AD8000
TYPICAL PERFORMANCE CHARACTERISTICS
3
VS = ±5V
2 RL = 150Ω
VOUT = 200mV p-p
1
G = +1, RF = 432Ω
0
–1
G = +2, RF = 432Ω, RG = 432Ω
–2
–3
G = +10, RF = 357Ω, RG = 40.2Ω
–4
–5
–6
–7
1
10
100
FREQUENCY (MHz)
1000
Figure 5. Small Signal Frequency Response vs. Various Gains
3
VS = ±5V
2 RL = 150Ω
VOUT = 200mV p-p
1
G = –1, RF = RG = 249Ω
0
–1
–2
–3
G = –10, RF = 432Ω, RG = 43.2Ω
–4
–5
G = –2, RF = 432Ω, RG = 215Ω
–6
–7
1
10
100
FREQUENCY (MHz)
1000
Figure 6. Small Signal Frequency Response vs. Various Gains
3
VS = ±5V
2 RL = 150Ω
VOUT = 2V p-p
1
G = +1, RF = 432Ω
0
–1
G = +4, RF = 357Ω, RG = 121Ω
–2
G = +10, RF = 357Ω, RG = 40.2Ω
–3
G = +2, RF = RG = 432Ω
–4
–5
–6
–7
1
10
100
1000
FREQUENCY (MHz)
Figure 7. Large Signal Frequency Response vs. Various Gains
9
RF = 392Ω
6
RF = 432Ω
3
RF = 487Ω
0 VS = ±5V
G = +2
RL = 150Ω
VOUT = 200mV p-p
LFCSP
–3
1
10
100
FREQUENCY (MHz)
1000
Figure 8. Small Signal Frequency Response vs. RF
9
RF = 392Ω
6
RF = 432Ω
3
RF = 487Ω
0 VS = ±5V
G = +2
RL = 150Ω
VOUT = 2V p-p
LFCSP
–3
1
10
100
FREQUENCY (MHz)
1000
Figure 9. Large Signal Frequency Response vs. RF
1000
200
VS = ±5V
RL = 100Ω
150
100
100
10
PHASE
50
TZ
0
1
50
0.1
0.1
100
1
10
100
1000
10000
FREQUENCY (MHz)
Figure 10. Transimpedance and Phase vs. Frequency
Rev. 0 | Page 6 of 20