to 2.1VRMS line inputs. It also integrates numerous system-level functions that support or serve as alternatives to DSP capabilities. All these functions can be powered by a single 3.3V supply. Since the built-in bandgap voltage reference provides excellent PSRR, a dedicated analog 3.3V rail is unnecessary. Evaluation modules and reference designs are also available.

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『PCM1862』

Universal front-end equipped 103dB, 2-channel audio ADC 'PCM1862'

Adopting a new approach to audio function integration that facilitates compliance with the European Commission's Eco-Design Directive, achieving high performance in the final product. It enables the development of lower-cost, smaller, and smarter products without the need for a 5V power supply or external programmable gain amplifiers (PGA). The highly flexible audio front end eliminates the need for external voltage divider resistors and accommodates a wide range of input levels from a few mV small microphone inputs to 2.1 VRMS line inputs. It also integrates numerous system-level features that support or serve as alternatives to DSP functionality. All these features can be powered by a single 3.3V supply. The built-in bandgap voltage reference provides excellent PSRR, eliminating the need for a dedicated analog 3.3V rail. An evaluation module is also available.

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『OPA4192』

36V, high precision, RRI/O, low offset voltage, low input bias current operational amplifier 'OPA4192'

36V e-trim series - a new generation of operational amplifiers. TI's patented dual temperature e-trim topology achieves the industry's smallest offset and drift across the entire temperature range without using auto-zero technology. This unique architecture is the first in the industry to adopt dual temperature trimming technology, enabling stable offset voltage drift across the entire temperature range and eliminating the need for system-level calibration of offset shifts. The 'OPA4192' offers excellent DC precision and AC performance, including rail-to-rail input and output, low offset (typical value: ±5µV), low offset drift (typical value: ±0.2µV/°C), and a bandwidth of 10MHz. Additionally, with a differential input voltage range relative to the power supply rails, high output current (±65mA), the ability to drive high capacitive loads up to 1nF, and a high slew rate (20V/µs), it is ideal as a robust high-performance operational amplifier for high-voltage industrial equipment. The operating temperature range is –40°C to +125°C. It is available in industry-standard packages, and evaluation modules and reference designs are also provided.

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『OPA2810』

Dual channel, high performance, low power consumption, RRI/O FET input operational amplifier "OPA2810"

A voltage feedback operational amplifier with a wide power supply voltage range and very low input bias current. It operates stably at unity gain and provides a small-signal unity gain bandwidth of 120MHz. It achieves excellent DC accuracy and dynamic AC performance with ultra-low quiescent power. Manufactured using TI's patented high-speed SiGe BiCMOS process. With a wide gain bandwidth product of 70MHz, a high slew rate of 240V/µs, and ultra-low noise of 5.7nV/√Hz, it is ideal for a wide range of data acquisition/signal processing solutions. The quiescent current per channel is 3.6mA (typical). It operates over a wide power supply voltage range of 4.75V to 27V and provides rail-to-rail input and output. The wide power supply voltage range and excellent dynamic characteristics make it suitable for a broad range of applications such as wideband photodiode transimpedance amplifiers, test/measurement front-end buffers, and active filters. Its ability to provide a linear output current of 50mA also makes it ideal for driving optoelectronic components and buffering DC outputs for heavy loads. The package is an 8-pin SOT23-8/VSSOP-8. It operates over an extended industrial temperature range of -40°C to +125°C.

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『OPA189』

High precision, low noise, zero drift, rail-to-rail output operational amplifier 'OPA189'

The settling time is fast, adopting a MUX-friendly architecture and a controlled startup system. The OPA189 has excellent AC performance, with an offset voltage of only 0.4µV and a drift coefficient of 0.005µV/°C across the entire temperature range. The MUX-friendly input architecture prevents inrush current when applying large input differential voltages, improves settling performance in multi-channel systems, and provides robust ESD protection during transport, handling, and assembly. The operating temperature range is -40°C to +125°C, and the package is an 8-pin SOIC. It is ideal for high-precision measurement instruments, signal measurement, and active filter processing applications.

