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A8603KESTR-R 数据表(PDF) 20 Page - Allegro MicroSystems |
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A8603KESTR-R 数据表(HTML) 20 Page - Allegro MicroSystems |
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20 / 42 page ![]() Multiple-Output Regulator for Automotive LCD Displays A8603 20 Allegro MicroSystems, LLC 115 Northeast Cutoff Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com The A8603 contains an integrated DMOS switch and PWM con- troller to drive a boost converter. The input voltage, VIN, (3.3 V nominal) is boosted to an intermediate voltage, VOUT, which is the lowest voltage required to keep all outputs within regula- Boost Controller tion. The final output voltage is decided by the regulator, which requires the highest boost voltage. This is illustrated in Figure 7. AVDD VGL VGH2 VGH3 -12 -8 -6 -4 -2 0 2 4 68 10 12 14 16 18 20 22 24 26 28 30 -10 0 2 4 6 8 10 12 14 16 18 Boost Voltage = highest of: -VGL + 3.5 V AVDD + 2.1 V VGH/2 + 2.9 V (or VGH/3 + 3.7 V) Figure 7: Boost Voltage Requirement with Respect to VGL, AVDD and VGH For example: assume the output requirements for a certain LCD panel are: VAVDD = 10 V, VVGH = 18 V and VVGL = –7 V, then: • AVDD (LDO): VOUT ≥ VAVDD + 2.1 (V) = 12.1 V • VGH (2× Charge Pump): VOUT ≥ VVGH / 2 + 2.9 (V) = 11.9 V • VGL (Inverted Charge Pump): VOUT ≥ – VVGL + 3.5 (V) = 10.5 V In this example, AVDD has the highest requirement, so the boost output voltage will be regulated at a VOUT = 12.1 V approxi- mately. However, if VVGH were increased to 24 V, it would require higher voltage, and then the boost converter would increase the boost output voltage to 14.9 V to satisfy the 2× charge pump. This leads to higher voltage drop across the linear regulator for AVDD, and hence higher power loss. In such case, it is worthwhile to consider the option of 3× charge pump for VGH. • VGH (2× Charge Pump): VOUT ≥ VVGH / 2 + 2.9 (V) = 14.9 V • VGH (3× Charge Pump): VOUT ≥ VVGH / 3 + 3.7 (V) = 11.7 V So by using 3× charge pump for VGH, the boost voltage is reduced to 12.1 V (as dominated by AVDD). This results in lower power loss and hence better system efficiency. A block diagram of the A8603 boost controller circuit is shown in Figure 8. Typical values for external COMP components are RZ = 511 Ω and CZ = 0.22 µF. Note that the boost stage simply pro- vides an intermediate voltage. The actual output voltages (AVDD, VGL, VGH) are controlled by linear regulators and charge pumps, which contain their own internal compensation. |
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