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PC87373 데이터시트(PDF) 124 Page - National Semiconductor (TI) |
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PC87373 데이터시트(HTML) 124 Page - National Semiconductor (TI) |
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124 / 174 page ![]() 9.0 Glue Functions (Continued) 124 www.national.com Revision 1.1 The 3V_DDCSCL and 5V_DDCSCL pins are connected through a switch. This switch is controlled by a Level Translation Control circuit, according to the voltage levels at the 3V_DDCSCL and 5V_DDCSCL pins (for the DC characteristics, see Section 13.2.11 on page 156): q For VIN <VISC at either pin, the switch is closed; therefore, both pins (3V_DDCSCL, and 5V_DDCSCL) are held at low level. q For VIN >VISO at both pins, the switch is open; therefore, each pin is pulled up to high level by the external resistor connected to VDD3 (for the 3V_DDCSCL pin) and to VDD5 (for the 5V_DDCSCL pin). In addition, when the VDD3 power is off, the switch is open, regardless of the voltage levels at the 3V_DDCSCL and 5V_DDCSCL pins. The 3V_DDCSDA and 5V_DDCSDA pins are connected through a similar level translation circuit and behave like 3V_DDCSCL and 5V_DDCSCL. Figure 32 shows a simplified diagram of the circuit that performs SMBus voltage translation. Figure 32. SMBus Voltage Translation (Simplified Diagram) For the AC characteristics, see SMBus Voltage Translation and Isolation Timing on page 172. 9.2.11 SMBus Isolation When the Main power is off, this function performs “passive” bus isolation between the SMB1_SCL, SMB1_SDA signals and the SMB2_SCL, SMB2_SDA signals respectively. The bus isolation enables the operation of the serial bus section connect- ed to Standby power, if the other serial bus is connected to the Main power and the Main power is off. The signals connected to the SMB1_SCL, SMB1_SDA, SMB2_SCL and SMB2_SDA pins are compatible Intel's SMBus (Specification Rev 1.1, Dec. 11, 1998) two-wire synchronous serial interface specifications. The SMB1_SCL and SMB2_SCL pins are connected through a switch. This switch is controlled by the voltage levels at the SMB1_SCL and SMB2_SCL pins (for the DC characteristics, see Section 13.2.11 on page 156): q For VIN <VISC at either pin, the switch is closed; therefore, both pins (SMB1_SCL, and SMB2_SCL) are held at low level. q For VIN >VISO at both pins, the switch is open; therefore, each pin is pulled up to high level by the external resistor connected to VSUP1 (for the SMB1_SCL pin) and to VSUP2 (for the SMB2_SCL pin). In addition, when the Main power supply voltage is not valid (PWRGD_PS = low), the switch is forced open and the unpow- ered SMBx_SCL signal is disconnected from the powered SMBx_SCL signal (x is either 1 or 2). This isolation between the two signals prevents the loading of the powered SMBx_SCL signal by the unpowered SMBx_SCL signal. The SMB1_SDA and SMB2_SDA pins are connected through a similar level isolation circuit and behave like SMB1_SCL and SMB2_SCL. Figure 33 shows a simplified diagram of the circuit that performs SMBus isolation. Figure 33. SMBus Isolation (Simplified Diagram) For the AC characteristics, see SMBus Voltage Translation and Isolation Timing on page 172. 2.2 K Ω 5V_DDCSnn VDD5 Pin 4.7 K Ω 3V_DDCSnn VDD3 Pin Snn = SCL or SDA S Level Control Translation 2.7 K Ω SMB2_Snn VSUP2 (3.3V) Pin 2.7 K Ω SMB1_Snn VSUP1 (3.3V) Pin Snn = SCL or SDA S Control Switch PWRGD_PS |
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