Find Analog & Mixed Signal from Rochester, Texas Instruments, and additional brands. 88,903 part numbers available at FPGACenter. No MOQ, IDEA-1010 inspected.
The LF156H/NOPB is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include -55°C ~ 125°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -55°C ~ 125°C. Designed for audio systems, instrumentation, and medical devices applications, the LF156H/NOPB is currently in active production through Texas Instruments's standard distribution channels.
The LF157H is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -55°C ~ 125°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -55°C ~ 125°C. Designed for audio systems, instrumentation, and medical devices applications, the LF157H is no longer produced by Rochester Electronics; FPGACenter maintains verified stock sourced through certified supply chain partners.
The LF198AH/NOPB is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include -55°C ~ 125°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -55°C ~ 125°C. Designed for audio systems, instrumentation, and medical devices applications, the LF198AH/NOPB is currently in active production through Texas Instruments's standard distribution channels.
The LF198H/NOPB is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -55°C ~ 125°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -55°C ~ 125°C. Designed for audio systems, instrumentation, and medical devices applications, the LF198H/NOPB is currently in active production through Rochester Electronics's standard distribution channels.
The LF247D is an instrumentation amplifier manufactured by STMicroelectronics. Technical highlights include -40°C ~ 105°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -40°C ~ 105°C. Designed for audio systems, instrumentation, and medical devices applications, the LF247D is no longer produced by STMicroelectronics; FPGACenter maintains verified stock sourced through certified supply chain partners.
The LF247DT is an instrumentation amplifier manufactured by STMicroelectronics. Technical highlights include -40°C ~ 105°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -40°C ~ 105°C. Designed for audio systems, instrumentation, and medical devices applications, the LF247DT is currently in active production through STMicroelectronics's standard distribution channels.
The LF253D is an instrumentation amplifier manufactured by STMicroelectronics. Technical highlights include -40°C ~ 105°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 8-SOIC (0.154", 3.90mm Width) package and is rated for operation across -40°C ~ 105°C. Designed for audio systems, instrumentation, and medical devices applications, the LF253D is no longer produced by STMicroelectronics; FPGACenter maintains verified stock sourced through certified supply chain partners.
The LF253DT is an instrumentation amplifier manufactured by STMicroelectronics. Technical highlights include -40°C ~ 105°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 8-SOIC (0.154", 3.90mm Width) package and is rated for operation across -40°C ~ 105°C. Designed for audio systems, instrumentation, and medical devices applications, the LF253DT is currently in active production through STMicroelectronics's standard distribution channels.
The LF256H is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF256H is currently in active production through Rochester Electronics's standard distribution channels.
The LF298H/NOPB is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a TO-99-8 Metal Can package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298H/NOPB is currently in active production through Rochester Electronics's standard distribution channels.
The LF298M is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298M is currently in active production through Rochester Electronics's standard distribution channels.
The LF298M-NS is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298M-NS is currently in active production through Rochester Electronics's standard distribution channels.
The LF298M/NOPB is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298M/NOPB is currently in active production through Texas Instruments's standard distribution channels.
The LF298MX is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298MX is currently in active production through Texas Instruments's standard distribution channels.
The LF298MX-TI is an application-specific IC manufactured by Rochester Electronics. Design review should confirm supply voltage, interface compatibility, package fit, operating temperature limits, and lot/date code traceability, plus genuine factory-marked silicon, original packaging, and full lot/date code traceability. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package suitable for both prototyping and production builds. Designed for audio systems, instrumentation, and medical devices applications, the LF298MX-TI is currently in active production through Rochester Electronics's standard distribution channels.
The LF298MX/NOPB is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include -25°C ~ 85°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across -25°C ~ 85°C. Designed for audio systems, instrumentation, and medical devices applications, the LF298MX/NOPB is currently in active production through Texas Instruments's standard distribution channels.
The LF347BD is an instrumentation amplifier manufactured by Rochester Electronics. Technical highlights include 0°C ~ 70°C (TA) operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across 0°C ~ 70°C (TA). Designed for audio systems, instrumentation, and medical devices applications, the LF347BD is currently in active production through Rochester Electronics's standard distribution channels.
The LF347BDR is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include 0°C ~ 70°C (TA) operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Surface Mount component is supplied in a 14-SOIC (0.154", 3.90mm Width) package and is rated for operation across 0°C ~ 70°C (TA). Designed for audio systems, instrumentation, and medical devices applications, the LF347BDR is currently in active production through Texas Instruments's standard distribution channels.
The LF347BN is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include 0°C ~ 70°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a 14-DIP (0.300", 7.62mm) package and is rated for operation across 0°C ~ 70°C. Designed for audio systems, instrumentation, and medical devices applications, the LF347BN is currently in active production through Texas Instruments's standard distribution channels.
The LF347BN/NOPB is an instrumentation amplifier manufactured by Texas Instruments. Technical highlights include 0°C ~ 70°C operating temperature; design review should confirm amplifier gain, bandwidth, ADC or DAC signal-chain fit, supply voltage, and operating temperature limits. This Through Hole component is supplied in a 14-DIP (0.300", 7.62mm) package and is rated for operation across 0°C ~ 70°C. Designed for audio systems, instrumentation, and medical devices applications, the LF347BN/NOPB is currently in active production through Texas Instruments's standard distribution channels.