RS244XTSS20-Q1 is a Replacement parts of
SN74AHC244QPWRQ1
/SN74LVC244AQPWRQ1
/MM74HC244SJ/MM74HC244WM
/MC74HC244ADWR2G/MC74HC244ADWG
/SN74AC244DWR/SN74AC244DW
/SN74ALVC244DWR/SN74ALVC244DW
/SN74LVC244ADWRG4/SN74LVC244ADWR
Mfr.Part No. :
RS244XTSS20-Q1Manufacturer :
RUNICDescription :
Octal Buffer/Driver With 3-State OutputsPackaging :
ReelPackage :
TSSOP20Stock :
in stockPrice :
$0.27-$0.35
RS244XTSS20-Q1
Price: | $0.27-$0.35 | $0.45-$0.55 |
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
|
RS244XTSS20-Q1 |
SN74AHC244QPWRQ1
SN74LVC244AQPWRQ1
MM74HC244SJ
MM74HC244WM
MC74HC244ADWR2G
MC74HC244ADWG
SN74AC244DWR
SN74AC244DW
SN74ALVC244DWR
SN74ALVC244DW
SN74LVC244ADWRG4
SN74LVC244ADWR
SN74LVC244ADWG4
SN74LVC244ADWE4
SN74LVC244ADW
SN74AHC244DWRG4
SN74AHC244DWR
SN74AHC244DWE4
SN74AHC244DW
SN74LV244ADWRG4
SN74LV244ADWR
SN74LV244ADWG4
SN74LV244ADWE4
SN74LV244ADW
SN74AHC244QPWRQ1
SN74LVC244AQPWRQ1
MC74VHC244DR2G
MC74ACT244DR2G
MC74ACT244DG
MC74AC244DR2G
MC74AC244DG
|
Here is a professional comparison of the SN74AHC244QPWRQ1 chip with its competitors:
RS244XTSS20-Q1 vs. SN74AHC244QPWRQ1
The RS244XTSS20-Q1 offers enhanced performance in terms of signal integrity and output drive strength compared to the SN74AHC244QPWRQ1. With optimized propagation delay and consistent output characteristics, the RS244XTSS20-Q1 is better suited for applications requiring fast and reliable signal buffering or line driving.
RS244XTSS20-Q1 vs. SN74LVC244AQPWRQ1
Compared to the SN74LVC244AQPWRQ1, the RS244XTSS20-Q1 provides a balanced performance with lower power consumption and faster switching speeds. This makes it ideal for applications where energy efficiency and high-speed data transmission are critical.
RS244XTSS20-Q1 vs. MM74HC244SJ/MM74HC244WM
The RS244XTSS20-Q1 outperforms the MM74HC244SJ and MM74HC244WM in several key areas. Firstly, it offers faster switching speeds, ensuring quicker response times in high-speed logic circuits. Additionally, the RS244XTSS20-Q1 is more robust in terms of noise immunity, making it more reliable in industrial and automotive environments where electromagnetic interference (EMI) is common.
RS244XTSS20-Q1 vs. MC74HC244ADWR2G/MC74HC244ADWG
When compared to the MC74HC244ADWR2G and MC74HC244ADWG, the RS244XTSS20-Q1 offers a more energy-efficient solution while maintaining faster switching speeds. This ensures that it is not only well-suited for high-speed applications but also ideal for applications that require low power consumption without compromising performance.
RS244XTSS20-Q1 vs. SN74AC244DWR/SN74AC244DW
In comparison to the SN74AC244DWR and SN74AC244DW, the RS244XTSS20-Q1 offers better noise immunity and signal integrity, which is essential for industrial control systems, automotive applications, and environments with significant electromagnetic interference. The SN74AC244DWR and SN74AC244DW, while solid, do not provide the same level of protection against noise and can experience more signal degradation in noisy environments.
RS244XTSS20-Q1 vs. SN74ALVC244DWR/SN74ALVC244DW
The RS244XTSS20-Q1 excels in terms of output drive strength compared to the SN74ALVC244DWR and SN74ALVC244DW. With its higher drive capability, the RS244XTSS20-Q1 ensures that it can drive heavier loads, which is essential for certain industrial and automotive applications requiring higher performance.
RS244XTSS20-Q1 vs. SN74LVC244ADWRG4/SN74LVC244ADWR/SN74LVC244ADWG4/SN74LVC244ADWE4/SN74LVC244ADW
Compared to the SN74LVC244ADWRG4, SN74LVC244ADWR, SN74LVC244ADWG4, SN74LVC244ADWE4, and SN74LVC244ADW, the RS244XTSS20-Q1 offers superior drive strength and faster switching times. While both chips provide efficient power consumption, the RS244XTSS20-Q1 goes a step further in delivering faster performance without compromising on power efficiency.
RS244XTSS20-Q1 vs. SN74AHC244DWRG4/SN74AHC244DWR/SN74AHC244DWE4/SN74AHC244DW
In comparison to the SN74AHC244DWRG4, SN74AHC244DWR, SN74AHC244DWE4, and SN74AHC244DW, the RS244XTSS20-Q1 offers better noise immunity and signal integrity, which is essential for industrial control systems, automotive applications, and environments with significant electromagnetic interference. The SN74AHC244 series, while solid, do not provide the same level of protection against noise and can experience more signal degradation in noisy environments.
RS244XTSS20-Q1 vs. SN74LV244ADWRG4/SN74LV244ADWR/SN74LV244ADWG4/SN74LV244ADWE4/SN74LV244ADW
The RS244XTSS20-Q1 outperforms the SN74LV244ADWRG4, SN74LV244ADWR, SN74LV244ADWG4, SN74LV244ADWE4, and SN74LV244ADW in several key areas. Firstly, it offers faster switching speeds, ensuring quicker response times in high-speed logic circuits. Additionally, the RS244XTSS20-Q1 is more robust in terms of noise immunity, making it more reliable in industrial and automotive environments where electromagnetic interference (EMI) is common.
RS244XTSS20-Q1 vs. MC74VHC244DR2G
Compared to the MC74VHC244DR2G, the RS244XTSS20-Q1 offers a balanced performance with lower power consumption and faster switching speeds. This makes it ideal for applications where energy efficiency and high-speed data transmission are critical.
RS244XTSS20-Q1 vs. MC74ACT244DR2G/MC74ACT244DG
When compared to the MC74ACT244DR2G and MC74ACT244DG, the RS244XTSS20-Q1 offers a more energy-efficient solution while maintaining faster switching speeds. This ensures that it is not only well-suited for high-speed applications but also ideal for applications that require low power consumption without compromising performance.
RS244XTSS20-Q1 vs. MC74AC244DR2G/MC74AC244DG
In comparison to the MC74AC244DR2G and MC74AC244DG, the RS244XTSS20-Q1 offers better noise immunity and signal integrity, which is essential for industrial control systems, automotive applications, and environments with significant electromagnetic interference. The MC74AC244 series, while solid, do not provide the same level of protection against noise and can experience more signal degradation in noisy environments.
Conclusion
The RS244XTSS20-Q1 stands out among its competitors by offering superior performance in terms of signal integrity, output drive strength, and power efficiency. Its robust design ensures reliable operation in industrial and automotive environments, making it an ideal choice for applications requiring high-speed data transmission and energy efficiency.
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