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CD4504BE
+NomenclatureTTL/CMOS TO CMOS TRANSLATOR
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FabricantSociété Harris
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Pièce fabricant #CD4504BE
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Fiche technique CD4504BE DataSheet
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Package PDIP-16
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En stock6773
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Spécifications
| Attribut | Valeur |
| Package / Case | Tube |
| Series | 4000B |
| Part Status | Obsolete |
| Translator Type | Voltage Level |
| Channel Type | Unidirectional |
| Number of Circuits | 1 |
| Channelsper Circuit | 6 |
| Voltage - VCCA | 5 V ~ 15 V |
| Voltage - VCCB | 5 V ~ 15 V |
| Output Type | Non-Inverted |
| Operating Temperature | -55°C ~ 125°C (TA) |
| Mounting Type | Through Hole |
Présentation
Description
Key features of the CD4504BE include:
1. Voltage Translation: It translates input voltages from one range to another, typically from a lower CMOS level to a higher TTL level or vice versa.
2. Wide Supply Range: The device operates over a broad range of supply voltages, generally from 3V to 15V, allowing flexibility in applications.
3. Low Power Consumption: Like most CMOS devices, it consumes minimal power, making it suitable for battery-powered applications.
4. Compatibility: It is compatible with CMOS, TTL, and other logic families, facilitating its use in a variety of digital circuits.
5. Temperature Range: It operates in the temperature range of -55°C to +125°C, suitable for industrial environments.
The CD4504BE is commonly used in digital logic level translation, data routing, and signal interfacing applications.
Equivalent
1. MC14504 from ON Semiconductor
2. TC4504 from Toshiba
3. HEF4504B from Nexperia
4. MM74C901 from Fairchild Semiconductor (now part of ON Semiconductor)
5. HCF4504 from STMicroelectronics
These chips serve similar functions, enabling interfacing between different logic levels. Always check the specific datasheets for compatibility with your requirements.
Features
1. Voltage Level Shifting: It can translate input logic levels from one voltage to another, typically from 5V to 3V or vice versa, making it suitable for interfacing between devices with different voltage requirements.
2. Wide Operating Voltage Range: The device supports a supply voltage range from 3V to 15V, allowing flexibility in various applications.
3. High Noise Immunity: The CD4504BE offers excellent noise margin due to its CMOS technology, ensuring reliable operation in noisy environments.
4. Low Power Consumption: As a CMOS device, it consumes less power compared to TTL logic circuits, which is advantageous for battery-powered applications.
5. Six Independent Channels: The IC contains six independent level shifters, enabling multiple signal translations within a single package.
6. Compatible with Standard Logic Families: It can interface with both TTL and CMOS logic families, providing versatility in mixed-signal environments.
These features make the CD4504BE suitable for applications requiring voltage level translation and interfacing between different logic level systems.
Pinout
Here's a brief overview of its pin configuration and functions:
1. Pin 1 (VDD): Positive supply voltage for the input section.
2. Pin 2-7 (A1-A6): Inputs for level shifting.
3. Pin 8 (GND): Ground connection.
4. Pin 9-14 (Y1-Y6): Outputs corresponding to inputs A1-A6, shifted to the output section voltage level.
5. Pin 15 (VCC): Positive supply voltage for the output section.
6. Pin 16 (VSS): Ground reference voltage for the input section.
The CD4504BE is useful in applications requiring interfacing between circuits operating at different voltage levels, ensuring compatibility and reliable data transmission across the interface.
Manufacturer
TI is a prominent player in the technology sector and has a reputation for innovation and high-quality products. The company focuses on analog chips and embedded processors, but it also provides other types of electronic components and tools like calculators, microcontrollers, and software. Texas Instruments is considered one of the largest semiconductor companies globally and has a significant impact on the electronics market due to its extensive product range and technological advancements.
Application
1. Logic Level Translation: It is used to convert voltage levels between different logic families, such as TTL to CMOS, ensuring compatibility.
2. Microcontroller Interfacing: Facilitates communication between microcontrollers operating at different voltage levels.
3. Mixed-Voltage Systems: Useful in systems where components operate at different supply voltages, enabling seamless integration.
4. Signal Isolation: Provides isolation between different sections of a system, preserving signal integrity across varied voltage domains.
5. Data Communication: Employed in serial communication interfaces to match voltage levels for reliable data exchange.