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Current generating apparatus and feedback-controlled system utilizing the current generating apparatus

A technology of feedback control system and current generation, applied in the direction of control/regulation system, regulation of electrical variables, instruments, etc., can solve the problems that are difficult to be estimated effectively, reduce the phase margin of low-dropout voltage regulator 10, change, etc.

Inactive Publication Date: 2009-10-14
ANALOG INTEGRATIONS CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

On the other hand, using the above zero point ω ESR to compensate the pole of the low-dropout regulator 10 has at least three disadvantages: First, due to the high-frequency bypass capacitor C gdpass in parallel with capacitor C L Instead, another pole is provided, where the pole is close to the capacitor C L The resulting zero point ω ESR , so the added pole further reduces the phase margin of the LDO 10; second, the capacitor C L The equivalent series resistance R on the ESR It is often difficult to estimate effectively, and it will change with temperature; third, although the increasingly popular ceramic capacitors have low resistance value R ESR , cheaper and more area-saving, but at low resistance values ​​R ESR It is difficult to obtain an appropriate zero point ω in the case of ESR
However, due to the mismatch of the current mirror ratio N between the current mirror circuit 54a and the current mirror circuit 54b, a direct current ΔI will be generated B flow to the feedback resistor R F1 , R F2 , so it will equivalently form a parallel connection with the feedback resistor R F1 and R F2 The mismatch resistor R mismatch (like Image 6 shown), therefore, the mismatch resistance R generated by the mismatch between the current mirror circuit 54a and the current mirror circuit 54b mismatch will change the output voltage V out
Furthermore, when the output voltage V out When changing, the DC current ΔI B It will also change accordingly, and in order to reduce the DC current ΔI B The impact caused, the current mirror ratio N of the current mirror circuit 54a and the current mirror circuit 54b must be as small as possible, and the grounding capacitance C 1 The larger the capacitance value, the better. However, a larger capacitance value will relatively increase the manufacturing cost and chip area.

Method used

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  • Current generating apparatus and feedback-controlled system utilizing the current generating apparatus
  • Current generating apparatus and feedback-controlled system utilizing the current generating apparatus
  • Current generating apparatus and feedback-controlled system utilizing the current generating apparatus

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Embodiment Construction

[0026] Please refer to Figure 7 , Figure 7 It is a schematic diagram of an embodiment of the voltage regulator 100 of the present invention. The voltage regulator 100 is a low dropout voltage regulator 100 (Low dropout voltage regulator), which can track the load current of the voltage regulator 100 to adjust the zero of the voltage regulator 100 . The voltage regulator 100 includes a pass transistor (pass transistor) M p , a voltage divider circuit 101 , an error amplifier 102 , a load current detection circuit 103 and a voltage-controlled current source (Voltage-controlled current source, VCCS) 104 . pass transistor M p It is a P-type transistor (PMOS), which has a source terminal N in connected to a supply voltage V dd , and a drain terminal N out used to generate an output voltage V out . The voltage divider circuit 101 includes two feedback resistors R 1 , R F2 , which are connected in series, where the feedback resistor R F1 Connect one end to the drain term...

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Abstract

The invention discloses a current generating device, which is used to generate an output current. The current generating device includes: a first current mirror circuit; a first bias current generator to generate the first bias current, wherein the first bias current generator includes: a first current source for generating the first current and a capacitor for conducting the reference current; a second current mirror circuit for generating a second current mirror circuit current; a second bias current generator for generating a second current; a third current source is used to generate a third current, wherein the current of the second current mirror circuit is the same as the third current; a feedback circuit; and a fourth current source is used to provide a fourth current, wherein The output current is output at the output end of the first current mirror circuit.

Description

technical field [0001] The present invention relates to a frequency compensation mechanism, and more particularly to a feedback control system (such as a low-dropout voltage regulator) for frequency compensation using a current generating device that minimizes the DC offset in the output current. Background technique [0002] Please refer to figure 1 , figure 1 Shown is a first known low dropout voltage regulator 10 (Low dropout voltage regulator). The LDO regulator 10 includes a pass transistor MP, a feedback divider circuit 11 and an error amplifier 12 . The connection relationship between the transfer transistor MP, the feedback voltage divider circuit 11 and the error amplifier 12 is as follows: figure 1 shown, where the input terminal N of the low dropout regulator 10 in Connected to a power supply voltage VDD, the output terminal N of the low dropout voltage regulator 10 out connected to a load which is equivalent to a resistor R L Connect a capacitor C in parall...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G05F3/26
Inventor 李建龙黄意文
Owner ANALOG INTEGRATIONS CORP