Features: `High CMV Isolation: 2500 V rms Continuous 3500 V Peak Continuous`Small Size: 1.00 3 2.10 3 0.350 `Three-Port Isolation: Input, Output, and Power`Low Nonlinearity: 60.012% max`Wide Bandwidth: 20 kHz Full-Power (3 dB)`Low Gain Drift: 625 ppm/8C max`High CMR: 120 dB (G = 100 V/V)`Isolate...
AD210: Features: `High CMV Isolation: 2500 V rms Continuous 3500 V Peak Continuous`Small Size: 1.00 3 2.10 3 0.350 `Three-Port Isolation: Input, Output, and Power`Low Nonlinearity: 60.012% max`Wide Bandw...
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# Ports/Ch | 3 |
Supply Voltage (V) | +15V |
Supply Current (max) | 50mA |
Input Range (V) | ±10V |
Isolation Rejection (dB) | 120dB |
Bandwidth G = 1 (kHz) | 20kHz |
Output Amplifier | X |
Nonlinearity (%) | 0.012% |
Temperature Range (°C) | -25 to +85 |
The AD210 is the latest member of a new generation of low cost, high performance isolation amplifiers. This three-port, wide bandwidth isolation amplifier is manufactured with surface- mounted components in an automated assembly process.
The AD210 combines design expertise with state-of-the-art manufacturing technology to produce an extremely compact and economical isolator whose performance and abundant user features far exceed those offered in more expensive devices.
The AD210 provides a complete isolation function with both signal and power isolation supplied via transformer coupling internal to the module. The AD210's functionally complete design, powered by a single +15 V supply, eliminates the need for an external DC/DC converter, unlike optically coupled isolation devices. The true three-port design structure permits the AD210 to be applied as an input or output isolator, in single or multichannel applications. The AD210 will maintain its high performance under sustained common-mode stress. Providing high accuracy and complete galvanic isolation, the AD210 interrupts ground loops and leakage paths, and rejects common-mode voltage and noise that may other vise degrade measurement accuracy. In addition, the AD210 provides protection from fault conditions that may cause damage to other sections of a measurement system.