Note Using the PXIe-5764 in a manner not described in this document might impair the protection the PXIe-5764 provides.

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1 SPECIFICATIONS PXIe-5764 PXI FlexRIO Digitizer This document lists the specifications for the PXIe Specifications are subject to change without notice. For the most recent device specifications, refer to ni.com/support. Note Using the PXIe-5764 in a manner not described in this document might impair the protection the PXIe-5764 provides. Note These specifications are typical at 25 C unless otherwise noted. Contents Note Specifications are valid under the following conditions unless otherwise noted: The chassis fan speed is set to HIGH, the foam fan filters are removed if present, and the empty slots contain PXI chassis slot blockers and filler panels. For more information about cooling, refer to the Maintain Forced-Air Cooling Note to Users at ni.com/manuals. Definitions...2 Digital I/O... 2 Digital I/O Single-Ended Channels...3 Digital I/O High-Speed Serial MGT...3 Reconfigurable FPGA...5 Onboard DRAM...5 Analog Input... 6 General Characteristics... 6 Typical Specifications... 6 CLK/REF IN General Characteristics Driver and Application Software Bus Interface Maximum Power Requirements...18 Physical Environment...18 Operating Environment...18 Storage Environment...19 Shock and Vibration...19

2 TCLK Specifications...19 Intermodule SMC Synchronization Using NI-TClk for Identical Modules Compliance and Certifications...20 Safety Electromagnetic Compatibility CE Compliance Online Product Certification Environmental Management Definitions Warranted specifications describe the performance of a model under stated operating conditions and are covered by the device warranty. The following characteristic specifications describe values that are relevant to the use of the model under stated operating conditions, but are not covered by the model warranty. Typical (typ) specifications describe the performance a majority of models meet. Nominal (nom) specifications describe an attribute that is based on design, conformance testing, or supplemental testing. Measured (meas) specifications describe the measured performance of a representative model. Specifications are Typical unless otherwise noted. Digital I/O Connector Molex Nano-Pitch I/O 5.0 V Power ±5%, 50 ma maximum, nominal Table 1. Digital I/O Signal Characteristics Signal Type Direction MGT Tx± <3..0> 1 Xilinx UltraScale GTH Output MGT Rx± <3..0> 1 Xilinx UltraScale GTH Input DIO <7..0> Single-ended Bidirectional 5.0 V DC Output Ground 1 Multi-gigabit transceiver (MGT) signals are available on devices with KU040 and KU060 FPGAs only. 2 ni.com PXIe-5764 Specifications

3 Digital I/O Single-Ended Channels Number of channels 8 Signal type Voltage families Input impedance Output impedance Direction control Minimum required direction change latency Maximum output toggle rate Single-ended 3.3 V, 2.5 V, 1.8 V, 1.5 V, 1.2 V 100 kω, nominal 50 Ω, nominal Per channel 200 ns 60 MHz with 100 μa load, nominal Table 2. DIGITAL I/O Single-Ended DC Signal Characteristics 2 Voltage Family V IL V IH V OL (100µA load) V OH (100µA load) Maximum DC Drive Strength 3.3 V 0.8 V 2.0 V 0.2 V 3.0 V 24 ma 2.5 V 0.7 V 1.6 V 0.2 V 2.2 V 18 ma 1.8 V 0.62 V 1.29 V 0.2 V 1.5 V 16 ma 1.5 V 0.51 V 1.07 V 0.2 V 1.2 V 12 ma 1.2 V 0.42 V 0.87 V 0.2 V 0.9 V 6 ma Digital I/O High-Speed Serial MGT 3 Note MGTs are available on devices with KU040 and KU060 FPGAs only. Data rate 500 Mbps to Gbps, nominal Number of Tx channels 4 Number of Rx channels 4 I/O AC coupling capacitor 100 nf 2 Voltage levels are guaranteed by design through the digital buffer specifications. 3 For detailed FPGA and High-Speed Serial Link specifications, refer to Xilinx documentation. PXIe-5764 Specifications National Instruments 3

