Typical values at 25°C, AIN
= -1 dBFS, FIN = 347 MHz, FS = 1300 MSPS, High power mode, FG
calibration, JMODE 0, CPLL off, CPLLREF = 50 MHz and VA11Q and VCLK11
noise suppression on when CPLL on, nominal supply voltages, unless otherwise noted.
SNR results exclude DC, HD2 to HD9; SINAD, ENOB, and SFDR results exclude DC.
Figure 5-1 DNL
vs Code
Figure 5-3 Input
Fullscale vs Input Frequency
Figure 5-5 Single Tone FFT at 497 MHz and -1 dBFS
Figure 5-7 Single Tone FFT at 1497 MHz and -1 dBFS
Figure 5-9 Single Tone FFT at 2697 MHz and -1 dBFS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 99.997 MHz and -1 dBFS ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 99.997 MHz and -1 dBFS](/ods/images/JAJSIL6B/GUID-20201001-CA0I-PHT7-K9DJ-D8B8VX8ZHHNT-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-11 Single Tone FFT at 99.997 MHz and -1 dBFS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 1197 MHz and -1 dBFS ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 1197 MHz and -1 dBFS](/ods/images/JAJSIL6B/GUID-20201001-CA0I-G9M9-MVDZ-G3C9PXVX3MKD-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-13 Single Tone FFT at 1197 MHz and -1 dBFS
Figure 5-15 SFDR vs Input Frequency
Figure 5-17 SINAD vs Input Frequency
Figure 5-19 HD2 vs Input Frequency
Figure 5-21 SFDR vs Sample Rate
Figure 5-23 SINAD vs Sample Rate![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Sample Rate ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Sample Rate](/ods/images/JAJSIL6B/GUID-20201001-CA0I-5V18-4FRZ-TSQGMLVTPGBF-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-25 SFDR vs Sample Rate![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Sample Rate ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Sample Rate](/ods/images/JAJSIL6B/GUID-20201001-CA0I-DNXR-VFFZ-5QX8T5L58NH7-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-27 SINAD vs Sample Rate
Figure 5-29 SFDR vs Input Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Amplitude](/ods/images/JAJSIL6B/GUID-20201001-CA0I-BXFH-HPCB-MGKQZ0CXWZGH-low.gif)
FS = 1000MSPS, FIN =
100MHz,Low Power Mode |
Figure 5-31 SFDR vs Input Amplitude
Figure 5-33 SFDR
vs Clock Amplitude
Figure 5-35 SNR, SFDR and SINAD vs Temperature![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-WPMG-HMNJ-LP8CDSG4KVKX-low.gif)
FIN = 997 MHz, FG25°C means calibration
at 25°C and held across temperature |
Figure 5-37 SINAD vs Temperature and Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-TMMX-T7D4-CNGG2TJHC7PT-low.gif)
FIN = 997 MHz, FG25°C means calibration
at 25°C and held across temperature |
Figure 5-39 SFDR vs Temperature and Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-K3CQ-X61H-CZLWFLM3NMXS-low.gif)
Low
Power Mode, FIN = 347 MHz, FG25°C means
calibration at 25°C and held across temperature |
Figure 5-41 SINAD vs Temperature and Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-TP5F-72N9-VV5QL66MZPFP-low.gif)
Low
Power Mode, FIN = 347 MHz, FG25°C means
calibration at 25°C and held across temperature |
Figure 5-43 SFDR vs Temperature and Calibration Mode
Figure 5-45 HD2, HD3 and Worst non-HD Spur vs Supply
Voltage![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2, HD3 and Worst non-HD Spur vs Supply
Voltage ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2, HD3 and Worst non-HD Spur vs Supply
Voltage](/ods/images/JAJSIL6B/GUID-20200914-CA0I-XLSP-D8JF-1K5TMWDCWSBG-low.gif)
Low
Power Mode, FIN = 347 MHz, FS =
1000MSPS |
Figure 5-47 HD2, HD3 and Worst non-HD Spur vs Supply
Voltage
Figure 5-49 Two
Tone FFT at 348 MHz Center
Figure 5-51 Two
Tone FFT at 998 MHz Center
Figure 5-53 Two
Tone FFT at 2698 MHz Center![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 348 MHz Center ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 348 MHz Center](/ods/images/JAJSIL6B/GUID-20201001-CA0I-TPGJ-CRXS-88B0LLZ2R70L-low.gif)
Low
Power Mode, FS = 1000 MSPS, 10 MHz Tone
Spacing |
Figure 5-55 Two
Tone FFT at 348 MHz Center
Figure 5-57 IMD3 vs Input Frequency
Figure 5-59 Crosstalk to Channel A vs FIN
