In Stock : 0
Please send RFQ , we will respond immediately.
![](/static/public/images/kenko_Certif02.png)
![](/static/public/images/kenko_Certif07.png)
![](/static/public/images/kenko_Certif03.png)
![](/static/public/images/kenko_Certif04.png)
![](/static/public/images/kenko_Certif08.png)
![](/static/public/images/kenko_Certif10.png)
![](/static/public/images/kenko_Certif09.png)
![](/static/public/images/kenko_Certif05.png)
![](/static/public/images/kenko_Certif06.png)
NB4L16MMNG Specifications
-
TypeParameter
-
Supplier Device Package16-QFN (3x3)
-
Package / Case16-VFQFN Exposed Pad
-
Mounting TypeSurface Mount
-
Features-
-
Operating Temperature-40°C ~ 85°C (TA)
-
Data Rate5Gbps
-
Output TypeDifferential
-
Output SignalCML
-
Input SignalCML, HSTL, LVCMOS, LVDS, LVPECL, LVTTL
-
Channels per Circuit1
-
Number of Circuits1
-
Channel TypeUnidirectional
-
Translator TypeMixed Signal
-
PackagingTube
-
PackagingBulk
-
Product StatusActive
-
Series-
The SN74ALVCH16500DGGR is a 16-bit universal bus transceiver with 3-state outputs, which is designed for asynchronous communication between buses that could be operating at different voltage levels. Here are some advantages and application scenarios of this integrated circuit chip:1. Voltage level shifting: One key advantage of the SN74ALVCH16500DGGR is its ability to translate signals between different voltage levels. It can handle signals from 1.2V to 3.6V on the A or B side and 1.65V to 5.5V on the direction control pin (DIR). This makes it useful in scenarios where communication between devices with different voltage levels is required.2. Bidirectional communication: The chip supports bidirectional data transfer between the A and B ports, allowing data to flow in both directions. This makes it suitable for applications where data needs to be transmitted and received between devices.3. 3-state outputs: The SN74ALVCH16500DGGR has 3-state outputs which enable it to disconnect from the bus when not actively driving it. This feature is beneficial when multiple devices are connected to a bus; it allows a device to be effectively turned off and avoids contention on the bus.4. High-speed operation: The chip operates at high speeds, making it suitable for applications that require fast data transfer, such as high-speed communication protocols or data buses.5. Control signal flexibility: The DIR pin controls the direction of data flow, allowing for easy control of data transmission. This flexibility is advantageous in systems where data transfer needs to be controlled dynamically.Application scenarios:1. Voltage level translation: The SN74ALVCH16500DGGR can be used to interface devices operating at different voltage levels, such as microcontrollers and sensors, enabling seamless communication between them.2. Multiple bus communication: In systems with multiple buses operating at different voltage levels, this chip can serve as a bridge to enable communication between them.3. Data buffering: The 3-state outputs of the SN74ALVCH16500DGGR make it suitable for use as a buffer to isolate multiple devices connected to a bus. This prevents contention on the bus and ensures efficient data transfer.4. Field programmable gate array (FPGA) interfacing: The chip can be utilized to interface an FPGA with other devices operating at different voltage levels, enhancing the flexibility and compatibility of the overall system.Overall, the SN74ALVCH16500DGGR integrated circuit chip offers voltage level shifting, bidirectional communication, high-speed operation, and 3-state outputs, making it suitable for a range of applications requiring effective signal translation and data transfer between different voltage level buses.
NB4L16MMNG Relevant information
-
NL3X5004MU2TAG
onsemi -
NL3X5004DR2G
onsemi -
NL3X5004DTR2G
onsemi -
V62/22604-01XE
Texas Instruments -
NCA9701GXX
Nexperia USA Inc. -
MAX14591ETA+
Analog Devices Inc./Maxim Integrated -
SN74AVCA164245DGG
Texas Instruments -
74AVC1T45DBVR
Texas Instruments -
74AVC1T45DEAR
Texas Instruments -
SN74LVC1T45DCKR-P
Texas Instruments