Typical values at TA = +25°C. Default
conditions at 30MHz: ADC Sampling Rate = 1500 MSPS, output sample rate = 62.5 MSPS
(decimate by 24x), PLL clock mode with fREF = 500 MHz, AIN =
–3 dBFS, DSA setting = 3 dB. Default conditions at 400 MHz: ADC Sampling Rate = 1500
MSPS, output sample rate = 125 MSPS (decimate by 12x), PLL clock mode with
fREF = 500 MHz, AIN = –3 dBFS, DSA setting = 3 dB.
Figure 5-1 RX
In-Band Gain Flatness, fIN = 30 MHz
| Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 5-3 RX
Calibrated Differential Amplitude Error vs DSA Setting at 30 MHz
| Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 5-5 RX
Calibrated Integrated Amplitude Error vs DSA Setting at 30 MHz
| Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 5-7 RX
Calibrated Differential Phase Error vs DSA Setting at 30 MHz
| With
0.8 GHz matching |
| Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 5-9 RX
Calibrated Integrated Phase Error vs DSA Setting at 30 MHz
| AIN = -6 dBFS, fADC = 1500
MSPS, fNCO = 32. , Decimate by 24x |
Figure 5-11 RX
Output FFT at 5 MHz
| AIN = -30 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-13 RX
Output FFT at 5 MHz
| AIN = -3 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-15 RX
Output FFT at 30 MHz
| AIN = -12 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-17 RX
Output FFT at 30 MHz
| AIN = -60 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-19 RX
Output FFT at 30 MHz
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-21 NSD vs Input Amplitude at
30 MHz with DSA = 12
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-23 IMD3 vs Input Amplitude
at 30 MHz
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-25 HD2 vs Input Amplitude at
30 MHz
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-27 HD3 vs Input Amplitude at
30 MHz
Figure 5-29 RX In-Band Gain Flatness, fIN = 400
MHz
| Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 5-31 RX Calibrated Differential Amplitude Error vs DSA
Setting at 400 MHz
| Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 5-33 RX Calibrated Integrated Amplitude Error vs DSA
Setting at 400 MHz
| Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 5-35 RX Calibrated Differential Phase Error vs DSA
Setting at 400 MHz
| Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 5-37 RX Calibrated Integrated Phase Error vs DSA Setting
at 400 MHz
Figure 5-39 RX Output FFT at 405 MHz and -6dBFS
Figure 5-41 RX Output FFT at 405 MHz and -30dBFS
Figure 5-43 NSD vs Input Amplitude at 400MHz
Figure 5-45 IMD3 vs Input Amplitude at 400MHz
Figure 5-47 IMD3 vs Tone Spacing at 400MHz
Figure 5-49 HD3 vs DSA Setting at 400MHz
| Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 5-2 RX
Uncalibrated Differential Amplitude Error vs DSA Setting at 30 MHz
| Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 5-4 RX
Uncalibrated Integrated Amplitude Error vs DSA Setting at 30 MHz
| Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 5-6 RX
Uncalibrated Differential Phase Error vs DSA Setting at 30 MHz
| Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 5-8 RX
Uncalibrated Integrated Phase Error vs DSA Setting at 30 MHz
| AIN = -3 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-10 RX
Output FFT at 5 MHz
| AIN = -12 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-12 RX
Output FFT at 5 MHz
| AIN = -60 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-14 RX
Output FFT at 5 MHz
| AIN = -6 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-16 RX
Output FFT at 30 MHz
| AIN = -30 dBFS, fADC = 1500
MSPS, fNCO = 32.13 MHz, Decimate by
24x |
Figure 5-18 RX
Output FFT at 30 MHz
| fADC = 1500MSPS, fNCO = 32.13MHz, Decimate by 24x |
Figure 5-20 NSD vs Input Amplitude at
30 MHz with DSA = 0 and 3dB
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-22 NSD vs DSA Attenuation at 30 MHz
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-24 IMD3 vs DSA Setting at 30 MHz
| fADC = 1500 MSPS, fNCO =
32. , Decimate by 24x |
Figure 5-26 HD2 vs DSA Setting at 30 MHz
| fADC = 1500 MSPS, fNCO =
32.13 MHz, Decimate by 24x |
Figure 5-28 HD3 vs DSA Setting at 30 MHz
| Differential Amplitude Error = PIN(DSA
Setting – 1) – PIN(DSA Setting) + 1 |
Figure 5-30 RX Uncalibrated Differential Amplitude Error vs DSA
Setting at 30 MHz
| Integrated Amplitude Error = PIN(DSA
Setting) – PIN(DSA Setting = 0) + (DSA
Setting) |
Figure 5-32 RX Uncalibrated Integrated Amplitude Error vs DSA
Setting at 400 MHz
| Differential Phase Error = PhaseIN(DSA
Setting – 1) – PhaseIN(DSA Setting) |
Figure 5-34 RX Uncalibrated Differential Phase Error vs DSA
Setting at 400 MHz
| Integrated Phase Error = Phase(DSA Setting) – Phase(DSA
Setting = 0) |
Figure 5-36 RX Uncalibrated Integrated Phase Error vs DSA
Setting at 400 MHz
Figure 5-38 RX Output FFT at 405 MHz and -3dBFS
Figure 5-40 RX Output FFT at 405 MHz and -12dBFS
Figure 5-42 RX Output FFT at 405 MHz and -60dBFS
Figure 5-44 NSD vs DSA Setting at 400MHz
Figure 5-46 IMD3 vs DSA Setting at 400MHz
Figure 5-48 HD3 vs Input Amplitude at 400MHz