Features: `Adjustable output voltage`Available in 8-pin surface mount`Guaranteed 0.5A gate drive current`Supply voltage up to 40V`150 kHz fixed frequency internal oscillator`TTL shutdown capability`Low power standby mode, IQ typically <85 A`Thermal shutdown and current limit protectionApplicati...
LM2688: Features: `Adjustable output voltage`Available in 8-pin surface mount`Guaranteed 0.5A gate drive current`Supply voltage up to 40V`150 kHz fixed frequency internal oscillator`TTL shutdown capability`...
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If Military/Aerospace specified devices are required,please contact the National Semiconductor Sales Office/ Distributors for availability and specifications.
Maximum Supply Volatge ................................45V
ON/OFF Pin Input Voltage .......−0.3V V +25V
Feedback Pin Voltage ..............−0.3V V +25V
Output Voltage to Ground(Steady State)....... −1V
Power Dissipation Internally Limited
Storage Temperature Range... −65°C to +150°C
ESD Susceptibility
Human Body Model (Note 2)........................... 2 kV
The LM2688 is a low-cost non-synchronous voltage-mode PWM controller which maintains an accurate and adjustable
output voltage for high current, low voltage DC/DC applications such as the Pentium microprocessor family. By using different combinations of feedback resistors, the regulator output voltage can be precisely adjusted to match different
requirements. Coming in an 8-lead surface mount package,the LM2688 can be used to control a buck regulator with an load current up to 10A. An on-chip precision trimmed reference allows tight voltage regulation and an internal 150 kHz fixed-frequency oscillator eliminates extra components to set the switching frequency. The LM2688 also provides an ON/OFF pin which enables the CPU to shutdown the regulator when necessary. Self protection features include a two stage current limit for the output switch and an over temperature shutdown for complete protection under fault conditions. The controller also provides internal loop gain compensation,minimizing the number of external components.