Figure 5-61 SFDR vs Reference Clock Frequency![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency and CPLL ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency and CPLL](/ods/images/JAJSIL6B/GUID-20201006-CA0I-ZCXR-TGKM-C7GTBSXZTPGM-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-63 SNR vs Input Frequency and CPLL
Figure 5-65 SFDR vs Input Frequency and CPLL
Figure 5-67 SINAD vs Input Frequency and CPLL![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-QFHJ-SLND-SFN29ZFFDWZN-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-69 SNR vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-F88J-H8NZ-SJM2CSTGPCH7-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-71 SINAD vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2 vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2 vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-0PLM-T8VL-LMTR8VKQWGHQ-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-73 HD2 vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-0NS0-4LZX-TRG96PRWFKCS-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-75 SNR vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SINAD vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-KJXD-DKSV-PQQXGPXKH2WT-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-77 SINAD vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2 vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD2 vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-Q62P-0DDB-W0JXB1LGXTQ2-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-79 HD2 vs Input Frequency, CPLL and Input
Amplitude
Figure 5-81 Quad Channel, Power Dissipation vs FS for JMODES 0 -
3
Figure 5-83 Quad Channel, Power Dissipation vs FS for JMODES 8 -
11
Figure 5-85 Quad Channel, IVA19 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVD11 vs FS and JMODE 0 - 3 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVD11 vs FS and JMODE 0 - 3](/ods/images/JAJSIL6B/GUID-20201005-CA0I-ZF5F-LKK6-LS5RSWDWXMJB-low.gif)
independent of power mode |
Figure 5-87 Quad
Channel, IVD11 vs FS and JMODE 0 - 3![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 8 -
11 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 8 -
11](/ods/images/JAJSIL6B/GUID-20200807-CA0I-LQQX-7X1J-7KVXB23F5KSX-low.gif)
independent of power mode |
Figure 5-89 Quad Channel, IVD11 vs FS and JMODE 8 -
11
Figure 5-91 Dual Channel, Power Dissipation vs FS for JMODES 0 -
3
Figure 5-93 Dual Channel, Power Dissipation vs FS for JMODES 8 -
11
Figure 5-95 Dual Channel, IVA19 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 vs FS and JMODE 0 - 3 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 vs FS and JMODE 0 - 3](/ods/images/JAJSIL6B/GUID-20201005-CA0I-SQHX-2T6C-XV8QFQ5FG0SB-low.gif)
independent of power mode |
Figure 5-97 Dual
Channel, IVD11 vs FS and JMODE 0 - 3![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 8 -
11 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 8 -
11](/ods/images/JAJSIL6B/GUID-20200807-CA0I-GDRB-XKK0-MHB1SJLLGRJ5-low.gif)
independent of power mode |
Figure 5-99 Dual Channel, IVD11 vs FS and JMODE 8 -
11
Figure 5-101 Single Channel, Power Dissipation vs FS for JMODES 0
- 3
Figure 5-103 Single Channel, Power Dissipation vs FS for JMODES 8
- 11
Figure 5-105 Single Channel, IVA19 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 0 -
3 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 0 -
3](/ods/images/JAJSIL6B/GUID-20201005-CA0I-SDBH-P2VV-NXTFHSH3DNTK-low.gif)
independent of power mode |
Figure 5-107 Single Channel, IVD11 vs FS and JMODE 0 -
3![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel,
IVD11 vs FS and JMODE 8 - 11 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel,
IVD11 vs FS and JMODE 8 - 11](/ods/images/JAJSIL6B/GUID-20200807-CA0I-MXRN-N0TG-K5WHXVRNT9W3-low.gif)
independent of power mode |
Figure 5-109 Single Channel,
IVD11 vs FS and JMODE 8 - 11![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, Power Dissipation Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, Power Dissipation Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-RRSH-ZXZD-NZTXQ4K3MXLQ-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-111 Quad
