MM74HC157SJ ON Semiconductor MULTIPLEXER QUAD 2-INP 16-SOP
Integraallülitused (IC-d)
Tootja number:
MM74HC157SJ
Tootja:
Tootekategooria:
Kirjeldus:
MULTIPLEXER QUAD 2-INP 16-SOP
RoHs olek:

Andmetabelid:
Ahel :
4 x 2:1
Osa olek :
Obsolete
Paigaldustüüp :
Surface Mount
Pakend/ümbris :
16-SOIC (0.209", 5.30mm Width)
Pakendamine :
Tube
Pinge – toide :
2 V ~ 6 V
seeria :
74HC
Sõltumatud vooluringid :
1
Tarnija seadmepakett :
16-SOP
Töötemperatuur :
-40°C ~ 85°C
Tüüp :
Multiplexer
Vool – väljund kõrge, madal :
5.2mA, 5.2mA
Pinge toiteallikas :
Single Supply
Laos
56,133
Ühiku hind:
Võtke meiega ühendust Pakkumine
MM74HC157SJ Konkurentsivõimelised hinnad
ChipIcil on ainulaadne tarneallikas. Pakume oma klientidele MM74HC157SJ konkurentsivõimelise hinnaga. Saate nautida meie parimat teenust, ostes ChipIc MM74HC157SJ. Parima hinna saamiseks saidil MM74HC157SJ võtke meiega ühendust.
Hinnapakkumise saamiseks klõpsake
MM74HC157SJ Iseärasused
MM74HC157SJ is produced by ON Semiconductor, belongs to Loogika – signaali lülitid, multiplekserid, dekoodrid.
MM74HC157SJ Toote üksikasjad
:
MM74HC157SJ – Loogika – signaali lülitid, multiplekserid, dekoodrid disainitud puhvervõimendid ja toodetud ON Semiconductor.
MM74HC157SJ, mida pakub ON Semiconductor, saab osta CHIPMLCC-st.
Siit leiate erinevaid juhtivate tootjate elektroonilisi osi rahu.
CHIPMLCC MM74HC157SJ on range kvaliteedikontrolliga ja nõuetele vastav kõike nõuetele.
CHIPMLCC-s näidatud fondi staatus on ainult viitamiseks.
Kui te ei leia otsitavat osa, võtke meiega ühendust lisateavet, näiteks varude arvu andmetabelis MM74HC157SJ (PDF), hind MM74HC157SJ, Pinout MM74HC157SJ, manuaal MM74HC157SJ Ja MM74HC157SJ asenduslahendus.
MM74HC157SJ, mida pakub ON Semiconductor, saab osta CHIPMLCC-st.
Siit leiate erinevaid juhtivate tootjate elektroonilisi osi rahu.
CHIPMLCC MM74HC157SJ on range kvaliteedikontrolliga ja nõuetele vastav kõike nõuetele.
CHIPMLCC-s näidatud fondi staatus on ainult viitamiseks.
Kui te ei leia otsitavat osa, võtke meiega ühendust lisateavet, näiteks varude arvu andmetabelis MM74HC157SJ (PDF), hind MM74HC157SJ, Pinout MM74HC157SJ, manuaal MM74HC157SJ Ja MM74HC157SJ asenduslahendus.
MM74HC157SJ FAQ
:
1. What is the function of the MM74HC157SJ semiconductor?
The MM74HC157SJ is a high-speed CMOS (Complementary Metal-Oxide-Semiconductor) device that serves as a quad 2-input multiplexer. It selects four bits of data from two sources using common select inputs.
2. What are the key features of the MM74HC157SJ?
This semiconductor offers low power consumption, high noise immunity, and balanced propagation delays. It operates over a wide voltage range and is compatible with TTL levels.
3. What is the maximum operating frequency of the MM74HC157SJ?
The MM74HC157SJ can operate at a maximum frequency of 50 MHz, making it suitable for high-speed applications.
4. What is the input voltage range for the MM74HC157SJ?
The input voltage range for this semiconductor is typically 0 to VCC, where VCC is the supply voltage.
5. Can the MM74HC157SJ handle multiple supply voltages?
Yes, the MM74HC157SJ is designed to be tolerant of variations in supply voltage, making it versatile for different system requirements.
6. What is the output drive capability of the MM74HC157SJ?
The MM74HC157SJ has a high output drive capability, allowing it to effectively drive both standard and low-power TTL loads.
7. Is the MM74HC157SJ sensitive to electrostatic discharge (ESD)?
To ensure reliability, the MM74HC157SJ is designed to have ESD protection on all pins, minimizing the risk of damage due to ESD events.
8. What is the operating temperature range of the MM74HC157SJ?
The MM74HC157SJ is specified to operate within the industrial temperature range of -40°C to 85°C, making it suitable for a wide range of environments.
9. Can the MM74HC157SJ be used in battery-powered applications?
Yes, the low power consumption characteristics of the MM74HC157SJ make it well-suited for battery-powered devices and other energy-efficient applications.
10. Are there any specific layout considerations for using the MM74HC157SJ in a circuit design?
When incorporating the MM74HC157SJ into a circuit, it's important to follow recommended PCB layout guidelines to minimize noise and ensure proper signal integrity. Additionally, attention should be given to proper decoupling and grounding techniques to optimize performance.
I hope this information is helpful!
The MM74HC157SJ is a high-speed CMOS (Complementary Metal-Oxide-Semiconductor) device that serves as a quad 2-input multiplexer. It selects four bits of data from two sources using common select inputs.
2. What are the key features of the MM74HC157SJ?
This semiconductor offers low power consumption, high noise immunity, and balanced propagation delays. It operates over a wide voltage range and is compatible with TTL levels.
3. What is the maximum operating frequency of the MM74HC157SJ?
The MM74HC157SJ can operate at a maximum frequency of 50 MHz, making it suitable for high-speed applications.
4. What is the input voltage range for the MM74HC157SJ?
The input voltage range for this semiconductor is typically 0 to VCC, where VCC is the supply voltage.
5. Can the MM74HC157SJ handle multiple supply voltages?
Yes, the MM74HC157SJ is designed to be tolerant of variations in supply voltage, making it versatile for different system requirements.
6. What is the output drive capability of the MM74HC157SJ?
The MM74HC157SJ has a high output drive capability, allowing it to effectively drive both standard and low-power TTL loads.
7. Is the MM74HC157SJ sensitive to electrostatic discharge (ESD)?
To ensure reliability, the MM74HC157SJ is designed to have ESD protection on all pins, minimizing the risk of damage due to ESD events.
8. What is the operating temperature range of the MM74HC157SJ?
The MM74HC157SJ is specified to operate within the industrial temperature range of -40°C to 85°C, making it suitable for a wide range of environments.
9. Can the MM74HC157SJ be used in battery-powered applications?
Yes, the low power consumption characteristics of the MM74HC157SJ make it well-suited for battery-powered devices and other energy-efficient applications.
10. Are there any specific layout considerations for using the MM74HC157SJ in a circuit design?
When incorporating the MM74HC157SJ into a circuit, it's important to follow recommended PCB layout guidelines to minimize noise and ensure proper signal integrity. Additionally, attention should be given to proper decoupling and grounding techniques to optimize performance.
I hope this information is helpful!
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