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『LDC1614』

4-channel, 28-bit inductance/digital converter for inductive sensing "LDC1614"

With support for multiple channels and remote sensing, we achieve high performance and reliability in inductive sensing at minimal cost and power consumption. It is user-friendly, requiring only a sensor frequency in the range of 1kHz to 10MHz for sensing. This wide sensor frequency range allows for the use of ultra-compact PCB coils, further reducing the cost and size of sensing solutions. High-resolution channels enable a very wide sensing range while maintaining excellent performance beyond the diameter of two coils. By enabling differential and ratiometric measurements, a single channel can be used to compensate for environmental conditions such as temperature, humidity, mechanical drift, and aging. With ease of use, low power consumption, and low system cost, it significantly enhances performance, reliability, and flexibility compared to existing sensing solutions, enabling new sensing capabilities in products across all markets, particularly in consumer and industrial applications. It can also be easily configured through an I2C interface. The package is WQFN-16, and evaluation modules and reference designs are also available.

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『ISO1211』

Single-channel isolation type 24V to 60V digital input receiver 'ISO1211'

Ideal for Programmable Logic Controllers (PLC) and motor control digital input modules. Compliant with IEC 61131-2 Type 1, 2, and 3 characteristics. It offers a simple low-power solution compared to conventional optocoupler solutions with discrete and low-accuracy current limiting circuits, enabling the design of compact and high-density I/O modules through high-precision current limiting. It can be configured as a source or sink input without requiring field-side power. It operates within a supply voltage range of 2.25V to 5.5V and supports 2.5V, 3.3V, and 5V controllers. With an input withstand voltage of ±60V and reverse polarity protection, it protects the input pins even in the event of a failure, generating only a minimal amount of reverse current. Additionally, it supports data rates of up to 4Mbps, with a minimum pulse width of 150ns, allowing for high-speed operation. It is ideal for designs requiring channel-to-channel isolation. It enables a reduction in component count and board temperature compared to conventional solutions, simplifying system design. An evaluation module is also available.

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『FDC1004』

4-channel capacitance/digital converter for capacitive sensing "FDC1004"

Capacitive sensing using ground capacitors and sensors is a non-contact sensing technology with ultra-low power consumption, low cost, and high resolution, applicable in a wide range of applications from proximity detection and gesture recognition to raw material analysis and remote liquid level sensing. Since any metal or conductor can be used as a sensor in the capacitive sensing system, it enables low-cost and highly flexible system design. Each channel of the 'FDC1004' has a full-scale range of ±15pF and can accommodate sensor offset capacitance of up to 100pF. For tracking environmental changes across the entire time/temperature range, it allows for internal programming and can also use external capacitors. The large offset capacitance makes it suitable for remote sensors. Additionally, it features a shield driver for sensor shielding, enabling reduction of EMI interference and focusing the sensing direction of the capacitive sensor. Its small footprint makes it ideal for applications with space constraints. It is available in a 10-pin WSON/VSSOP package and includes an I2C interface for interfacing with MCUs. Evaluation modules and reference designs are also available.

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『DAC8832』

16-bit, ultra-low power, voltage output digital-to-analog converter 'DAC8832'

A single, 16-bit, serial input voltage output DAC that operates with a single power supply of 3V to 5V. It offers excellent linearity (1LSB INL), low glitch, low noise, and fast settling time (1.0µS to 1/2LSB of full-scale output) over a temperature range of -40°C to +85°C. Since the output is not buffered, it reduces power consumption and errors caused by buffering. It features a standard high-speed (clocking up to 50MHz) 3V / 5V SPI interface for communication with DSPs and microprocessors. It provides unipolar or bipolar output (±VREF) when operating with an external buffer and resets to mid-scale code after power-up. It offers Kelvin connections for external reference and analog ground inputs to optimize performance. The package is QFN-14 and is pin-compatible with the 'DAC8831IRGY', which resets to zero code after power-up. An evaluation module is also available.