Channel, Power Dissipation Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, Power Dissipation Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, Power Dissipation Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-PBN6-NTSL-DGRD3JXS1NB2-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-113 Single Channel, Power Dissipation Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVA19 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVA19 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-PQ4S-B0CX-PB80WBDVK9TT-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-115 Dual
Channel, IVA19 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVA11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVA11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-MZJK-VDCQ-WHXHHZJT18NN-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-117 Quad
Channel, IVA11 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVA11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVA11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-WW2T-V9Q4-XXKTGTM2WC7T-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-119 Single Channel, IVA11 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-X0BV-8SSS-MNCWMBRWLVNS-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-121 Dual
Channel, IVD11 Change with Calibration Mode
Figure 5-123 Quad
Channel, Power Dissipation vs Temperature
Figure 5-125 Single Channel, Power Dissipation vs
Temperature
Figure 5-127 Background Calibration Core Transition (AC Signal)
Figure 5-129 Background Calibration Core Transition (DC Signal)
Figure 5-2 INL
vs Code
Figure 5-4 Single Tone FFT at 347 MHz and -1 dBFS
Figure 5-6 Single Tone FFT at 997 MHz and -1 dBFS
Figure 5-8 Single Tone FFT at 1797 MHz and -1 dBFS
Figure 5-10 Single Tone FFT at 3497 MHz and -1 dBFS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 347 MHz and -1 dBFS ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 347 MHz and -1 dBFS](/ods/images/JAJSIL6B/GUID-20201001-CA0I-WTDJ-55N2-CD1N5T3JJHL6-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-12 Single Tone FFT at 347 MHz and -1 dBFS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 1797 MHz and -1 dBFS ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Tone FFT at 1797 MHz and -1 dBFS](/ods/images/JAJSIL6B/GUID-20201001-CA0I-L4BR-CNFB-0Z8Z7C0VQQ1R-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-14 Single Tone FFT at 1797 MHz and -1 dBFS
Figure 5-16 SNR vs Input Frequency
Figure 5-18 ENOB vs Input Frequency
Figure 5-20 HD3 vs Input Frequency
Figure 5-22 SNR vs Sample Rate
Figure 5-24 ENOB vs Sample Rate![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Sample Rate ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Sample Rate](/ods/images/JAJSIL6B/GUID-20201001-CA0I-DS9S-KKT7-XMXJSVTK6MZH-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-26 SNR vs Sample Rate![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Sample Rate ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Sample Rate](/ods/images/JAJSIL6B/GUID-20201001-CA0I-HXN2-BSBC-66JLHVFP80LW-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-28 ENOB vs Sample Rate
Figure 5-30 SNR vs Input Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR
vs Input Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR
vs Input Amplitude](/ods/images/JAJSIL6B/GUID-20201007-CA0I-JFSW-XCHF-D66HSZLK0WWN-low.gif)
FS = 1000MSPS, FIN = 100MHz,
Low Power Mode |
Figure 5-32 SNR
vs Input Amplitude
Figure 5-34 SNR
vs Clock Amplitude
Figure 5-36 HD2, HD3 and worst non-HD Spur vs
Temperature![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-FJCK-98ZM-6XBXDG1ZNJ6D-low.gif)
FIN = 997 MHz, FG25°C means calibration
at 25°C and held across temperature |
Figure 5-38 ENOB vs Temperature and Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-CMFP-FXG5-X1WKGGT7HHFX-low.gif)
Low
Power Mode, FIN = 347 MHz, FG25°C means
calibration at 25°C and held across temperature |
