Manufacturer Part #
MC14081BDR2G
MC14081B Series 3 to 18 V Surface Mount CMOS Quad 2-Input AND Gate - SOIC-14
Product Specification Section
onsemi MC14081BDR2G - Product Specification
Shipping Information:
Item cannot ship to certain countries. See List
Item cannot ship to following countries:
ECCN:
EAR99
PCN Information:
N/A
File
Date
Part Status:
Active
Active
onsemi MC14081BDR2G - Technical Attributes
Attributes Table
Logic Circuit: | AND Gate |
No of Functions / Channels: | 4 |
Supply Voltage-Nom: | 3V to 18V |
Power Dissipation: | 500mW |
Propagation Delay: | 50ns |
Operating Temperature: | -55°C to +125°C |
Capacitance: | 5pF |
No of Inputs: | 8 |
No of Outputs: | Quad |
High Level Output Current: | -8.8mA |
Low Level Output Current: | 8.8mA |
No of Pins: | 14 |
Quiescent Current: | 1.5nA |
Moisture Sensitivity Level: | 1 |
Package Style: | SOIC-14 |
Mounting Method: | Surface Mount |
Features & Applications
The MC14081BDR2G is a Quad 2-Input AND Gate constructed with P and N channel enhancement mode devices in a single monolithic structure (Complementary MOS).
Their primary use is where low power dissipation and/or high noise immunity is desired.
Features:
- Supply Voltage Range = 3.0 Vdc to 18 Vdc
- All Outputs Buffered
- Capable of Driving Two Low−power TTL Loads or One Low−power Schottky TTL Load Over the Rated Temperature Range
- Double Diode Protection on All Inputs Except: Triple Diode Protection on MC14011B and MC14081B
- Pin−for−Pin Replacements for Corresponding CD4000 Series B Suffix Devices
- These Devices are Pb−Free and are RoHS Compliant
- NLV Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC−Q100\ Qualified and PPAP Capable
Pricing Section
Global Stock:
387,500
USA:
372,500
Germany (Online Only):
15,000
On Order:
0
Factory Lead Time:
10 Weeks
Quantity
Web Price
2,500
$0.139
5,000
$0.137
10,000
$0.134
12,500
$0.133
37,500+
$0.128
Product Variant Information section
Available Packaging
Package Qty:
2500 per Reel
Package Style:
SOIC-14
Mounting Method:
Surface Mount