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C11 数据表(PDF) 19 Page - ams-OSRAM AG |
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C11 数据表(HTML) 19 Page - ams-OSRAM AG |
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19 / 72 page ![]() AS3688 austriami crosyst ems Datasheet, Confidential www.austriamicrosystems.com (ptr,tje) Revision 1.1.1 / 20060707 17 - 70 DCDC Control 2 Addr: 22h This register controls the Step Up DC/DC Converter and low-voltage current sinks CURR3x. Bit Bit Name Default Access Description 3 stepup_lowcur 1 R/W Step Up DC/DC Converter coil current limit. 0 = .Normal current limit 1 = Current limit reduced by approx. 33% 4 curr1_prot_on 0 R/W 0 = No overvoltage protection 1 = Pull down current on CURR1 switched on, if voltage on CURR1 exceeds 13.75V, and step_up_on=1 5 curr2_prot_on 0 R/W 0 = No overvoltage protection 1 = Pull down current on CURR1 switched on, if voltage on CURR1 exceeds 13.75V, and step_up_on=1 7 step_up_fb_auto 0 R/W 0 = step_up_fb select the feedback of the DCDC converter 1 = The feedback is automatically chosen within the current sinks CURR1and CURR2 (never DCDC_FB). Only those are used for this selection, which are enabled (currX_mode must not be 00) and not connected to the charge pump (currX_on_cp must be 0). Don’t use automatic feedback selection together with external PWM for CURR1 or CURR2. 7.3 Charge Pump The Charge Pump uses two external flying capacitors C6, C7 to generate output voltages higher than the battery voltage. There are three different operating modes of the charge pump itself: 1:1 Bypass Mode − Battery input and output are connected by a low-impedance switch (0.5Ω ); − battery current = output current. 1:1.5 Mode − The output voltage is up to 1.5 times the battery voltage (without load), but is limited to VCPOUTmax all the time − battery current = 1.5 times output current. 1:2 Mode − The output voltage is up to 2 times the battery voltage (without load), but is limited to VCPOUTmax all the time − − battery current = 2 times output current As the battery voltage decreases, the Charge Pump must be switched from 1:1 mode to 1:1.5 mode and eventually in 1:2 mode in order to provide enough supply for the current sinks. Depending on the actual current the mode with best overall efficiency can be automatically or manually selected: Examples: Battery voltage = 3.7V, LED dropout voltage = 3.5V. The 1:1 mode will be selected and there is 100mV drop on the current sink and on the Charge Pump switch. Efficiency 95%. Battery voltage = 3.5V, LED dropout voltage = 3.5V. The 1:1.5 mode will be selected and there is 1.5V drop on the current sink and 250mV on the Charge Pump. Efficiency 66%. Battery voltage = 3.8V, LED dropout voltage = 4.5V (Camera Flash). The 1:2 mode can be selected and there is 600mV drop on the current sink and 2.5V on the Charge Pump. Efficiency 60%. The efficiency is dependent on the LED forward voltage given by: Eff=(V_LED*Iout)/(Uin*Iin) |
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