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『DAC8740H」

Low power modem "DAC8740H" for industrial process control and industrial automation.

Low power modems for industrial process control and industrial automation. In HART mode, it integrates all the circuits necessary to operate as a half-duplex HART physical layer modem, minimizing the number of external components for filtering in either slave or master configuration. In FOUNDATION Fieldbus mode, it integrates all the circuits necessary to operate as a half-duplex FOUNDATION Fieldbus compatible H1 controller or Medium Attachment Unit (MAU). HART, FOUNDATION Fieldbus, and PROFIBUS PA data streams can be transmitted from the microcontroller through an accessible built-in FIFO via a UART interface or SPI interface. The SPI interface includes SDO pins for daisy-chain support, various interrupt functions, and other extended features. Evaluation modules and reference designs are also available.

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『ADS7950』

12-bit, 1MSPS, 4-channel, single-ended MicroPower serial I/F SAR A/D converter ADS7950

Built-in sample-and-hold function supports a wide analog power supply range of 2.7V to 5.25V. This charge redistribution SAR (Successive Approximation Register) ADC is optimized for low power consumption, making it ideal for battery-powered and isolated power applications. It is a serial device with a sample rate of 1MHz and a latency of 0. The wide I/O power supply range of 1.7V to 5.25V allows for easy direct interfacing with common CMOS digital hosts. It is possible to program two alarm levels per channel. Excellent power-down features enable reduced power consumption during operation at low conversion rates. It is available in a 30-pin TSSOP and a 24-pin QFN package.

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『ADS7142』

Programmable Nanopower Dual-Channel Sensor Monitor 'ADS7142'

A standalone Nanopower sensor monitor ideal for designs with strict cost constraints. It autonomously monitors signals while optimizing the system's power, reliability, and performance. Using a comparator with a digital window, it implements event-triggered interrupts for each channel, allowing programming of high/low thresholds, hysteresis, and event counters. It features a dual-channel analog multiplexer in front of a successive approximation register ADC, and an internal data buffer for converting and capturing data from the sensor. The ADS7142 is supplied in a 10-pin QFN package measuring 1.5mm x 2mm. With a power consumption of only 900nW and a small size, it is ideal for applications with strict space constraints and battery-powered applications.

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『ISO1212』

2-channel isolated 24V to 60V digital input receiver 'ISO1212'

The "ISO1212" is suitable for Programmable Logic Controllers (PLC) and motor control digital input modules. It complies with the characteristics of IEC 61131-2 types 1, 2, and 3. It provides a simple low-power solution compared to traditional optocoupler solutions with discrete and low-precision current limiting circuits, enabling the design of compact and high-density I/O modules through high-precision current limiting. It does not require a field-side power supply and can be configured as either source or sink input. It operates within a supply voltage range of 2.25V to 5.5V and supports 2.5V, 3.3V, and 5V controllers. With an input withstand voltage of ±60V and reverse polarity protection, it protects the input pins even in the event of a failure, generating only a minimal amount of reverse current. Additionally, it supports data rates of up to 4Mbps, with a minimum pulse width of 150ns, allowing for high-speed operation. It is suitable for multi-channel designs with space constraints. It enables a reduction in component count and board temperature compared to traditional solutions, simplifying system design. An evaluation module is also available. *For more details, please contact us.*

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『CDCI6214』

PCIe Gen4 compatible, ultra-low power clock generator 'CDCI6214'

The CDCI6214 is a configurable high-performance PLL with four programmable outputs. It selects from two independent reference inputs to the phase-locked loop and generates up to four differential frequencies on configurable differential output channels while also producing a copy of the reference clock on LVCMOS output channels. Each of the four output channels features a configurable integer/fractional output divider and a dedicated integer divider. Together with the output multiplexer, it enables up to five differential frequencies. The clock distribution divider is reset in a deterministic manner for clean clock gating and glitch-free updates. Flexible power-down options allow for optimization, minimizing power consumption during both active operation and standby. The power consumption of four 156.25MHz LVDS outputs is 150mW (typical) at 1.8V. An RMS jitter of 386fs (typical) for the 100MHz HCSL output enhances the system margin for PCIe applications. *For more details, please contact us.*

