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ADP1052ACPZ-R7 датащи(PDF) 10 Page - Analog Devices |
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ADP1052ACPZ-R7 датащи(HTML) 10 Page - Analog Devices |
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10 / 113 page ![]() ADP1052 Data Sheet Rev. B | Page 10 of 113 PIN CONFIGURATION AND FUNCTION DESCRIPTIONS 2 1 3 4 5 6 18 17 16 15 14 13 CS1 VF CS2+ CS2– VS+ VS– SYNI/FLGI SCL SDA CTRL PG/ALT VCORE NOTES 1. FOR INCREASED RELIABILITY OF THE SOLDER JOINTS AND MAXIMUM THERMAL CAPABILITY, IT IS RECOMMENDED THAT THE EXPOSED PAD BE SOLDERED TO THE PCB AGND PLANE. ADP1052 TOP VIEW Figure 3. Pin Configuration Table 4. Pin Function Descriptions Pin No. Mnemonic Description 1 VS− Inverting Voltage Sense Input. This pin is the connection for the ground line of the power rail. Provide a low ohmic connection to AGND. To allow for trimming, it is recommended that the resistor divider on this input have a tolerance specification of ≤0.5%. 2 VS+ Noninverting Voltage Sense Input. This pin signal is referred to VS−. To allow for trimming, it is recommended that the resistor divider on this input have a tolerance specification of ≤0.5%. 3 CS2− Inverting Differential Current Sense Input. For best operation, use a nominal voltage of 1.12 V with this pin. When using low-side current sensing, place a 4.99 kΩ level shifting resistor between the sense resistor and this pin. When using high-side current sensing in a 12 V application, place a 5.62 kΩ resistor between the sense resistor and this pin. When using high-side current sensing, apply the formula R = (VOUT − 1.12 V)/1.915 mA. A 0.1% resistor must be used to connect this circuit. If this pin is not used, connect it to AGND and set the CS2 current sense to high-side current sense mode (Register 0xFE19[7] = 1 binary). 4 CS2+ Noninverting Differential Current Sense Input. For best operation, use a nominal voltage of 1.12 V with this pin. When using low-side current sensing, place a 4.99 kΩ level shifting resistor between the sense resistor and this pin. When using high-side current sensing in a 12 V application, place a 5.62 kΩ resistor between the sense resistor and this pin. When using high-side current sensing, apply the formula R = (VOUT − 1.12 V)/1.915 mA. A 0.1% resistor must be used to connect this circuit. If this pin is not used, connect it to AGND and set the CS2 current sense to high-side current sense mode (Register 0xFE19[7] = 1 binary). 5 VF Feedforward/Voltage Sense/UVLO Protection. Three optional functions can be implemented with this pin: feedforward, primary side input voltage sensing, and input voltage UVLO protection. This pin is connected upstream of the output inductor through a resistor divider network. The nominal voltage at this pin should be 1 V. This signal is referred to AGND. 6 CS1 Primary Side Current Sense Input. This pin is connected to the primary side current sensing ADC and to the cycle- by-cycle current-limit comparator. This signal is referred to AGND. The resistors on this input must have a tolerance specification of ≤0.5% to allow for trimming. When not in use, connect this pin to AGND. 7 SR1 PWM Logic Output Drive. This signal is referred to AGND. When not in use, disable this pin. 8 SR2 PWM Logic Output Drive. This signal is referred to AGND. When not in use, disable this pin. 9 OUTA PWM Logic Output Drive. This signal is referred to AGND. When not in use, disable this pin. 10 OUTB PWM Logic Output Drive. This signal is referred to AGND. When not in use, disable this pin. 11 OUTC PWM Logic Output Drive. This signal is referred to AGND. This pin can also be programmed as a synchronization signal output (SYNO). When not in use, disable this pin. 12 OUTD PWM Logic Output Drive. This signal is referred to AGND. This pin can also be programmed as a synchronization signal output (SYNO). When not in use, disable this pin. 13 SYNI/FLGI Synchronization Signal Input/External Signal Input to Generate a Flag Condition. When not in use, connect this pin to AGND. 14 SCL I2C/PMBus Serial Clock Input and Output (Open-Drain). This signal is referred to AGND. 15 SDA I2C/PMBus Serial Data Input and Output (Open-Drain). This signal is referred to AGND. 16 CTRL PMBus Control Signal. It is recommended that a 1 nF capacitor be connected from the CTRL pin to AGND for noise debounce and decoupling. This signal is referred to AGND. |
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