The only official website & email suffix are win-source.group and win-source.net
WIN SOURCE does not have any other Company Name or Website.
Search
Filters

SN74LS126ANSR

Part No SN74LS126ANSR
Manufacturer Texas Instruments
Catalog Logic - Buffers, Drivers, Receivers, Transceivers
Description IC BUS BUFFER 3ST QUAD 14SO
Datasheet
Sample
ECAD Module ECAD
rohs

Shipping Information

Shipped from HK warehouse
Expected Shipping Date
Ship today if order in (HKT)
Supplier Lead-Time Call for availability
Estimate shipping fee
Enter your destination to get a shipping estimate
Estimate Shipping Fee
Pricing & Ordering $0.1180 Historical reference price : is the price that a customer announces that it is willing to pay for this component in the previous period, only for reference.
Quantity
Unit Price
Ext. Price
345+
$0.1460
$50.370
835+
$0.1200
$100.200
1,295+
$0.1160
$150.220
1,790+
$0.1120
$200.480
2,295+
$0.1090
$250.155
3,095+
$0.0970
$300.215
* The above prices does not include taxes and freight rates, which will be calculated on the order pages.
Availability: 5,980 pieces
MOQ: 345 pcs
Order Increment : 1 pcs
*Need More Quantity? *Request a Bulk Quantity Quotation?
Estimate shipping
Enter your destination to get a shipping estimate

*

Products specifications

Categories Integrated Circuits
Manufacturer Texas Instruments
Packaging Reel - TR
Status Active
Logic Type Buffer, Non-Inverting
Number of Elements 4
Number of Bits per Element 1
Output Type Push-Pull
Current - Output High, Low 2.6mA, 24mA
Supply Voltage - Operating 4.75 V to 5.25 V
Temperature Range - Operating 0°C to 70°C (TA)
Mounting SMD (SMT)
Case / Package 14-SOP
Win Source Part Number 065541-SN74LS126ANSR
Popularity Medium
Fake Threat In the Open Market 62 pct.
Supply and Demand Status Balance
Application Field Used in Industrial

Description

The SN74LS126ANSR is a high-performance, advanced integrated circuit (IC) from Texas Instruments, a renowned global semiconductor company. This product is a part of the company's extensive and diverse portfolio of semiconductor solutions, designed to cater to the evolving needs of modern electronic applications. The SN74LS126ANSR is a quadruple bus buffer gate with 3-state outputs. It is designed with the Schottky barrier (low-power Schottky) process, which is a variant of the transistor-transistor logic (TTL). This technology is widely appreciated for its low power consumption and high switching speed, making it ideal for a variety of applications. This product features four independent gates, each of which performs the Boolean function Y = A in positive logic. A key feature of this IC is its 3-state outputs, which can be independently controlled. This means the outputs can be set to either a normal logic level (high or low) or a high impedance state. In the high impedance state, the output effectively 'disconnects' from the circuit, preventing any interference with other components. The SN74LS126ANSR is designed to operate over a recommended VCC range of 4.75 to 5.25 volts, with a maximum limit of 7 volts. It has a typical propagation delay time of 10ns, ensuring fast response times for your applications. The device is also capable of driving 15 LSTTL loads due to the high output current of 24mA. This IC comes in a standard surface-mount package, making it easy to install on printed circuit boards. Its compact size allows for efficient use of space in your designs. Additionally, the SN74LS126ANSR is RoHS compliant, which means it adheres to strict guidelines for the restriction of hazardous substances, ensuring its safety for use. In conclusion, the SN74LS126ANSR from Texas Instruments is a high-quality, reliable choice for your electronic design needs. Its low power consumption, high switching speed, and independent control of 3-state outputs make it a versatile component for a wide range of applications.

Contact Us

You May Also Be Interested in

Top Sellers

Win-Source Footer Image

Cookie Consent Preference Center

When you visit any of our websites, it may store or retrieve information on your browser, mostly in the form of cookies. This information might be about you, your preferences, or your device and is mostly used to make the site work as you expect it to. The information does not usually directly identify you, but it can give you a more personalized experience. Because we respect your right to privacy, you can choose not to allow some types of cookies. Click on the different category headings to find out more and manage your preferences. Please note, blocking some types of cookies may impact your experience of the site and the services we are able to offer.

Manage Consent Preferences

Always Active

These cookies are necessary for the website to function and cannot be switched off in our systems. They are usually only set in response to actions made by you which amount to a request for services, such as setting your privacy preferences, logging in or filling in forms. You can set your browser to block or alert you about these cookies, but some parts of the site will not then work. These cookies do not store any personally identifiable information.

These cookies allow us to count visits and traffic sources so we can measure and improve the performance of our site. They help us to know which pages are the most and least popular and see how visitors move around the site. All information these cookies collect is aggregated and therefore anonymous. If you do not allow these cookies we will not know when you have visited our site, and will not be able to monitor its performance.

These cookies enable the website to provide enhanced functionality and personalisation. They may be set by us or by third party providers whose services we have added to our pages. If you do not allow these cookies then some or all of these services may not function properly.

These cookies are used to make advertising messages more relevant to you and may be set through our site by us or by our advertising partners. They may be used to build a profile of your interests and show you relevant advertising on our site or on other sites. They do not store directly personal information, but are based on uniquely identifying your browser and internet device.