
Allicdata Part #: | MAX4700CWE-ND |
Manufacturer Part#: |
MAX4700CWE |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC SW DUAL 1.25 OHM SPST 16-SOIC |
More Detail: | 2 Circuit IC Switch 1:1 1.25 Ohm 16-SO |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Switch Time (Ton, Toff) (Max): | 275ns, 175ns |
Base Part Number: | MAX4700 |
Supplier Device Package: | 16-SO |
Package / Case: | 16-SOIC (0.295", 7.50mm Width) |
Operating Temperature: | 0°C ~ 70°C (TA) |
Crosstalk: | -65dB @ 1MHz |
Current - Leakage (IS(off)) (Max): | 500pA |
Channel Capacitance (CS(off), CD(off)): | 115pF, 115pF |
Charge Injection: | 550pC |
-3db Bandwidth: | -- |
Series: | -- |
Voltage - Supply, Dual (V±): | ±4.5 V ~ 20 V |
Voltage - Supply, Single (V+): | 4.5 V ~ 36 V |
Channel-to-Channel Matching (ΔRon): | 90 mOhm |
On-State Resistance (Max): | 1.25 Ohm |
Number of Circuits: | 2 |
Multiplexer/Demultiplexer Circuit: | 1:1 |
Switch Circuit: | SPST - NO/NC |
Part Status: | Active |
Packaging: | Tube |
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The MAX4700CWE is a universal switch/multiplexer circuit from Texas Instruments that includes integrated signal conditioning and signal isolation. It is a low-voltage, float-capacitance, signal-matched integrated circuit that is used in a variety of applications including signal buffering, signal conditioning, and signal routing. This circuit is able to provide signal isolation for up to 10 analog signals. Its features make it ideal for use in a wide range of applications ranging from consumer electronics to medical instruments.
The MAX4700CWE belongs to the family of interface – Analog Switches, Multiplexers, Demultiplexers. It can be used in any application that requires an effective solution for signal isolation in order to protect sensitive analog signals. It is designed to provide high levels of noise immunity, signal bandwidth up to 1MHz, low input and output noise, and low power consumption. The circuit also provides high temperature stability, low distortion, and very high isolation voltage.
The working principle of the MAX4700CWE is based on the use of capacitive floats to provide signal isolation between the circuits. This is done by connecting an input signal to the circuit through a capacitor. The capacitor is configurable and can be sized for a wide range of input signals. The capacitor is then connected to an identical capacitor on the output side of the circuit. The capacitors match the transfer impedance of the capacitance for the input and output signals and provide an effective signal isolation between the two.
The circuit also includes other useful features such as an adjustable level detector and an adjustable gain control. The level detector can help to identify when an input signal has reached critical levels and the gain control can help to adjust the level of amplification required for the signal. The circuit also has an adjustable power supply circuit that can help to further reduce power consumption.
In addition to being used in many consumer and industrial applications, the MAX4700CWE is also used in medical applications such as electrocardiography and EEG. These applications require highly accurate measurement and analysis of signals which can be achieved with the help of this circuit. The isolated monitoring of electrical signals can be gained by using this system in an appropriate manner. Its features such as adjustable gain, adjustable power supply, and level detector characteristics make it highly suitable for medical applications.
In summary, the MAX4700CWE is a highly versatile integrated circuit that is able to provide effective signal isolation for up to 10 analog signals. It is able to provide high levels of noise immunity, signal bandwidth up to 1MHz, low input and output noise, and low power consumption in a wide variety of applications. The circuit is also useful for medical applications such as EEG and electrocardiography and its adjustable gain, adjustable power supply, and level detector characteristics makes it highly suitable for such applications.
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