
Allicdata Part #: | NLV14066BDR2-ND |
Manufacturer Part#: |
NLV14066BDR2 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ON Semiconductor |
Short Description: | IC MULTIPLEXER QUAD 4X1 14SOIC |
More Detail: | 4 Circuit IC Switch 1:1 280 Ohm 14-SOIC |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Switch Time (Ton, Toff) (Max): | -- |
Base Part Number: | NLV14066B |
Supplier Device Package: | 14-SOIC |
Package / Case: | 14-SOIC (0.154", 3.90mm Width) |
Operating Temperature: | -55°C ~ 125°C (TA) |
Crosstalk: | -- |
Current - Leakage (IS(off)) (Max): | 100nA |
Channel Capacitance (CS(off), CD(off)): | 7.5pF |
Charge Injection: | -- |
-3db Bandwidth: | 65MHz |
Series: | Automotive, AEC-Q100 |
Voltage - Supply, Dual (V±): | -- |
Voltage - Supply, Single (V+): | 3 V ~ 18 V |
Channel-to-Channel Matching (ΔRon): | 10 Ohm |
On-State Resistance (Max): | 280 Ohm |
Number of Circuits: | 4 |
Multiplexer/Demultiplexer Circuit: | 1:1 |
Switch Circuit: | SPST - NO |
Part Status: | Obsolete |
Packaging: | Tape & Reel (TR) |
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The NLV14066BDR2 is a high-speed, low-on-resistance single 2:1 multiplexer that is designed with state-of-the-art BiCMOS technology to switch a low-level differential signal from a single source channel to two different output channels. The multiplexers feature a wide frequency response from DC to 12.6 GHz, and are ideal for a variety of applications including video multiplexing, high-speed communication switching, and high-fidelity audio splitting.
The NLV14066BDR2 is an analog multiplexer with two independent control voltage inputs, VSELA and VSELB, and two single-ended output ports, OA and OB. The multiplexer can be configured to select the output port either by controlling the logic state of VSELA and VSELB, or by controlling the voltage applied to each port independently.
The device has a low-on-resistance of 12.5 ohms, making it suitable for systems with high bandwidth requirements. The high input impedance and low power consumption enable the NLV14066BDR2 to be used in a variety of applications with minimal power consumption. In addition, the multiplexers are offered in an HTSSOP-20 package, which enables easy mounting and requires no additional circuitry or components.
In terms of applications, the NLV14066BDR2 can be used in a variety of applications that require multiplexing, such as high-speed communication switching, audio/video switching, and high-fidelity audio splitting. It is also ideal for radio-frequency switching, allowing the multiplexing of several radio-frequency signals. It is most suitable for applications where the input signal is low-level differential, such as communication systems, video switching, and audio systems.
In terms of its working principle, the NLV14066BDR2 is an analog multiplexer with two independent control voltage inputs, VSELA and VSELB, and two single-ended output ports, OA and OB. The multiplexer can be configured to select the output port either by controlling the logic state of VSELA and VSELB, or by controlling the voltage applied to each port independently. When the control voltage is applied, it switches the input signal from one line to the other. The on-resistance of the device is 12.5 ohms, which is insignificant compared to the input impedance, allowing the device to be used in a variety of high-bandwidth applications without loss of signal strength. In addition, the device has a low power consumption, making it suitable for applications where power consumption is a critical factor.
In summary, the NLV14066BDR2 is a high-speed, low-on-resistance single 2:1 multiplexer that is designed with state-of-the-art BiCMOS technology to switch a low-level differential signal from a single source channel to two different output channels. The device is suitable for a variety of high-bandwidth applications including video multiplexing, high-speed communication switching, and high-fidelity audio splitting. The high input impedance and low power consumption make it ideal for applications where power consumption is a critical factor.
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