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『OPA2333P』

1.8V, microPower zero-drift CMOS operational amplifier 'OPA2333P'

The OPA2333P achieves an ultra-low offset voltage of up to 10µV and nearly zero drift across all time and temperature ranges, thanks to its unique auto-calibration feature. It offers high-impedance inputs with a common mode range exceeding the rails by 100mV and rail-to-rail outputs that swing within 50mV of the rails. It can operate with a single or dual power supply ranging from +1.8V (±0.9V) to +5.5V (±2.75V) and is optimized for low-voltage single-supply operation. Additionally, it eliminates the crossover associated with traditional complementary input stages, providing excellent CMRR. This results in high performance without degrading differential linearity when driving analog/digital converters (ADCs). The operating temperature range is -40°C to +125°C. **Features** - Low offset voltage: 10μV (maximum) - Zero drift: 0.05μV/°C (maximum) - Noise from 0.01Hz to 10Hz: 1.1μVPP - Quiescent current: 17μA - Single supply operation *For more details, please contact us.*

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『TAS5634』

PWM input, fully integrated 58V Class-D amplifier power stage 'TAS5634'

The "TAS5634" supports an output of 2 × 300W (6Ω) or 1 × 600W (3Ω) with a nominal power supply voltage of 58V. With a 58V power supply voltage, it accommodates high impedance speaker loads of 6Ω in BTL and 3Ω in PBTL. The built-in MOSFETs and new gate drive method achieve high peak efficiency and low idle losses, reducing the size of thermal solutions. The "TAS5634" employs a closed-loop feedback design and a constant voltage gain. The gain resistors, which are matched internally, provide a high power supply rejection ratio (PSRR) and low output noise from the switch-mode power supply (SMPS). It features a fully integrated power stage and is compatible with TI's digital input (I2S) audio processors/modulators such as the TAS5548 and TAS5558, enabling a comprehensive digital input Class-D amplifier. Additionally, the "TAS5634" is part of a pin-compatible PWM input Class-D power stage family consisting of products like TAS5612LA, TAS5614LA, and TAS5624A. *For more details, please contact us.*

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『LDC2114』

4-channel low noise inductance/digital converter 'LDC2114'

The "LDC2114" is an inductive touch solution for low-power HMI button applications. Inductive sensing technology enables the design of touch buttons for human-machine interfaces (HMI) on various materials such as metal, glass, plastic, and wood by measuring slight distortions of inductive targets. The sensors for the inductive touch system can be implemented on a small PCB on the back of the panel, allowing for protection from the surrounding environment. The inductive sensing solution does not react to humidity or non-conductive contaminants such as oil and mud. The deformation of the inductive target can be automatically corrected. The "LDC2114" incorporates algorithms for implementing inductive touch applications. It uses innovative LC resonators to achieve a high noise/interference rejection rate. Additionally, it can reliably detect distortions of less than 200nm in materials. Furthermore, it features an ultra-low power mode for power on/off buttons in battery-operated applications. An evaluation module is also available. *For more details, please contact us.*

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『LDC2112』

2-channel low noise inductance/digital converter 'LDC2112'

The "LDC2112" is an inductive touch solution for low-power HMI button applications. Inductive sensing technology enables the design of touch buttons for human-machine interfaces (HMI) on various materials such as metal, glass, plastic, and wood by measuring slight distortions of inductive targets. The sensors for the inductive touch system can be implemented on a small PCB on the back of the panel and can be protected from the surrounding environment. Inductive sensing solutions do not react to humidity or non-conductive contaminants such as oil and mud. The deformation of the inductive target can be automatically corrected. The "LDC2112" incorporates algorithms for implementing inductive touch applications. It uses an innovative LC resonator, achieving a high noise/interference rejection rate. Additionally, it can reliably detect distortions of less than 200nm in materials. Furthermore, it features an ultra-low power mode for power on/off buttons in battery-operated applications. An evaluation module is also available. *For more details, please contact us.*

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『FDC2214』

EMI-resistant 12-bit capacitance/digital converter 'FDC2214'

The FDC2214 is suitable for proximity/level sensing applications. Capacitive sensing is a low-power, low-cost, high-resolution non-contact sensing technology that can be used in a wide range of applications, from proximity detection to gesture recognition and remote liquid level sensing. Since any metal or conductor can be used as a sensor in capacitive sensing systems, it allows for low-cost and highly flexible system design. The main limitation on the sensitivity of capacitive sensing applications is primarily the noise sensitivity of the sensor. The FDC2214 maintains high performance even in noisy environments due to its innovative EMI-resistant architecture. It is suitable for capacitive sensing solutions with a high-speed, high-resolution capacitance/digital converter that is resistant to noise and EMI. It employs an innovative narrowband base architecture that provides high noise and interference rejection performance, achieving high speed and high resolution. Additionally, it has a wide excitation frequency range, enabling flexible system design. *For more details, please contact us.*

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『TLV6741』

3MHz, low output, RRIO operational amplifier 'TLV6741'

The TLV6741 is a general-purpose CMOS operational amplifier characterized by low noise and a wide bandwidth of 10MHz. With its low noise and wide bandwidth, it is suitable for a wide range of high-precision applications that require an optimal balance of cost and performance. The input bias current supports applications with high source impedance. Its robustness and stable unity gain contribute to ease of use, and the built-in RFI/EMI suppression filter prevents phase inversion during overdrive conditions. Additionally, it features high electrostatic discharge (ESD) protection (1kV HBM). The minimum voltage is 2.25V (±1.125V), optimized for low-voltage operation, while the maximum voltage is 5.5V (±2.75V). It is a single-channel device packaged in a small SC70-5 size. **Features** - Low broadband noise - Gain bandwidth: 10MHz - Low input bias current: 10pA - Low offset voltage: 0.15mV - Rail-to-rail output *For more details, please contact us.*

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『OPT3006』

Ultra-thin peripheral light sensor 'OPT3006'

The OPT3006 is a single-chip illuminance sensor that measures the illuminance of visible light as perceived by the human eye. Its high-precision spectral response closely matches the photopic response of the human eye. With powerful infrared (IR) removal, it accurately measures illuminance as seen by the human eye, regardless of the light source. This maintains high accuracy even when the sensor needs to be placed under dark glass. In combination with backlight ICs and lighting control systems, it can create various lighting environments and is suitable as an alternative to photodiodes, photoresistors, and low-performance ambient light sensors. The built-in full-scale setting feature eliminates the need for manual selection of the full-scale range, allowing measurements from 0.01 lux to 83k lux. This capability enables light measurements across a 23-bit effective dynamic range. Additionally, it provides flexible digital operation for system integration, allowing for continuous or single measurements. *For more details, please contact us.*

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『LPV821』

650nA High Precision Nano Power Zero Drift Amplifier 'LPV821'

The LPV821 is designed for "always-on" sensing applications in wireless/wired devices that require low input offset. With low initial offset, low offset drift, an 8kHz bandwidth, and a quiescent current of 650nA, it is suitable for end devices that monitor current consumption, temperature, gas, and strain gauges. Utilizing a unique auto-calibration feature, it provides low offset voltage (up to 20µV) and minimal drift across all time and temperature ranges. In addition to low offset and ultra-low quiescent current, the ultra-low bias current in the picoampere range reduces errors typically encountered in sensor monitoring applications with high output impedance and amplifier configurations that include megaohm feedback resistors. It also features an input stage with a rail-to-rail common mode range and an output stage that swings within 15mV of the rails, maintaining a wide dynamic range. Enhanced EMI characteristics reduce the system's sensitivity to unwanted RF signals from mobile phones, WiFi, wireless transmitters, and tag readers. *For more details, please contact us.*

