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Product Detailed Parameters
- Description:IC TRANSCEIVER 2/0 8SOIC
- Mfr:Fairchild Semiconductor
- Package:Bulk
- Series:-
- Type:Driver
- Protocol:LVDS
- Number of Drivers/Receivers:2/0
- Duplex:-
- Data Rate:600Mbps
- Voltage - Supply:3V ~ 3.6V
- Operating Temperature:-40°C ~ 85°C
- Mounting Type:Surface Mount
- Package / Case:8-SOIC (0.154", 3.90mm Width)
- Supplier Device Package:8-SOIC
- Receiver Hysteresis:-
- Grade:-
- Qualification:-
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Overview
The FIN1027MX is an LVDS transmitter manufactured by onsemi, formerly Fairchild Semiconductor. It features two drivers with LVTTL inputs and LVDS outputs. The device supports a data transmission rate of 600Mbps. It operates within a supply voltage range of 3V to 3.6V. The differential input low threshold voltage is specified at 0.8V. The component is housed in an 8-pin SOIC package with dimensions of 5mm x 4mm x 1.5mm. It functions reliably across an operating temperature range from -40°C to +85°C.
Feature Summary
- Converts LVTTL logic levels to LVDS differential signals for high-speed data transmission
- Integrates two independent drivers within a single compact package
- Designed for low voltage operation compatible with standard logic families
Applications
- High-speed serial communication links requiring LVDS signaling
- Data bus interfaces in industrial and consumer electronics
- Point-to-point or multi-drop connections utilizing LVTTL sources
Procurement Notes
Verify the manufacturer designation as onsemi when sourcing this component, reflecting the corporate acquisition history. Confirm the specific suffix MX corresponds to the SOIC-8 package variant. Ensure compatibility with system power supplies within the 3V to 3.6V operational window. Check for RoHS compliance status relevant to the production batch. Validate pinout configurations against current datasheets to prevent integration errors during PCB assembly.
Selection Notes
Select this component when interfacing LVTTL logic sources with LVDS receivers over moderate distances. Consider the 600Mbps speed limit for bandwidth requirements. Evaluate the 8-pin SOIC footprint against available board space constraints. Assess thermal performance within the specified -40°C to +85°C ambient range. Compare power consumption characteristics against alternative transmitters if energy efficiency is critical.
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