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AD8363ACPZ-WP(Rev0) 데이터 시트보기 (PDF) - Analog Devices

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AD8363ACPZ-WP
(Rev.:Rev0)
ADI
Analog Devices ADI
AD8363ACPZ-WP Datasheet PDF : 36 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
AD8363
6
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.51V
5
2
4
1
3
0
2
–1
1
–2
0
–60
–50 –40
–30
–20
–10
0
PIN (dBm)
–3
10
Figure 9. VOUT and Log Conformance Error with Respect to 25°C Ideal Line
over Temperature vs. Input Amplitude at 1.90 GHz, CW, Typical Device
6
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.51V
5
REPRESENTS 35 DEVICES
2
FROM 3 LOTS
4
1
3
0
2
–1
1
–2
0
–60
–50 –40
–30
–20
–10
0
PIN (dBm)
–3
10
Figure 10. Distribution of VOUT and Error with Respect to 25°C Ideal Line over
Temperature vs. Input Amplitude at 1.90 GHz, CW
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.51V
2
REPRESENTS 35 DEVICES FROM 3 LOTS
1
0
–1
–2
–3
–60
–50 –40
–30
–20
–10
0
10
PIN (dBm)
Figure 11. Distribution of Error with Respect to 25°C over Temperature vs.
Input Amplitude at 1.90 GHz, CW
6
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.6V
5
2
4
1
3
0
2
–1
1
–2
0
–60
–50 –40
–30
–20
–10
0
PIN (dBm)
–3
10
Figure 12. VOUT and Log Conformance Error with Respect to 25°C Ideal Line
over Temperature vs. Input Amplitude at 2.14 GHz, CW, Typical Device
6
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.6V
5
REPRESENTS 35 DEVICES
2
FROM 3 LOTS
4
1
3
0
2
–1
1
–2
0
–60
–50 –40
–30
–20
–10
0
PIN (dBm)
–3
10
Figure 13. Distribution of VOUT and Error with Respect to 25°C Ideal Line over
Temperature vs. Input Amplitude at 2.14 GHz, CW
3
INHI INPUT
VTCM1 = 0.52V, VTCM2 = 0.6V
2
REPRESENTS 35 DEVICES
FROM 3 LOTS
1
0
–1
–2
–3
–60
–50 –40
–30
–20
–10
0
10
PIN (dBm)
Figure 14. Distribution of Error with Respect to 25°C over Temperature vs.
Input Amplitude at 2.14 GHz, CW
Rev. 0 | Page 10 of 36

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