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LT8650SPJVPBF 数据表(PDF) 25 Page - Analog Devices |
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LT8650SPJVPBF 数据表(HTML) 25 Page - Analog Devices |
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25 / 34 page ![]() LT8650SP 25 Rev. B For more information www.analog.com APPLICATIONS INFORMATION Clock Output The CLKOUT pin outputs a clock which can be used to synchronous other regulators to the LT8650SP. In Burst Mode (SYNC pin low), the CLKOUT pin is grounded. In forced continuous mode (SYNC pin float or DC high), the CLKOUT pin outputs a 50% duty cycle clock where the CLKOUT rising edge is approximately 90 degrees phase shifted relative to channel 1. If this CLKOUT waveform is applied to the SYNC pin of another LT8650SP regulator, then four-phase operation can be achieved. If an external clock is applied to the SYNC pin of the LT8650SP, then the CLKOUT pin will output a waveform with the same phasing and duty cycle as the SYNC pin clock. The low and high levels of the CLKOUT pin are ground and VCC,respectively. The drive strength of the CLKOUT pin is several hundred ohms, so the CLKOUT waveform has rise and fall times of several tens of ns. The edge rates will be slower if the CLKOUT trace has extra capacitance. Temperature Monitor Function The TEMP pin will output a voltage proportional to die temperature. The TEMP pin typically outputs 250mV for 25°C and has a slope of 9.5mV/°C. Without the aid of an external circuitry, the TEMP pin output is valid from 20°C to 150°C (200mV to 1.5V). Do not load the TEMP pin with more than 100µA. To extend the TEMP pin output below 20°C, connect a resistor from the TEMP pin to a negative voltage. The TEMP pin can report a higher than actual temperature at high load currents on channel 1, particularly at high temperature, high VIN, and high inductor current ripple. For this reason, the TEMP pin should not be used for ac- tive monitoring or servo loops. As a safeguard, the LT8650SP has an additional thermal shutdown set at a typical value of 165°C. This is an in- dependent circuit from the TEMP pin monitor circuit If the thermal shutdown is exceeded, both channels of the LT8650SP will be shutdown until the thermal overload event expires. It should be noted that the TEMP pin voltage represents the steady-state, average die temperature and should not beusedtoguaranteethatmaximumjunctiontemperatures are not exceeded. Instantaneous power along with ther- mal gradients and time constants may cause portions of the die to exceed maximum ratings. Be sure to calculate die temperature rise for steady state (>1 Min) as well as impulse conditions. Shorted and Reversed Input Protection The LT8650SP will tolerate a shorted output. The bottom switch current is monitored such that if inductor current is beyond safe levels switching of the top switch will be delayed until such time as the inductor current falls to safe levels. Fault condition of one channel will not affect the operation of the other channel, unless the part goes into thermal shutdown. Thereisanothersituationtoconsiderinsystemswherethe output will be held high when the input to the LT8650SP is absent. This may occur in battery charging applications or in battery backup systems where a battery or some other supply is ORed with channel 1’s output. If the VIN1 pin is allowed to float and either EN/UV pin is held high (either by a logic signal or because it is tied to VIN1), then the LT8650SP’sinternalcircuitrywillpullitsquiescentcurrent through its SW1 pin. This is acceptable if the system can tolerate current draw in this state. If both EN/UV pins are grounded the SW1 pin current will drop to near 1.7µA. However, if the VIN1pinisgroundedwhilechannel1output is held high, regardless of EN/UV1, parasitic body diodes inside the LT8650SP can pull current from the output through the SW1 pin and the VIN1 pin, damaging the IC. VIN2 is not connected to the shared internal supply and will not draw any current if left floating. If both VIN1 and VIN2 are floating, regardless of EN/UV pins states, no load will be present at the output of channel 2. However, if the VIN2 pin is grounded while channel 2 output is held high, parasitic body diodes inside the LT8650SP can pull cur- rent from the output through the SW2 pin and the VIN2 pin, damaging the IC. Figure 8 shows a connection of the VIN and EN/UV pins that will allow the LT8650SP to run only when the input voltage is present and that protects against a shorted or reversed input. |
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