4 Figure 1. Digital I/O Connector Reserved A1 B1 5.0 V A2 B2 MGT Rx+ 0 A3 B3 MGT Tx+ 0 MGT Rx 0 A4 B4 MGT Tx 0 A5 B5 MGT Rx+ 1 A6 B6 MGT Tx+ 1 MGT Rx 1 A7 B7 MGT Tx 1 A8 B8 DIO 4 A9 B9 DIO 6 DIO 5 A10 B10 DIO 7 A11 B11 MGT REF+ / DIO 0 A12 B12 DIO 2 MGT REF / DIO 1 A13 B13 DIO 3 A14 B14 MGT Rx+ 2 A15 B15 MGT Tx+ 2 MGT Rx 2 A16 B16 MGT Tx 2 A17 B17 MGT Rx+ 3 A18 B18 MGT Tx+ 3 MGT Rx 3 A19 B19 MGT Tx 3 A20 B V A21 B21 Reserved MGT TX± <3..0> Channels Minimum differential output voltage mv pk-pk into 100 Ω, nominal I/O coupling AC-coupled with 100 nf capacitor MGT RX± <3..0> Channels Differential input voltage range 6.6 GB/s 150 mv pk-pk to 2000 mv pk-pk, nominal > 6.6 GB/s 150 mv pk-pk to 1250 mv pk-pk, nominal Differential input resistance 100 Ω, nominal I/O coupling DC-coupled, requires external capacitor mv pk-pk when transmitter output swing is set to the maximum setting. 4 ni.com PXIe-5764 Specifications

5 Reconfigurable FPGA PXIe-5764 modules are available with multiple FPGA options. The following table lists the FPGA specifications for the PXIe-5764 FPGA options. Table 3. Reconfigurable FPGA Options KU035 KU040 KU060 LUTs 203, , ,680 DSP48 slices (25 18 multiplier) 1,700 1,920 2,760 Embedded Block RAM 19.0 Mb 21.1 Mb 38.0 Mb Default timebase Timebase reference sources 80 MHz PXI Express 100 MHz (PXIe_CLK100) Data transfers DMA, interrupts, programmed I/O, multi-gigabit transceivers 5 Number of DMA channels 60 Note Table 3 depicts the total number of FPGA resources available on the part. The number of resources available to the user is slightly lower, as some FPGA resources are consumed by board-interfacing IP for PCI Express, device configuration, and various board I/O. For more information, contact NI support. Note For FPGA designs using the majority of KU040 or KU060 FPGA resources while running at clock rates over 150 MHz, the module may require more power than is available. If the module attempts to draw more than allowed per its specification, the module protects itself and reverts to a default FPGA personality. Refer to the getting started guide for your module or contact NI support for more information. Onboard DRAM Note DRAM is available on devices with KU040 and KU060 FPGAs only. Memory size DRAM clock rate Physical bus width 4 GB (2 banks of 2 GB) 1064 MHz 32 bit 5 KU040 and KU060 options only. PXIe-5764 Specifications National Instruments 5

6 LabVIEW FPGA DRAM clock rate LabVIEW FPGA DRAM bus width Maximum theoretical data rate 267 MHz 256 bit per bank 17 GB/s (8.5 GB/s per bank) Analog Input General Characteristics Number of channels 4, single-ended, simultaneously sampled Connector type SMA Input impedance 50 Ω Input coupling AC or DC 6 Sample rate Internal Sample Clock 1 GHz External Sample Clock 1 GHz Analog-to-digital converter (ADC) ADS54J60, 16-bit resolution Typical Specifications Full-scale input range (normal operating conditions) AC-coupled 2.05 V pp (10.22 dbm) at 10 MHz DC-coupled 2.00 V pp (10 dbm) Gain accuracy AC-coupled ±0.1 db at 10 MHz DC-coupled ±0.79% at DC DC offset AC-coupled ±22 µv DC-coupled ±363 µv Bandwidth (-3 db) 7 AC-coupled 0.07 MHz to 1.15 GHz 8 DC-coupled DC to 400 MHz 6 Only one analog input path type is populated. 7 Normalized to 10 MHz. 8 Maximum bandwidth for full scale input signal is 400 MHz. See the ADS54J60 datasheet for details on maximum supported amplitude for frequencies greater than 400 MHz. 6 ni.com PXIe-5764 Specifications

7 Table 4. Single Tone Spectral Performance AC-Coupled Input Frequency DC-Coupled Input Frequency 10.1 MHz MHz MHz 10.1 MHz MHz MHz SNR 9 (dbfs) SINAD 8 (dbfs) SFDR (dbc) ENOB 10 (Bits) Note Excludes ADC interleaving spurs. Table 5. Noise Spectral Density Module nv/rt (Hz) dbm/hz dbfs/hz AC-coupled DC-coupled Note Noise spectral density is verified using a 50 Ω terminator connected to the input. 9 Measured with a -1 dbfs signal and corrected to full-scale. 1 khz resolution bandwidth. 10 Calculated from SINAD and corrected to full-scale. PXIe-5764 Specifications National Instruments 7

8 Figure 2. AC-Coupled Single Tone Spectrum (10.1 MHz, -1 dbfs, 1 khz RBW), Measured Figure 3. AC-Coupled Single Tone Spectrum (123.1 MHz, -1 dbfs, 1 khz RBW), Measured 8 ni.com PXIe-5764 Specifications