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『TPA3244』

60W stereo, 110W peak PurePath Ultra-HD down-class D amplifier 'TPA3244'

The TPA3244 is a high-performance power amplifier that achieves excellent sound quality with Class-D efficiency. It features an advanced integrated feedback design and a unique high-speed gate driver error correction function (PurePath Ultra-HD). This technology enables ultra-low distortion across the entire audio spectrum and outstanding audio quality. With a 30V power supply, it can drive 2 x 110W peak into a 4Ω load and 2 x 60W continuous output into an 8Ω load. Additionally, it includes a 2-VRMS analog input interface that operates seamlessly with high-performance DACs such as TI's Burr-Brown PCM52xx DAC family (PCM5242 / PCM5252). By using 65mΩ MOSFETs and an optimized gate driver method that significantly reduces idle losses compared to typical discrete implementations, it achieves excellent audio performance, high output efficiency, and low power stage idle losses of less than 0.45W. The package size is 6.1 x 14 mm HTSSOP. Evaluation modules and reference designs are also available. *For more details, please contact us.*

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『TUSB213』

USB 2.0 High-Speed (HS) Signal Conditioner "TUSB213"

The TUSB213, based on a technology currently under patent application, supports USB Low-Speed (LS) and Full-Speed (FS) signals. It compensates for ISI signal loss in the transmission channel, enabling compliance with USB electrical specification tests. The characteristics of USB LS and FS signals are unaffected by the TUSB213, while HS signals are compensated. The AC and DC boost of the signals are programmable, allowing for optimization of HS signals at the connector through fine-tuning of device performance, making it suitable for various applications. Additionally, it is compatible with USB On-The-Go (OTG) and Battery Charging (BC) protocols. The package is a 3.5mm square VQFN, and an evaluation module is also available. **Features** - Compatible with USB 2.0, OTG 2.0, and BC 1.2 - Configurable via pin strap or I2C - Supports LS, FS, and HS signal processing - Ultra-low power consumption during USB disconnection or shutdown *For more details, please contact us.*

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『TLV9061』

Low-cost, 10MHz, low-noise, RRIO, CMOS operational amplifier 'TLV9061' for system applications.

The TLV9061 is a low-voltage (1.8V to 5.5V) operational amplifier with rail-to-rail input and output, making it ideal for low-cost devices. It is also suitable for products that require small size and high capacitive load driving. While it can drive capacitive loads of 100pF, it can be easily stabilized with much higher capacitive loads due to its resistive open-loop output impedance. It operates at low voltage and has performance specifications similar to TI's OPAx316 and TLVx31. With unity-gain stability, it can incorporate RFI and EMI removal filters and does not generate phase inversion, simplifying system design. It is available in micro-sized packages such as SOT553 and WSON, as well as industry-standard packages like SOIC, MSOP, SOT-23, and TSSOP. **Features** - Rail-to-rail input and output - Low input offset voltage: ±0.3mV - Unity-gain bandwidth: 10MHz - Low input bias current: 0.5pA - Low quiescent current: 538µA *For more details, please contact us.*

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『DRV8885』

Sense register built-in 1.5A stepper motor driver 'DRV8885'

The DRV8885 features two N-channel power MOSFET H-bridge drivers and a microstepping indexer. It can supply a maximum output current of 1.5A (full scale) or 1.0A rms (at 24V and TA = 25°C, requiring an appropriate PCB ground plane for heat dissipation). It includes a current sensing function, eliminating the need for two external sensing resistors. The STEP/DIR pins can be used as a simple control interface and can be configured for modes ranging from full step to 1/16 step. A low-power sleep mode is available, allowing transition to a very low standby current mode using a dedicated nSLEEP pin. It has built-in protection features against low voltage, charge pump failure, overcurrent, short circuit, and overheating. Fault conditions are indicated by the nFAULT pin. *For more details, please contact us.*