Figure 5-40 SNR vs Temperature and Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Temperature and Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Temperature and Calibration Mode](/ods/images/JAJSIL6B/GUID-20201103-CA0I-DFDC-5T5K-STV5PP4GQQ4D-low.gif)
Low
Power Mode, FIN = 347 MHz, FG25°C means
calibration at 25°C and held across temperature |
Figure 5-42 ENOB vs Temperature and Calibration Mode
Figure 5-44 SNR, SFDR and SINAD vs Supply Voltage![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR, SFDR and SINAD vs Supply Voltage ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SNR, SFDR and SINAD vs Supply Voltage](/ods/images/JAJSIL6B/GUID-20200914-CA0I-33TX-KXDD-LK8SPDWJGX3K-low.gif)
Low
Power Mode, FIN = 347 MHz, FS =
1000MSPS |
Figure 5-46 SNR, SFDR and SINAD vs Supply Voltage
Figure 5-48 Two
Tone FFT at 95.07 MHz Center
Figure 5-50 Two
Tone FFT at 498 MHz Center
Figure 5-52 Two
Tone FFT at 1798 MHz Center![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 95.07 MHz Center ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 95.07 MHz Center](/ods/images/JAJSIL6B/GUID-20201001-CA0I-B6SW-XCRN-FJG6JNZMGNX6-low.gif)
Low
Power Mode, FS = 1000 MSPS, 10 MHz Tone
Spacing |
Figure 5-54 Two
Tone FFT at 95.07 MHz Center![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 998 MHz Center ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Two
Tone FFT at 998 MHz Center](/ods/images/JAJSIL6B/GUID-20201001-CA0I-NNVG-KBBL-BNVZQNLGD5SK-low.gif)
Low
Power Mode, FS = 1000 MSPS, 10 MHz Tone
Spacing |
Figure 5-56 Two
Tone FFT at 998 MHz Center![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 IMD3 vs Input Frequency ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 IMD3 vs Input Frequency](/ods/images/JAJSIL6B/GUID-20201001-CA0I-JHQ5-SL1M-KQBQPFKNNMBD-low.gif)
Low
Power Mode, FS = 1000 MSPS, 10 MHz Tone
Spacing |
Figure 5-58 IMD3 vs Input Frequency
Figure 5-60 Crosstalk to Channel B vs FIN![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency and CPLL ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency and CPLL](/ods/images/JAJSIL6B/GUID-20201006-CA0I-1W4R-VBND-4VQSRZNWXHHQ-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-62 SFDR vs Input Frequency and CPLL![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency and CPLL ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency and CPLL](/ods/images/JAJSIL6B/GUID-20201006-CA0I-ZDDX-XMLW-5RZNBG9M8SBZ-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-64 ENOB vs Input Frequency and CPLL
Figure 5-66 SNR vs Input Frequency and CPLL
Figure 5-68 ENOB vs Input Frequency and CPLL![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-DHPB-TLP0-WWJ7R8TG9LWT-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-70 SFDR vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-FPJP-PFVD-NRF1CRWPCHLB-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-72 ENOB vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD3 vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD3 vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-WJ80-PNFF-G4XGWLR2ZZWM-low.gif)
FS = 1300MSPS, High Power Mode |
Figure 5-74 HD3 vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 SFDR vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-LF4H-FJ5T-HHLX9DJBXBXM-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-76 SFDR vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 ENOB vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-CJWW-XGSV-3KBG43QV38CH-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-78 ENOB vs Input Frequency, CPLL and Input
Amplitude![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD3 vs Input Frequency, CPLL and Input
Amplitude ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 HD3 vs Input Frequency, CPLL and Input
Amplitude](/ods/images/JAJSIL6B/GUID-20201006-CA0I-QZDB-NC9Z-8ZB5KHCXNBLZ-low.gif)
FS = 1000MSPS, Low Power Mode |
Figure 5-80 HD3 vs Input Frequency, CPLL and Input
Amplitude
Figure 5-82 Quad
Channel, Power Dissipation vs FS for JMODES 4 - 7
Figure 5-84 Quad Channel, Power Dissipation vs FS for JMODES 12
- 15
Figure 5-86 Quad Channel, IVA11 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 4 -
