
Allicdata Part #: | MC10H124FNGOS-ND |
Manufacturer Part#: |
MC10H124FNG |
Price: | $ 4.56 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ON Semiconductor |
Short Description: | IC TRNSLTR UNIDIRECTIONAL 20PLCC |
More Detail: | Mixed Signal Translator Unidirectional 1 Circuit 4... |
DataSheet: | ![]() |
Quantity: | 192 |
1 +: | $ 4.56120 |
10 +: | $ 4.42436 |
100 +: | $ 4.33314 |
1000 +: | $ 4.24192 |
10000 +: | $ 4.10508 |
Output Signal: | MECL |
Base Part Number: | 10H124 |
Supplier Device Package: | 20-PLCC (9x9) |
Package / Case: | 20-LCC (J-Lead) |
Mounting Type: | Surface Mount |
Features: | -- |
Operating Temperature: | 0°C ~ 75°C (TA) |
Data Rate: | -- |
Output Type: | Differential |
Series: | 10H |
Input Signal: | TTL |
Channels per Circuit: | 4 |
Number of Circuits: | 1 |
Channel Type: | Unidirectional |
Translator Type: | Mixed Signal |
Part Status: | Active |
Packaging: | Tube |
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The MC10H124FNG is a device specifically designed as a logic-translators, level-shifters and arbitration logic. Constructed and designed by ON Semiconductor, the MC10H124FNG is designed to enable throughput in high speed data transmission and communication systems which are operating on two different voltage platforms.
The integrated architecture of this device offers it the ability of not only being able to transfer digital data signals across two different voltage plains, but also as a way to enable arbitration between two or more digital signals travelling from one circuit to another.
It can also be used in a Non-Isolated Data transceiver networks. The MC10H124FNG is an ideal solution in avoiding need for Multi-Voltage Logic families and keeping the need for multiple power supplies minimal.
The MC10H124FNG should be considered for use when the need for increasing performance speeds, can’t be achieved with traditional, stand-alone logic level translators.
The device works on the principle that all of its input , and output signals are derived from a single voltage, Vcc , and all differences between the input and output signals, are converted in a differential logic configuration.
The MC10H124FNG is designed to be incorporated into a high speed data transmitting systems, that require the ability to transfer digital data across multiple voltage plains, without distorting the signal integrity.
The device is designed to handle up to four data channels, through its four finite state machines, with a maximum operating frequency of 25MHz and 10nS tPLH and 10ns tPHL .to ensure high speed data throughput.
Depending on the application requirements, the device can also be set up to can be used to support single ended , bi-directional , open drain and CMOS for transmitting data.
The MC10H124FNG utilizes advanced technology and built-in-circuit hardware to provide users a cost-effective and efficient way to transfer high speed data signals, from one signal to another across voltage plains, without risking signal distorting or data loss.
The MC10H124FNG is well suited to applications in a variety of data transmission systems, including automotive applications, consumer products and IoT (Internet of Things.)
This device is partitioned into four independent Finite State Machines (FSMs) for performing level shifting, arbitration and signaling functions simultaneously. Each FSM consists of a defined number of logic gates, which convert the logic levels from one to another, depending on the logic configuration provided as well as the different voltage types supplied to the inputs and outputs.
The main purpose of the device is to immediately provides a stable level shifting circuit and it is designed to function as a two-way transmission circuit, where the input signal is able to be converted to either higher or lower voltage levels depending on the configuration parameters. This allows for a variety of digital data transmissions using the MC10H124FNG in various two-way transmission paths.
The device is also incorporated to help reduce the amount of noise, which helps in returning the original signal integrity; reducing the levels of interference and crosstalk, while also lowering the number of false trips from spurious signals present in the system due to the different voltage levels.
The device also comes with other advantages such as self-correction of data during the transmission process, which helps in the elimination of data transmission errors, as well as a higher operating frequency compared to other similar devices.
Finally, due to its lower power consumption, the device is also suitable for use in battery-operated equipment, such as smartphones and certain medical designs.
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