Zenode.ai Logo
SN74LS283D - https://ti.com/content/dam/ticom/images/products/package/d/d0016a.png

SN74LS283D

Active
Texas Instruments

4-BIT BINARY FULL ADDERS WITH FAST CARRY

Deep-Dive with AI

Search across all available documentation for this part.

SN74LS283D - https://ti.com/content/dam/ticom/images/products/package/d/d0016a.png

SN74LS283D

Active
Texas Instruments

4-BIT BINARY FULL ADDERS WITH FAST CARRY

Deep-Dive with AI

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationSN74LS283DSN74LS283 Series
Logic TypeBinary Full Adder with Fast CarryBinary Full Adder with Fast Carry
Mounting TypeSurface MountSurface Mount, Through Hole
Number of Bits44
Operating Temperature [Max]70 ░C70 ░C
Operating Temperature [Min]0 °C0 °C
Package / Case16-SOIC16-SOIC, 16-DIP
Package / Case3.9 mm Width, 0.154 in0.154 - 7.62 mm Width
Supplier Device Package16-SOIC16-SOIC, 16-PDIP
Supply Voltage [Max]5.25 V5.25 V
Supply Voltage [Min]4.75 V4.75 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

SN74LS283 Series

4-Bit Binary Full Adders With Fast Carry

PartOperating Temperature [Max]Operating Temperature [Min]Package / CasePackage / CaseLogic TypeSupplier Device PackageNumber of BitsSupply Voltage [Max]Supply Voltage [Min]Mounting Type
Texas Instruments
SN74LS283D
The '283 and 'LS283 adders are electrically and functionally identical to the '83A and 'LS83A, respectively; only the arrangement of the terminals has been changed. The 'S283 high performance versions are also functionally identical. These improved full adders perform the addition of two 4-bit binary words. The sum () outputs are provided for each bit and the resultant carry (C4) is obtained from the fourth bit. These adders feature full internal look-ahead across all four bits generating the carry term in ten nanoseconds, typically, for the '283 and 'LS283, and 7.5 nanoseconds for the 'S283. This capability provides the system designer with partial look-ahead performance at the economy and reduced package count of a ripple-carry implementation. The adder logic, including the carry, is implemented in its true form. End around carry can be accomplished without the need for logic or level inversion. Series 54, Series 54LS, and Series 54S circuits are characterized for operation over the full temperature range of -55°C to 125°C. Series 74, Series 74LS, and Series 74S circuits are characterized for 0°C to 70°C operation. The '283 and 'LS283 adders are electrically and functionally identical to the '83A and 'LS83A, respectively; only the arrangement of the terminals has been changed. The 'S283 high performance versions are also functionally identical. These improved full adders perform the addition of two 4-bit binary words. The sum () outputs are provided for each bit and the resultant carry (C4) is obtained from the fourth bit. These adders feature full internal look-ahead across all four bits generating the carry term in ten nanoseconds, typically, for the '283 and 'LS283, and 7.5 nanoseconds for the 'S283. This capability provides the system designer with partial look-ahead performance at the economy and reduced package count of a ripple-carry implementation. The adder logic, including the carry, is implemented in its true form. End around carry can be accomplished without the need for logic or level inversion. Series 54, Series 54LS, and Series 54S circuits are characterized for operation over the full temperature range of -55°C to 125°C. Series 74, Series 74LS, and Series 74S circuits are characterized for 0°C to 70°C operation.
70 ░C
0 °C
16-SOIC
0.154 in, 3.9 mm Width
Binary Full Adder with Fast Carry
16-SOIC
4
5.25 V
4.75 V
Surface Mount
Texas Instruments
SN74LS283N
The '283 and 'LS283 adders are electrically and functionally identical to the '83A and 'LS83A, respectively; only the arrangement of the terminals has been changed. The 'S283 high performance versions are also functionally identical. These improved full adders perform the addition of two 4-bit binary words. The sum () outputs are provided for each bit and the resultant carry (C4) is obtained from the fourth bit. These adders feature full internal look-ahead across all four bits generating the carry term in ten nanoseconds, typically, for the '283 and 'LS283, and 7.5 nanoseconds for the 'S283. This capability provides the system designer with partial look-ahead performance at the economy and reduced package count of a ripple-carry implementation. The adder logic, including the carry, is implemented in its true form. End around carry can be accomplished without the need for logic or level inversion. Series 54, Series 54LS, and Series 54S circuits are characterized for operation over the full temperature range of -55°C to 125°C. Series 74, Series 74LS, and Series 74S circuits are characterized for 0°C to 70°C operation. The '283 and 'LS283 adders are electrically and functionally identical to the '83A and 'LS83A, respectively; only the arrangement of the terminals has been changed. The 'S283 high performance versions are also functionally identical. These improved full adders perform the addition of two 4-bit binary words. The sum () outputs are provided for each bit and the resultant carry (C4) is obtained from the fourth bit. These adders feature full internal look-ahead across all four bits generating the carry term in ten nanoseconds, typically, for the '283 and 'LS283, and 7.5 nanoseconds for the 'S283. This capability provides the system designer with partial look-ahead performance at the economy and reduced package count of a ripple-carry implementation. The adder logic, including the carry, is implemented in its true form. End around carry can be accomplished without the need for logic or level inversion. Series 54, Series 54LS, and Series 54S circuits are characterized for operation over the full temperature range of -55°C to 125°C. Series 74, Series 74LS, and Series 74S circuits are characterized for 0°C to 70°C operation.
70 ░C
0 °C
16-DIP
0.3 in, 7.62 mm
Binary Full Adder with Fast Carry
16-PDIP
4
5.25 V
4.75 V
Through Hole

Description

General part information

SN74LS283 Series

The '283 and 'LS283 adders are electrically and functionally identical to the '83A and 'LS83A, respectively; only the arrangement of the terminals has been changed. The 'S283 high performance versions are also functionally identical.

These improved full adders perform the addition of two 4-bit binary words. The sum () outputs are provided for each bit and the resultant carry (C4) is obtained from the fourth bit. These adders feature full internal look-ahead across all four bits generating the carry term in ten nanoseconds, typically, for the '283 and 'LS283, and 7.5 nanoseconds for the 'S283. This capability provides the system designer with partial look-ahead performance at the economy and reduced package count of a ripple-carry implementation.

The adder logic, including the carry, is implemented in its true form. End around carry can be accomplished without the need for logic or level inversion.