7 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 4 -
7](/ods/images/JAJSIL6B/GUID-20200807-CA0I-H7W4-BWPB-6LZMB8Z7MHHT-low.gif)
independent of power mode |
Figure 5-88 Quad Channel, IVD11 vs FS and JMODE 4 -
7![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 12 -
15 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad Channel, IVD11 vs FS and JMODE 12 -
15](/ods/images/JAJSIL6B/GUID-20200807-CA0I-QFPZ-LCXH-MRG5L4SPMP9D-low.gif)
independent of power mode |
Figure 5-90 Quad Channel, IVD11 vs FS and JMODE 12 -
15
Figure 5-92 Dual Channel, Power Dissipation vs FS for JMODES 4 -
7
Figure 5-94 Dual Channel, Power Dissipation vs FS for JMODES 12
- 15
Figure 5-96 Dual Channel, IVA11 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 4 -
7 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 4 -
7](/ods/images/JAJSIL6B/GUID-20200807-CA0I-63VN-MKMK-CT6VZWKZRSNG-low.gif)
independent of power mode |
Figure 5-98 Dual Channel, IVD11 vs FS and JMODE 4 -
7![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 12 -
15 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual Channel, IVD11 vs FS and JMODE 12 -
15](/ods/images/JAJSIL6B/GUID-20200807-CA0I-LRZ7-RVKF-28WGHTKSWQB4-low.gif)
independent of power mode |
Figure 5-100 Dual Channel, IVD11 vs FS and JMODE 12 -
15
Figure 5-102 Single Channel, Power Dissipation vs FS for JMODES 4
- 7
Figure 5-104 Single Channel, Power Dissipation vs FS for JMODES
12 - 15
Figure 5-106 Single Channel, IVA11 vs FS![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 4 -
7 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 4 -
7](/ods/images/JAJSIL6B/GUID-20200807-CA0I-ZDHL-BKXN-GD49VPDR0VS0-low.gif)
independent of power mode |
Figure 5-108 Single Channel, IVD11 vs FS and JMODE 4 -
7![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 12
- 15 ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVD11 vs FS and JMODE 12
- 15](/ods/images/JAJSIL6B/GUID-20200807-CA0I-GD6D-BW9R-G2XXPPQVTSQ6-low.gif)
independent of power mode |
Figure 5-110 Single Channel, IVD11 vs FS and JMODE 12
- 15![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, Power Dissipation Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, Power Dissipation Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-Z4J6-NV3Q-NP6C7RGT68CV-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-112 Dual
Channel, Power Dissipation Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVA19 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVA19 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-PR6C-SZLJ-GTDDLBJLJZBN-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-114 Quad
Channel, IVA19 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVA19 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Single Channel, IVA19 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-VX9C-V7VS-0KF5ZXVQPGCF-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-116 Single Channel, IVA19 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVA11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVA11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20201006-CA0I-BV7F-XG2Q-K5VFZHNXPS14-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-118 Dual
Channel, IVA11 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVD11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Quad
Channel, IVD11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-SZ1P-LXCV-PR5CP378BL3W-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-120 Quad
Channel, IVD11 Change with Calibration Mode![ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 Change with Calibration Mode ADC09QJ1300-Q1 ADC09DJ1300-Q1 ADC09SJ1300-Q1 Dual
Channel, IVD11 Change with Calibration Mode](/ods/images/JAJSIL6B/GUID-20200914-CA0I-82VV-0CXG-9QCKNWG75THF-low.svg)
Difference to foreground calibration, JMODE
independent |
Figure 5-122 Dual
Channel, IVD11 Change with Calibration Mode
Figure 5-124 Dual Channel, Power Dissipation vs
Temperature
Figure 5-126 Background Calibration Core Transition (midscale voltage)
Figure 5-128 Background Calibration Core Transition (AC Signal Zoomed)