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LVDS Interface ICs

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SN65LVDS047DG4
Rochester Electronics
Differential 0 4 3.6V 250MHz Single ended 400Mbps SOIC-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
122+ $2.5584
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x $2.5584
Ext. Price: $312.12
MOQ: 122
Mult: 122
SPQ: 1
FIN1027K8X
Rochester Electronics
0 600Mbps SMD mount
Quantity: 0
Ship Date: 7-12 working days
377+ $0.832
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x $0.832
Ext. Price: $313.66
MOQ: 377
Mult: 377
SPQ: 1
SN65LVDS050DR
Rochester Electronics
2 100Mbps SOIC-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
121+ $2.5896
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x $2.5896
Ext. Price: $313.34
MOQ: 121
Mult: 121
SPQ: 1
SN65LVDS1DG4
Rochester Electronics
0 630Mbps SOIC-8 SMD mount
Quantity: 0
Ship Date: 7-12 working days
204+ $1.5392
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x $1.5392
Ext. Price: $313.99
MOQ: 204
Mult: 204
SPQ: 1
SN65LVDS051DR
Rochester Electronics
2 100Mbps SOIC-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
132+ $2.3712
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x $2.3712
Ext. Price: $312.99
MOQ: 132
Mult: 132
SPQ: 1
SN65LVDS048D
Rochester Electronics
4 SOIC-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
213+ $1.4664
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x $1.4664
Ext. Price: $312.34
MOQ: 213
Mult: 213
SPQ: 1
SN65MLVD207DR
Rochester Electronics
1 200Mbps SOIC-14 SMD mount
Quantity: 0
Ship Date: 7-12 working days
163+ $1.924
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x $1.924
Ext. Price: $313.61
MOQ: 163
Mult: 163
SPQ: 1
FIN1026MTC
Rochester Electronics
2 400Mbps TSSOP-14 SMD mount
Quantity: 0
Ship Date: 7-12 working days
258+ $1.2064
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x $1.2064
Ext. Price: $311.25
MOQ: 258
Mult: 258
SPQ: 1
SN65LVDS048ADR
Rochester Electronics
4 400Mbps SOIC-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
174+ $1.7992
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x $1.7992
Ext. Price: $313.06
MOQ: 174
Mult: 174
SPQ: 1
SN65LVDS050PWR
Rochester Electronics
2 400Mbps TSSOP-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
121+ $2.5896
- +
x $2.5896
Ext. Price: $313.34
MOQ: 121
Mult: 121
SPQ: 1
SN65LVDS050IPWRQ1
Rochester Electronics
2 400Mbps TSSOP-16 SMD mount
Quantity: 0
Ship Date: 7-12 working days
107+ $2.9224
- +
x $2.9224
Ext. Price: $312.69
MOQ: 107
Mult: 107
SPQ: 1

LVDS Interface ICs

Low Voltage Differential Signaling (LVDS) Integrated Circuit (IC)

Definition:
LVDS ICs are specialized electronic components designed to transmit high-speed data over long distances with minimal power consumption and electromagnetic interference (EMI). They operate on the principle of differential signaling, where data is transmitted as a voltage difference between two wires, rather than a single-ended voltage level.

Function:
The primary function of LVDS ICs is to serialize and deserialize data for transmission across differential pairs. They convert parallel data into a differential signal for transmission and then de-serialize the signal back into parallel data at the receiving end. This method is highly efficient for high-speed data transfer, as it reduces signal degradation and noise susceptibility.

Applications:
LVDS ICs are widely used in various applications due to their robustness and efficiency:
1. Display Technology: They are crucial in connecting processors to displays in devices like TVs, monitors, and smartphones, ensuring high-quality video and image transmission.
2. Telecommunications: Used in high-speed data links for communication equipment, facilitating the transfer of large amounts of data with minimal latency.
3. Automotive: LVDS ICs are employed in infotainment systems and advanced driver assistance systems (ADAS) for reliable data communication.
4. Industrial Automation: They ensure precise control and in industrial settings through robust data transmission.
5. Medical Equipment: LVDS ICs are used for transmitting high-resolution images and data in medical imaging and diagnostic devices.

Selection Criteria:
When selecting an LVDS IC, consider the following criteria:
1. Data Rate: Ensure the IC can handle the required data transfer speeds for the application.
2. Power Consumption: Choose an IC that offers low power consumption to extend battery life in portable devices.
3. EMI Resistance: Look for ICs with strong resistance to electromagnetic interference for reliable operation in noisy environments.
4. Distance Capability: Select an IC that can support the required transmission distance without signal degradation.
5. Integration Level: Consider the level of integration with other functions, such as serdes (serializer/deserializer), to minimize the number of components needed.
6. Compatibility: Ensure the IC is compatible with the existing system architecture and protocols.
7. Reliability and Quality: Choose ICs from reputable manufacturers with a proven track record for reliability and quality assurance.

In summary, LVDS ICs are essential for high-speed, low-power, and reliable data communication in a variety of electronic systems. Their selection should be based on the specific requirements of the application, including data rate, power consumption, and environmental factors.
Please refer to the product rule book for details.