ADL5519ACPZ-R2 AD [Analog Devices], ADL5519ACPZ-R2 Datasheet - Page 12

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ADL5519ACPZ-R2

Manufacturer Part Number
ADL5519ACPZ-R2
Description
1 MHz to 10 GHz, 50 dB Dual Log Detector/Controller
Manufacturer
AD [Analog Devices]
Datasheet
ADL5519
TYPICAL PERFORMANCE CHARACTERISTICS
V
Figure 3: OUT[A, B] Voltage and Log Conformance vs. Input Amplitude
Figure 4: Distribution of OUT[A, B] Voltage and Error over Temperature
Devices from Multiple Lots, Frequency = 450 MHz, ADJ[A, B] = 0 V, Sine
Figure 5: Distribution of [OUTA – OUTB] Gain vs. Input Amplitude over
P
at 450 MHz, Typical Device, ADJ[A, B] = 0 V, Sine Wave, Differential
Temperature for at Least 30 Devices from Multiple Lots, Frequency =
= 5 V; T
After Ambient Normalization vs. Input Amplitude for at Least 30
450 MHz, ADJ[A, B] = 0 V, Sine Wave, Differential Drive
A
= +25°C, –40°C, +85°C; CLPA/B = OPEN. Colors: +25°C black, –40°C blue, +85°C red.
Wave, Differential Drive
Drive,
Rev. PrB | Page 12 of 27
Least 30 Devices from Multiple Lots, Frequency = 450 MHz, ADJ[A, B] =
Figure 8: OUT[A, B] Voltage and Log Conformance vs. Input Amplitude
450 MHz, Typical Device, ADJ[A, B] = 0 V, Sine Wave, Differential Drive
Figure 6: OUT[P, N]Gain and Log Conformance vs. Input Amplitude at
Temperature After Ambient Normalization vs. Input Amplitude for at
at 880 MHz, Typical Device, ADJ[A, B] = 0.5 V, Sine Wave, Differential
0 V, Sine Wave, Differential Drive, P
Figure 7: Distribution of [OUTP − OUTN] Gain and Error over
(Note that the OUTP and OUTN Error Curves Overlap)
Preliminary Technical Data
Swept
Drive,
IN
Ch. B = −25 dBm, Channel A

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