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LTM4686BEVPBF 数据表(PDF) 15 Page - Analog Devices |
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LTM4686BEVPBF 数据表(HTML) 15 Page - Analog Devices |
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15 / 130 page ![]() LTM4686B 15 Rev. 0 For more information www.analog.com PIN FUNCTIONS (terminated to SGND) introduce high frequency roll off of the error-amplifier response, yielding good noise rejection in the control loop. See COMP0b/COMP1b. VOSNS0– (E7): Channel 0 Negative Differential Voltage Sense Input. See VOSNS0+. VORB0– (E8): Channel 0 Negative Readback Pin. Shorted to VOSNS0– internal to the LTM4686B. If desired, place a test point on this node and measure its impedance to GND on one’s hardware (e.g., motherboard, during ICT post-assembly process) to provide a means of verifying the integrity of the feedback signal connection between VOSNS0– and GND (VOUT0 power return). RUN0, RUN1 (F3 and F4, Respectively): Enable Run Input for Channels 0 and 1, Respectively. Open-drain input and output. Logic high on these pins enables the respective outputs of the LTM4686B. These open-drain output pins hold the pin low until the LTM4686B is out of reset and SVIN is detected to exceed VIN_ON. A pull-up resistor to 3.3V is required in the application. Do not pull RUN logic high with a low impedance source. SGND (F5–F6, G5–G6): Channel 1 Negative Voltage Sense Input. See VOSNS1. Additionally, SGND is the signal ground return path of the LTM4686B. If desired, one may place a test point on one of the four SGND pins and measure its imped- ance to GND on one’s hardware (e.g., motherboard, during ICT post-assembly process) to provide a means of verify- ing the integrity of the feedback signal connection between the other three SGND pins and GND (VOUT1 power return). SGND is not electrically connected to GND internal to the LTM4686B. Connect SGND to GND local to the LTM4686B. INTVCC (F7,G7):ControlCircuitandMOSFETDriverBiasPin. Always connect to SVIN. No external decoupling is required. SVIN (F9): Input Supply for LTM4686B’s Internal Control IC. In most applications, SVIN connects to VIN0 and/or VIN1, in which case no external decoupling beyond that already allocated for VIN0/VIN1 is required. If SVIN is oper- ated from an auxiliary supply separate from VIN0/VIN1, decouple this pin to GND with a capacitor (0.1μF to 1μF). ASEL (G2): Serial Bus Address Configuration Pin. On any given I2C/SMBus serial bus segment, every device must have its own unique slave address. If this pin is left open, the LTM4686B powers up to a slave address set by MFR_ADDRESS[6:0] (see Table 5). The factory- default setting is 0x4F (hexadecimal), i.e., 1001111b (industry standard convention is used throughout this document: 7-bit slave addressing). The lower four bits of the LTM4686B’s slave address can be altered from the NVM-set value by connecting a resistor from this pin to SGND. Minimize capacitance—especially when the pin is left open—to assure accurate detection of the pin state. VOUT0CFG (G3): Output Voltage Select Pin for VOUT0, Coarse Setting. If the VOUT0CFG and VTRIM0CFG pins are both left open—or, if the LTM4686B is configured to ignore pin- strap (RCONFIG) resistors, i.e., MFR_CONFIG_ALL[6] = 1b—then the LTM4686B’s target VOUT0 output voltage set- ting (VOUT_COMMAND0) and associated power-good and OV/UV warning and fault thresholds are dictated at SVIN power-up according to the LTM4686B’s NVM contents. A resistor* connected from this pin to SGND—in combi- nation with resistor pin settings on VTRIM0CFG, and using the factory-default NVM setting of MFR_CONFIG_ALL[6] = 0b—can be used to configure the LTM4686B’s Channel 0 output to power-up to a VOUT_COMMAND value (and associated output voltage monitoring and protection/fault- detection thresholds) different from those of NVM contents. (See the Applications Information section.) Connecting resistor(s) from VOUT0CFG to SGND and/or VTRIM0CFG to SGND in this manner allows a convenient way to configure multiple LTM4686Bs with identical NVM contents for dif- ferent output voltage settings—all without GUI interven- tion or the need to “custom-pre-program” module NVM contents. Minimize capacitance—especially when the pin is left open—to assure accurate detection of the pin state. Note that use of RCONFIGs* on VOUT0CFG/VTRIM0CFG can affect the VOUT0 range setting (MFR_PWM_MODE0[1]) and loop gain. VOUT1CFG (G4): Output Voltage Select Pin for VOUT1, Coarse Setting. If the VOUT1CFG and VTRIM1CFG pins are both left open—or, if the LTM4686B is configured to ignore pin-strap (RCONFIG) resistors, i.e., MFR_CONFIG_ ALL[6] = 1b—then the LTM4686B’s target VOUT1 output voltage setting (VOUT_COMMAND1) and associated OV/ *In applications where VOUT0 and VOUT1 are paralleled, the respective VOUTnCFG and VTRIMnCFG pin-pairs can be electrically connected together; common RCONFIG resistors can be applied, whose values are half of what is prescribed in Table 2 and Table 3. See Figure 35, for example. |
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