OPA836 by: Texas Instruments

Part Details for OPA836 by Texas Instruments

Overview of OPA836 by Texas Instruments

Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.

Part Details for OPA836

OPA836 CAD Models

There are no models available for this part yet.

Sign in to request this CAD model.

Register or Sign In

Resources and Additional Insights for OPA836

Reference Designs related to OPA836

  • Spectrum Analyzer Signal Conditioning and Processing for Capturing Arc Signatures Reference Design
    This reference design demonstrates bandwidth-optimized analog front end (AFE) and real-time FIR implementation using low power to capture broadband frequency spectrum in any waveform. An operational amplifier in each signal path is chosen based on the gain: signal bandwidth: low noise and close to the rail swing requirements while consuming low power. The waveform is processed in real-time both in frequency and time domain using a mixed signal ultra-low power microprocessor with a built-in vector math engine.
  • Power-optimized 16-bit 1MSPS Data Acquisition Block for Lowest Distortion and Noise Reference Design
    This TI Verified Design is the realization of a high precision: 16-bit 1MSPS data acquisition system suitable for applications such as digital audio that require front-ends with very low distortion and noise. The circuit uses a high performance Successive Approximation Register Analog to Digital Converter (SAR ADC) and has been optimized to provide superior dynamic performance: without excessive power consumption.
  • PMP20878 8 类高功率 PoE 隔离式有源钳位正向转换器 (24V/3A) 参考设计
    This reference design is a high power PoE Powered Device (PD) plus active clamp forward converter. The TPS2373 high power PD controller EVM (TPS2373-4EVM-758) provides all functions necessary to implement an IEEE802.3bt-ready PD. This is paired up with an active clamp forward converter utilizing the UCC2897A controller. The high efficiency 24V/3A output using synchronous rectifiers is ideally suited for high power PoE applications such as IP security cameras and LED lighting applications.<p>In need of an IEEE802.3bt-ready PSE controller? Check out the TPS23881.
  • TIDA-00867 具有集成电流感测功能的 24V 步进电机控制器参考设计
    The TIDA-00867 reference design showcases the benefits of integrated current sensing for stepper motors. Integraded current sensing is available on the DRV8885. The DRV8885EVM to demonstrate this feature.
  • Optimized ultrasonic sensing metrology reference design for water flow measurement
    This reference design helps designers develop a cost optimized ultrasonic water-metering subsystem using an integrated: ultrasonic sensing solution (USS) module: which provides superior metrology performance with low-power consumption and maximum integration. The design is based on the 64KB MSP430FR6043 microcontroller (MCU): with integrated high-speed: ADC-based: signal acquisition and an integrated low energy accelerator (LEA) to optimize digital signal processing.
  • Analog Front-End Reference Design for Imaging Using Time-Interleaved SAR ADCs with 73dB SNR: 7.5MSPS
    This reference design demonstrates how to achieve multiple ADC interleaving with high sampling rates and good resolution at low BOM-cost. The reference design was built with electronic imaging systems in mind. High definition imaging and other high speed signal processing applications require ADCs that can achieve high resolution: high SNR: high speed and low power consumption. These requirements cannot always be met with a  single chip. By interleaving multiple SAR ADCs: the design optimizes trade-offs between different ADCs in order to meet all of the system requirements.
  • Ultrasonic sensing subsystem reference design for gas flow measurement
    This reference design helps designers develop an ultrasonic gas-metering subsystem using an integrated: ultrasonic sensing solution (USS) module: which provides superior metrology performance with low-power consumption and maximum integration. The design is based on the 64KB MSP430FR6043 microcontroller (MCU) with integrated high-speed: ADC-based signal acquisition and an integrated low-energy accelerator (LEA) to optimize digital signal processing.

Share by Email

Something went wrong!
Please enter a valid e-mail address
Email sent!
Recipient Email:
Add a recipient
Hello!

We are passing along some cool findings on Findchips sent to you from .

The data is for OPA836 by Texas Instruments.
They’ve also added a data comparison to this page with by .


Click on the link below to check it out on Findchips.com.

Update Alert Settings for: OPA836 by Texas Instruments

  • Please alert me when OPA836 inventory levels are or equal to a quantity of from one of my selected distributors.
  • Also alert me for OPA836 alternates
    An alert is already set for the following part(s): . Any existing alert will be overwritten and set as a new alert.
No pricing information is available at this time
  • Please alert me when the single part price for OPA836 to
    $
    for at least parts from one of my selected distributors.
    Your Pricing Alert is set to expire on .
    Set this alert to expire in Update this alert to expire · Expired on
  • Also alert me for OPA836 alternates
    An alert is already set for the following part(s): . Any existing alert will be overwritten and set as a new alert.

Your part alert has been saved!

Alerts are triggered based off of individual distributors that you choose. Select your distributor(s) below.

Your part alert has been saved!

Register
Password Guidelines

Is at least 8 characters in length

Must include at least 3 of the following:

One lower-case character (a-z)

One upper-case character (A-Z)

One numeric character (0-9)

One special character (!#$%^&*)

Alert is successfully saved for OPA836.
Looks like you've reached your alert limit!  Please delete some alerts or contact us if you need help.

Compare OPA836 by Texas Instruments

Select a part to compare:
Part Number Manufacturer Description
No result found.
Something went wrong!
Or search for a different part: