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AD5539 Datasheet(PDF) 13 Page - Analog Devices

Part # AD5539
Description  Ultrahigh Frequency Operational Amplifier
PDF  16 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD5539 Datasheet(HTML) 13 Page - Analog Devices

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AD5539
–13–
REV. B
APPLICATIONS SUMMARY CHART
GAIN
3 dB
R1
R2
1
RLAG
CLAG
2
CLEAD
2
GAIN
FLATNESS
BANDWIDTH
(TRIMMED)
Gain = –1 to –5
Circuit of Fig. 17
R2
G
2 k
≤
R1
4
R1
R2
–1
≥
1
2
π 44 × 106
()R
LAG
≈
3pF
G
–2
±0.2 dB
200 MHz
Gain = –1 to –5
Circuit of Fig. 23
R2
G
2 k
≤
R1
4
R1
R2
–1
≥
1
2
π 44 × 106
()R
LAG
≈
3pF
G
–2
±1 dB
180 MHz
Gain = +2 to +5
3
Circuit of Fig. 27
R2
G –1
2 k
≤
R1
10
R1
R2
–1
≥
1
2
π 44 × 106
()R
LAG
≈
3 pF
G –1
+3
±1 dB
390 MHz
Gain = +2 to +5
4
Circuit of Fig. 29
R2
G –1
2 k
≤
R1
10
R1
R2
–1
NA
≈
3 pF
G –1
+3
±0.5 dB
340 MHz
Gain < –5
R2
G
1.5 k
NA
NA
Trimmer
5
–20
±0.2 dB
80 MHz
Gain > +5
R2
G –1
1.5 k
NA
NA
Trimmer
5
+20
±0.2 dB
80 MHz
NOTES
G = Gain
NA = Not Applicable
1Values given for specific results summarized here—applications can be adapted for values different than those specified.
2It is recommended that C
LEAD and CLAG be trimmers covering a range that includes the computed value above.
3R
SOURCE ≥ 200 Ω.
4R
SOURCE ≥ 50 Ω.
5Use Voltronics CPA2 0.1–2.5 pF Teflon Trimmer Capacitor (or equivalent).
The photos of Figures 40 and 41 demonstrate how the AD5539
easily settles to 1% (1 mV) in less than 12 ns; settling to 0.1%
(100
µV) requires less than 25 ns.
Figure 40. Error Signal from AD5539 Settling Time Test
Circuit – Falling Edge. Vertical Scale: 5 ns/div.; Horizontal
Scale: 500
µV/div
Figure 41. Error Signal from AD5539 Settling Time Test
Circuit – Rising Edge. Vertical Scale: 5 ns/div.; Horizontal
Scale: 500
µV/div
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