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Solutions Search - LT3571 - 75V DC/DC Converter for APD Bias

3.3V to 50V Low Noise APD Bias Power Supply

Jan 22nd 2009
The LT3571 is a current mode step-up DC/DC converter designed to bias avalanche photodiodes (APDs) in optical receivers with an output voltage up to 75V. The LT3571 features a high side fi xed voltage drop APD current monitor with better than 10% relative accuracy over the entire temperature range. The integrated power switch, ...

Circuit 

 

5V to 45V Low Noise APD Bias Power Supply

Jan 22nd 2009
The LT3571 is a current mode step-up DC/DC converter designed to bias avalanche photodiodes (APDs) in optical receivers with an output voltage up to 75V. The LT3571 features a high side fi xed voltage drop APD current monitor with better than 10% relative accuracy over the entire temperature range. The integrated power switch, ...

Circuit 

 

5V to 50V Low Noise APD Bias Power Supply with Temperature Compensation

Jan 22nd 2009
The LT3571 is a current mode step-up DC/DC converter designed to bias avalanche photodiodes (APDs) in optical receivers with an output voltage up to 75V. The LT3571 features a high side fixed voltage drop APD current monitor with better than 10% relative accuracy over the entire temperature range. The integrated power switch, ...

Circuit 

 

3.3V to 50V Low Noise APD Bias Supply With Ultrafast Current Monitor Transient Speed

Jan 22nd 2009
The LT3571 is a current mode step-up DC/DC converter designed to bias avalanche photodiodes (APDs) in optical receivers with an output voltage up to 75V. The LT3571 features a high side fixed voltage drop APD current monitor with better than 10% relative accuracy over the entire temperature range. The integrated power switch, ...

Circuit 

 

5V to 69V Low Noise APD Bias Supply with Soft-Start

Jan 22nd 2009
The LT3571 is a current mode step-up DC/DC converter designed to bias avalanche photodiodes (APDs) in optical receivers with an output voltage up to 75V. The LT3571 features a high side fi xed voltage drop APD current monitor with better than 10% relative accuracy over the entire temperature range. The integrated power switch, ...

Circuit