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AD8606ARM-R2 数据表(PDF) 18 Page - Analog Devices |
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AD8606ARM-R2 数据表(HTML) 18 Page - Analog Devices |
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18 / 24 page ![]() AD8605/AD8606/AD8608 Rev. H | Page 18 of 24 I-V CONVERSION APPLICATIONS PHOTODIODE PREAMPLIFIER APPLICATIONS The low offset voltage and input current of the AD8605 make it an excellent choice for photodiode applications. In addition, the low voltage and current noise make the amplifier ideal for application circuits with high sensitivity. RD ID CD 50pF AD8605 VOUT PHOTODIODE VOS RF 10MΩ CF 10pF Figure 51. Equivalent Circuit for Photodiode Preamp The input bias current of the amplifier contributes an error term that is proportional to the value of RF. The offset voltage causes a dark current induced by the shunt resistance of the Diode RD. These error terms are combined at the output of the amplifier. The error voltage is written as B F D F OS O I R R R V E + ⎟⎟ ⎠ ⎞ ⎜⎜ ⎝ ⎛ + = 1 Typically, RF is smaller than RD, thus RF/RD can be ignored. At room temperature, the AD8605 has an input bias current of 0.2 pA and an offset voltage of 100 μV. Typical values of RD are in the range of 1 GΩ. For the circuit shown in Figure 51, the output error voltage is approximately 100 μV at room temperature, increasing to about 1 mV at 85°C. The maximum achievable signal bandwidth is F F t MAX C R f f π 2 = where ft is the unity gain frequency of the amplifier. AUDIO AND PDA APPLICATIONS The low distortion and wide dynamic range of the AD860x make it a great choice for audio and PDA applications, including microphone amplification and line output buffering. Figure 52 shows a typical application circuit for headphone/ line-out amplification. R1 and R2 are used to bias the input voltage at half the supply, which maximizes the signal bandwidth range. C1 and C2 are used to ac couple the input signal. C1, R1, and R2 form a high- pass filter whose corner frequency is 1/[2π(R1||R2)C1]. The high output current of the AD8606 allows it to drive heavy resistive loads. The circuit in Figure 52 is tested to drive a 16 Ω headphone. The THD + N is maintained at approximately −60 dB throughout the audio range. 5V 4 2 3 8 1 HEADPHONES 5V 4 6 5 8 7 C1 1µF V1 500mV 1/2 AD8606 C3 100µF 1/2 AD8606 C4 100µF C2 1µF V2 500mV R1 20kΩ R2 20kΩ R7 20kΩ R8 20kΩ R4 20Ω R3 1kΩ R6 20Ω R5 1kΩ Figure 52. Single-Supply Headphone/Speaker Amplifier |
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