Data Sheet
AD8364
TYPICAL PERFORMANCE CHARACTERISTICS
VP = 5 V; TA = +25°C, –40°C, +85°C; CLPA/B = OPEN. Colors: +25°C black, –40°C blue, +85°C red.
5
2.5
5
2.5
2.0
2.0
4
1.5
4
1.5
A
OUTN
OUTP
1.0
1.0
3
0.5
3
0.5
0
0
2
–0.5
B
2
–0.5
–1.0
–1.0
1
–1.5
1
–1.5
–2.0
–2.0
0
–60 –50 –40 –30 –20 –10
0
INPUT AMPLITUDE (dBm)
–2.5
10
20
Figure 3. OUT[A, B] Voltage and Log Conformance vs. Input Amplitude at
450 MHz, Typical Device, ADJ[A, B] = 0 V, Sine Wave, Differential Drive,
Balun = Macom ETK4-2T
5
2.5
0
–60 –50 –40 –30 –20 –10
0
INPUT AMPLITUDE (dBm)
–2.5
10
20
Figure 6. OUT[P, N] Voltage and Log Conformance vs. Input Amplitude at
450 MHz, with B Input Held at −25 dBm and A Input Swept, Typical Device,
ADJ[A, B] = 0 V, Sine Wave, Differential Drive, Balun = Macom ETK4-2T
(Note that the OUTP and OUTN Error Curves Overlap)
5
2.5
2.0
4
2.0
4
1.5
3
1.5
1.0
2
1.0
3
0.5
1
0.5
0
0
0
2
–0.5
–1
–0.5
–1.0
–2
–1.0
1
–1.5
–3
–1.5
–2.0
–4
–2.0
0
–60 –50 –40 –30 –20 –10
0
INPUT AMPLITUDE (dBm)
–2.5
10
20
Figure 4. Distribution of OUT[A, B] Voltage and Error over Temperature After
Ambient Normalization vs. Input Amplitude for at Least 30 Devices from
Multiple Lots, Frequency = 450 MHz, ADJ[A, B] = 0 V, Sine Wave, Differential
Drive, Balun = Macom ETK4-2T
0.20
0.15
0.10
0.05
0
–0.05
–0.10
–0.15
–0.20
–60 –50 –40 –30 –20 –10
0
INPUT AMPLITUDE (dBm)
10
20
Figure 5. Distribution of [OUTA – OUTB] Voltage vs. Input Amplitude over
Temperature for at Least 30 Devices from Multiple Lots, Frequency = 450 MHz,
ADJ[A, B] = 0 V, Sine Wave, Differential Drive, Balun = Macom ETK4-2T
–5
–60 –50 –40 –30 –20 –10
0
INPUT AMPLITUDE (dBm)
–2.5
10
20
Figure 7. Distribution of [OUTP − OUTN] Voltage and Error over Temperature
After Ambient Normalization vs. Input Amplitude for at Least 30 Devices
from Multiple Lots, Frequency = 450 MHz, ADJ[A, B] = 0 V, Sine Wave,
Differential Drive, PIN Ch. B = −25 dBm, Channel A Swept
4
+2DB
+1DB
2
+15DEG
0
+10DEG
–2
REF
–4
–15DEG
–6
–10DEG
–1DB
SERIES NAME INDICATES THE
–8
POLARITY AND MAGNITUDE OF THE
DEVIATION APPLIED TO THE INHA
INPUT, RELATIVE TO THE INLA INPUT,
–2DB
AS REFERENCED TO THE REF SIGNAL.
–10
–40 –35 –30 –25 –20 –15 –10 –5 0
RF INPUT AT INLA (dBm)
5 10
Figure 8. Log Conformance vs. Input Amplitude at various Amplitude and
Phase Balance points, 450 MHz, Typical Device, ADJ[A, B] = 0 V, Sine Wave,
Differential Drive
Rev. B | Page 9 of 44