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『DRV8880』

2A Stepper Motor Driver with STEP/DIR Interface 'DRV8880'

The DRV8880 features two N-channel power MOSFET H-bridge drivers and a microstepping indexer. It can supply a maximum output current of 2.0A (full scale) or up to 1.4A rms (at 24V and TA = 25°C, with a proper PCB ground plane required for heat dissipation). AutoTune provides automatic adjustment for stepper motors to achieve optimal current control performance, along with compensation for motor variations and aging effects. Additionally, low-speed/high-speed/mixed decay modes are also available. The STEP/DIR pins can be used as a simple control interface and can be configured for modes ranging from full step to 1/16 step. A low-power sleep mode is available, allowing transition to a very low standby current mode using a dedicated nSLEEP pin. It includes built-in protection features against low voltage, charge pump failure, overcurrent, short circuit, and overheating. Fault conditions are indicated by the nFAULT pin. *For more details, please contact us.*

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『DRV5053』

Analog Bipolar Hall Effect Sensor 'DRV5053'

The DRV5053 is a chopper-stabilized Hall effect sensor that provides a highly stable magnetic detection solution across the entire temperature range. It is equipped with internal protection features against reverse voltage conditions, load dump, output short circuits, and overcurrent. It detects the direction of the magnetic field and responds the same to both poles. When the ambient magnetic flux density exceeds the BOP threshold, the open-drain output changes to LOW. The output remains LOW until the magnetic field drops below the BRP, after which the output becomes high impedance. The output current sinking capacity is 30mA. With a wide operating voltage range of 2.5V to 38V and reverse polarity protection up to -22V, it is ideal for a wide range of industrial applications. *For more details, please contact us.*

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『DRV8320R』

60V, 3-phase smart gate driver with built-in voltage regulator 'DRV8320R'

The DRV8320R is equipped with three half-bridge gate drivers, each capable of driving high-side and low-side N-channel power MOSFETs. It generates the appropriate gate drive voltage using an integrated charge pump for the high-side MOSFET and a linear regulator for the low-side MOSFET. The smart gate drive architecture supports a peak gate drive current capability of up to 1A source and 2A sink. It operates from a single supply and supports a wide input supply voltage range of 6V to 60V for the gate driver and 4V to 60V for the optional buck regulator. The 6x, 3x, 1x, and independent input PWM modes allow for easy connection to the controller circuitry. Gate drive and device configuration settings can be flexibly modified using an SPI or hardware (H/W) interface. *For more details, please contact us.

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『INA302』

36V dual comparator built-in, overcurrent protection, high-speed, high-precision current sense amplifier 'INA302'

The INA302 is a high common-mode bidirectional current sense amplifier equipped with two high-speed comparators, capable of detecting out-of-range current conditions. It detects and responds to overcurrent conditions. Regardless of the supply voltage, it can measure differential voltage signals with a common-mode voltage ranging from -0.1V to 36V. The open-drain alert output can be configured to operate in transparent mode (where the output status follows the input state) or latch mode (where the alert output is cleared when the latch is reset). The alert response time for comparator 1 is less than 1µs, while the alert response for comparator 2 can be set in the range of 2µs to 10s using an external capacitor. It operates with a single supply voltage of 2.7V to 5.5V, with a maximum supply current of 950µA. It functions within an extended operating temperature range of -40°C to +125°C, and the package is a 14-pin TSSOP. *For more details, please contact us.*

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  • イプロスがリアル展示会を主催します! AI/DX 営業・マーケティング展 出展社募集中 リード数・商談数が止まらない!新しいリアル展示会を提供 会期 2026年3月24日(火)~25日(水) 会場 東京ビッグサイト東4ホール 出展概要資料を進呈!
  • ケーブルマーキングや銘板などに! 耐水性 耐薬性 耐熱性 耐擦過性 ブラザー独自構造のラミネートラベル 実物ラベル サンプルプレゼント!

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