NL27WZ17DFT2G Standard Logic by ON Semiconductor

Dual Non-Inverting Buffer withSchmitt Trigger Input

Status: Unknown
Series: NL27WZ17
RoHS: Compliant
Download Datasheet Visit Manufacturer Site View Pricing & Stock

The NL27WZ17 is a high performance dual buffer operating from a 1.65 to 5.5 supply. At VCC = 3.0 V, high impedance TTL compatible inputs significantly reduce current loading to input drivers while the TTL compatible outputs offer improved switching noise performance.

Where to Buy

Prices starting from US$0.0214

Distributor Stock
Logo for Future Electronics NA
Future Electronics
from US$0.0456
270,000
in stock
Buy Now
Logo for Avnet America
Avnet America
from US$0.0214
129,000
in stock
Buy Now
Logo for Newark
Newark Electronics
from US$0.0360
5,580
in stock
Buy Now
Logo for element14 Singapore
element14
from US$0.0396
5,580
in stock
Buy Now
Logo for Farnell UK
Farnell
from US$0.0346
5,560
in stock
Buy Now
Logo for EBV Elektronik
EBV Elektronik
-
252,000
in stock
Buy Now
Logo for Avnet Silica
Avnet Silica
-
12,000
in stock
Buy Now
Logo for RS Americas
RS Americas
from US$0.11
0
in stock
Buy Now
Logo for Avnet Asia
Avnet Asia
from US$0.0243
0
in stock
Buy Now
Buy Now

Features

Extremely High Speed: tpd 2.0 ns (typical) at VCC = 5.0 V
Designed for 1.65 V to 5.5 V VCC Operation
Overvoltage Tolerant Inputs
LVTTL Compatible - Interface Capability with 5.0 V TTL Logic with VCC = 3.0 V (2.7-3.3)
LVCMOS Compatible
24 mA Balanced Output Sink and Source Capability at VCC = 3.0 V
Near Zero Static Supply Current Substantially Reduces System Power Requirements
Chip Complexity: FET = 72; Equivalent Gate = 18
Hysteresis at the input for improved noise immunity

Specifications

Compliance Pb-free Halide free

Last 6 months Inventory & Pricing History


Alternative Descriptions

NL Series 5.5 V Surface Mount Dual Non-Inverting Schmitt Trigger Buffer - SC-88 | Future Electronics
Schmitt-Trigger Buffer, Dual, Sc-88-6 | Newark Electronics
SCHMITT-TRIGGER BUFFER, DUAL, SC-88-6 | element14
NL27WZ17DFT2G, DUAL SCHMITT TRIGGER SINGLE ENDED BUFFER,1.65 TO 5.5V,6-PIN SC-88 | RS Americas


Frequently Asked Questions

Where can I find additional details, specifications and documents for a NL27WZ17DFT2G?

Additional datasheets, footprints and schematics for NL27WZ17DFT2G are listed on our Part Details page. You can also find images and similar parts to NL27WZ17DFT2G on this page.

What pricing and inventory information can I view?

Distributor pricing and stock information is available for NL27WZ17DFT2G on our Product Comparison page. Access via the 'View Pricing & Stock' button to view NL27WZ17DFT2G price breaks, MOQs, lead times, inventory and SKUs from distributors.

What category does NL27WZ17DFT2G fall under?

The NL27WZ17DFT2G is listed under Timing, Logic & Memory > Standard Logic > Buffers.

Can I view similar or alternative parts?

You can view similar parts to NL27WZ17DFT2G when available in the Buffers range under the specifications section at the bottom of the details page.

Who can I contact for technical support of the product?

Submit any questions directly to the customer support team of the distributor listing the product. For the NL27WZ17DFT2G you can contact the distributor directly for product support, shipping queries etc.

Is the NL27WZ17DFT2G RoHS compliant?

Yes. This part has been flagged as RoHS Compliant by ON Semiconductor.

Which authorised distributors for NL27WZ17DFT2G have stock available?

Authorised distributors including Future Electronics, Avnet America, Newark Electronics, element14 and Farnell have stock available or on a lead time for NL27WZ17DFT2G.

How do I check stock and lead times for all distributors?

Stock availability and lead times will be displayed for NL27WZ17DFT2G often in real-time on the comparison pages.

What if I can't find stock of NL27WZ17DFT2G?

You can fill out our help required form which you can use to request a quote for NL27WZ17DFT2G from some of our verified obsolescence suppliers. Alternatively, contact us via our web chat in the bottom left of your screen and one of our team will try to help.