9 Figure 4. AC-Coupled Single Tone Spectrum (199.1 MHz, -1 dbfs, 1 khz RBW), Measured Figure 5. DC-Coupled Single Tone Spectrum (10.1 MHz, -1 dbfs, 1 khz RBW), Measured PXIe-5764 Specifications National Instruments 9

10 Figure 6. DC-Coupled Single Tone Spectrum (123.1 MHz, -1 dbfs, 1 khz RBW), Measured 10 ni.com PXIe-5764 Specifications

11 Figure 7. DC-Coupled Single Tone Spectrum (199.1 MHz, -1 dbfs, 1 khz RBW), Measured Channel-to-channel crosstalk AC-coupled, measured 1 MHz -87 db 100 MHz -90 db 250 MHz -85 db 400 MHz -84 db Channel-to-channel crosstalk DC-coupled, measured 1 MHz -88 db 100 MHz -84 db 250 MHz -75 db 400 MHz -75 db PXIe-5764 Specifications National Instruments 11

12 Figure 8. AC-Coupled Frequency Response, Measured Figure 9. AC-Coupled Passband Flatness for Full Scale Input Supported Frequency Range, Measured 12 ni.com PXIe-5764 Specifications

13 Figure 10. DC-Coupled Frequency Response, Measured Figure 11. DC-Coupled Frequency Response Zoomed In, Measured PXIe-5764 Specifications National Instruments 13

14 Figure 12. Input Return Loss, Measured CLK/REF IN General Characteristics Connector type SMA Input impedance 50 Ω Input coupling AC Reference input voltage range 0.3 V pp to 4 V pp Sample Clock input voltage range 0.3 V pp to 4 V pp Absolute maximum voltage ±12 V DC, 4 V pp AC Duty cycle 45% to 55% Onboard reference timebase stability ±0.5 ppm Sample Clock jitter 11 AC-coupled 140 fs RMS DC-coupled 143 fs RMS 11 Integrated from 1 khz to 10 MHz. Includes the effects of the converter aperture uncertainty and the clock circuitry jitter. Excludes trigger jitter. 14 ni.com PXIe-5764 Specifications

15 Table 6. Clock Configuration Options Clock Configuration External Clock Type External Clock Frequency Description Internal Reference Clock 12 The internal Sample Clock locks to an onboard voltage-controlled temperature compensated crystal oscillator (VCTCXO). Internal PXI_CLK10 10 MHz The internal Sample Clock locks to the PXI 10 MHz Reference Clock, which is provided through the backplane. External Reference Clock (CLK/REF IN) Reference Clock 10 MHz 13 The internal Sample Clock locks to an external Reference Clock, which is provided through the CLK/REF IN front panel connector. External Sample Clock (CLK/REF IN) Sample Clock 1 GHz An external Sample Clock can be provided through the CLK/REF IN front panel connector. 12 Default clock configuration. 13 The PLL Reference Clock must be accurate to ±25 ppm. PXIe-5764 Specifications National Instruments 15

16 Figure 13. AC-Coupled Phase Noise with MHz Input Tone, Measured 16 ni.com PXIe-5764 Specifications

17 Figure 14. DC-Coupled Phase Noise with MHz Input Tone, Measured Driver and Application Software This device is supported in NI LabVIEW Instrument Design Libraries for FlexRIO (instrument design libraries). Instrument design libraries allow you to configure and control the device. The instrument design libraries provide programming interfaces, documentation, and sample projects for LabVIEW and LabVIEW FPGA Module. Bus Interface Form factor PCI Express Gen-3 x8 PXIe-5764 Specifications National Instruments 17

18 Maximum Power Requirements Note Power requirements are dependent on the contents of the LabVIEW FPGA VI used in your application V 3 A +12 V 3 A Maximum total power 36 W Physical Dimensions (not including connectors) Weight 18.8 cm 12.9 cm (7.4 in. 5.1 in.) 190 g (6.7 oz) Note Clean the hardware with a soft, nonmetallic brush. Make sure that the hardware is completely dry and free of contaminants before returning it to service. Environment Maximum altitude Pollution Degree 2 2,000 m (800 mbar) (at 25 C ambient temperature) Indoor use only. Operating Environment Ambient temperature range Relative humidity range 0 C to 40 C (Tested in accordance with IEC and IEC Meets MIL-PRF-28800F Class 3 low temperature limit and MIL-PRF-28800F Class 4 high temperature limit.) 10% to 90%, noncondensing (Tested in accordance with IEC ) 18 ni.com PXIe-5764 Specifications

