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74ALVC164245ZRDR
+StücklisteIC TRNSLTR BIDIRECTIONAL 54BGA
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HerstellerTexas Instruments
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Herstellerteil #74ALVC164245ZRDR
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Paket BGA-MICROSTAR-JUNIOR-54
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Auf Lager3461
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Spezifikationen
| Attribut | Wert |
| Package / Case | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | 74ALVC |
| Part Status | Obsolete |
| Translator Type | Voltage Level |
| Channel Type | Bidirectional |
| Number of Circuits | 2 |
| Channelsper Circuit | 8 |
| Voltage - VCCA | 2.3 V ~ 3.6 V |
| Voltage - VCCB | 3 V ~ 5.5 V |
| Output Type | Tri-State, Non-Inverted |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Mounting Type | Surface Mount |
Übersicht
Description
Its key features include direction control for data flow management, high-speed operation, and low power consumption. The transceiver's ability to handle up to 16-bits simultaneously ensures efficient data handling in complex systems. The device is available in a variety of packages, including the compact Reel, which is suited for space-constrained applications.
Engineered with advanced CMOS technology, the 74ALVC164245ZRDR provides robust signal integrity and noise margin, making it suitable for various communication, computing, and consumer electronics applications. The device also includes built-in power-off protection circuitry, enhancing its reliability in power-down conditions.
Equivalent
1. SN74ALVC164245 by Texas Instruments
2. 74LVCH164245 by Nexperia
3. MC74LVX16245 by ON Semiconductor
These alternatives are selected based on similar functionality, voltage levels, and bus transceiver capabilities. Always verify compatibility with your application requirements before substitution.
Features
1. Dual Supply Voltage Levels: Designed to operate in mixed-voltage environments, with V_CC(A) ranging from 1.65V to 3.6V and V_CC(B) from 1.2V to 3.6V.
2. High-Speed Operation: Features advanced low-voltage CMOS technology for fast signal transmission.
3. 3-State Outputs: Allows for multiplexed connections and reduces power consumption when the device is not in use.
4. OE and DIR Control: Output enable (OE) and direction (DIR) pins manage data flow direction and enable isolation of buses.
5. Bus Hold Capability: Eliminates the need for pull-up or pull-down resistors on unused inputs.
6. Overvoltage Tolerance: Inputs can tolerate voltages up to 3.6V, regardless of the V_CC level.
7. Packaged in TSSOP: Offers a compact form factor suitable for space-constrained applications.
This component is ideal for applications requiring level shifting, data buffering, and bus interface solutions in consumer electronics and computing devices.
Pinout
The device is packaged in a 96-pin Ball Grid Array (BGA) package. It features two separate power supplies: VCC(A) and VCC(B), which allow the device to interface between different voltage nodes. The transceiver includes three-state outputs to provide bus control during data transfer and direction control pins to determine the direction of data flow between the buses.
The main functions of the 74ALVC164245ZRDR include:
- 16-bit bidirectional data communication between buses.
- Voltage level translation between differing logic levels.
- Low power consumption and high-speed operation suitable for battery-powered and portable applications.
For detailed pin configuration and specific electrical characteristics, referring to the datasheet provided by the manufacturer is recommended.
Manufacturer
Application
1. Data Communication Systems: Facilitates data transfer between components operating on different voltage levels.
2. Microcontroller and Microprocessor Interfaces: Provides voltage level translation for peripheral interfacing.
3. Consumer Electronics: Used in devices needing communication between components with varying voltage requirements, such as smartphones and tablets.
4. Networking Equipment: Supports voltage level adaptation in switches and routers.
5. Industrial Automation: Ensures compatibility between sensors/controllers with different voltage specifications.
Its high-speed operation and low-power consumption make it ideal for modern electronic applications requiring efficient data transfer.