SN74HCT240NSR

Texas Instruments
595-SN74HCT240NSR
SN74HCT240NSR

Mfr.:

Description:
Buffers & Line Drivers 8-ch 4.5V to 5.5V i nverters with TTL-co

ECAD Model:
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In Stock: 1,259

Stock:
1,259 Can Dispatch Immediately
Factory Lead Time:
6 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
₹-.--
Ext. Price:
₹-.--
Est. Tariff:
Packaging:
Full Reel (Order in multiples of 2000)

Pricing (INR)

Qty. Unit Price
Ext. Price
Cut Tape / MouseReel™
₹79.20 ₹79.20
₹56.75 ₹567.50
₹51.16 ₹1,279.00
₹44.91 ₹4,491.00
₹42.02 ₹10,505.00
₹40.16 ₹20,080.00
₹39.97 ₹39,970.00
Full Reel (Order in multiples of 2000)
₹37.46 ₹74,920.00
₹36.43 ₹1,45,720.00
† A MouseReel™ fee of ₹475.00 will be added and calculated in your basket. All MouseReel™ orders are non-cancellable and non-returnable.

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Buffers & Line Drivers
RoHS:  
HCT
8 Input
8 Output
Inverting
SOP-20
- 6 mA
6 mA
8 uA
4.5 V
5.5 V
80 uA
- 40 C
+ 85 C
SMD/SMT
Reel
Cut Tape
MouseReel
Brand: Texas Instruments
Logic Type: CMOS
Number of Channels: 8 Channel
Output Type: 3-State
Product Type: Buffers & Line Drivers
Propagation Delay Time: 42 ns at 4.5 V
Series: SN74HCT240
Factory Pack Quantity: 2000
Subcategory: Logic ICs
Unit Weight: 266.700 mg
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Compliance Codes
CNHTS:
8542399000
CAHTS:
8542390000
USHTS:
8542390090
JPHTS:
8542390990
TARIC:
8542399000
MXHTS:
85423999
ECCN:
EAR99
Origin Classifications
Country of Origin:
Malaysia
Assembly Country of Origin:
Not available
Country of Diffusion:
Not available
The country is subject to change at the time of shipment.

SN74HCT240 Octal Buffers/Line Drivers

Texas Instruments SN74HCT240 Octal Buffers/Line Drivers are explicitly designed to improve the performance and density of clock drivers, 3-state memory address drivers, and bus-oriented receivers and transmitters. The Texas Instruments SN74HCT240 devices are organized as two 4-bit buffers/drivers with separate output-enable (OE) inputs. When OE is high, the outputs are in the high-impedance state. When OE is low, the device passes inverted data from the A inputs to the Y outputs.