19 Storage Environment Ambient temperature range Relative humidity range -40 C to 71 C (Tested in accordance with IEC and IEC Meets MIL-PRF-28800F Class 4 limits.) 5% to 95%, noncondensing (Tested in accordance with IEC ) Shock and Vibration Operating shock Random vibration Operating Nonoperating 30 g peak, half-sine, 11 ms pulse (Tested in accordance with IEC Meets MIL-PRF-28800F Class 2 limits.) 5 Hz to 500 Hz, 0.3 g rms (Tested in accordance with IEC ) 5 Hz to 500 Hz, 2.4 g rms (Tested in accordance with IEC Test profile exceeds the requirements of MIL-PRF-28800F, Class 3.) TCLK Specifications You can use the NI TClk synchronization method and the NI-TClk driver to align the Sample Clocks on any number of supported devices, in one or more chassis. For more information about TClk synchronization, refer to the NI-TClk Synchronization Help within the FlexRIO Help. For other configurations, including multichassis systems, contact NI Technical Support at ni.com/support. Intermodule SMC Synchronization Using NI-TClk for Identical Modules Synchronization specifications are valid under the following conditions: All modules are installed in one PXI Express chassis. The NI-TClk driver is used to align the Sample Clocks of each module. PXIe-5764 Specifications National Instruments 19

20 All parameters are set to identical values for each module. Modules are synchronized without using an external Sample Clock. Note Although you can use NI-TClk to synchronize non-identical SMC-based modules, these specifications apply only to synchronizing identical modules. Skew 14 AC-coupled DC-coupled Skew after manual adjustment Sample Clock delay/adjustment 120 ps, measured 190 ps, measured 10 ps, measured 1.5 ps Compliance and Certifications Safety This product is designed to meet the requirements of the following electrical equipment safety standards for measurement, control, and laboratory use: IEC , EN UL , CSA C22.2 No Note For UL and other safety certifications, refer to the product label or the Online Product Certification section. Electromagnetic Compatibility This product meets the requirements of the following EMC standards for electrical equipment for measurement, control, and laboratory use: EN (IEC ): Class A emissions; Basic immunity EN (CISPR 11): Group 1, Class A emissions EN (CISPR 22): Class A emissions EN (CISPR 24): Immunity AS/NZS CISPR 11: Group 1, Class A emissions AS/NZS CISPR 22: Class A emissions FCC 47 CFR Part 15B: Class A emissions ICES-001: Class A emissions Note In the United States (per FCC 47 CFR), Class A equipment is intended for use in commercial, light-industrial, and heavy-industrial locations. In Europe, 14 Caused by clock and analog delay differences. No manual adjustment performed. Tested with a PXIe-1085 chassis with a 24 GB backplane with a maximum slot to slot skew of 100 ps. Measured at 23 C. 20 ni.com PXIe-5764 Specifications

21 Canada, Australia, and New Zealand (per CISPR 11), Class A equipment is intended for use only in heavy-industrial locations. Note Group 1 equipment (per CISPR 11) is any industrial, scientific, or medical equipment that does not intentionally generate radio frequency energy for the treatment of material or inspection/analysis purposes. Note For EMC declarations, certifications, and additional information, refer to the Online Product Certification section. CE Compliance This product meets the essential requirements of applicable European Directives, as follows: 2014/35/EU; Low-Voltage Directive (safety) 2014/30/EU; Electromagnetic Compatibility Directive (EMC) Online Product Certification Refer to the product Declaration of Conformity (DoC) for additional regulatory compliance information. To obtain product certifications and the DoC for this product, visit ni.com/ certification, search by model number or product line, and click the appropriate link in the Certification column. Environmental Management NI is committed to designing and manufacturing products in an environmentally responsible manner. NI recognizes that eliminating certain hazardous substances from our products is beneficial to the environment and to NI customers. For additional environmental information, refer to the Minimize Our Environmental Impact web page at ni.com/environment. This page contains the environmental regulations and directives with which NI complies, as well as other environmental information not included in this document. Waste Electrical and Electronic Equipment (WEEE) EU Customers At the end of the product life cycle, all NI products must be disposed of according to local laws and regulations. For more information about how to recycle NI products in your region, visit ni.com/environment/weee. 电子信息产品污染控制管理办法 ( 中国 RoHS) 中国客户 National Instruments 符合中国电子信息产品中限制使用某些有害物质指令 (RoHS) 关于 National Instruments 中国 RoHS 合规性信息, 请登录 ni.com/environment/rohs_china (For information about China RoHS compliance, go to ni.com/environment/rohs_china.) PXIe-5764 Specifications National Instruments 21

22 Information is subject to change without notice. Refer to the NI Trademarks and Logo Guidelines at ni.com/trademarks for information on NI trademarks. Other product and company names mentioned herein are trademarks or trade names of their respective companies. For patents covering NI products/technology, refer to the appropriate location: Help»Patents in your software, the patents.txt file on your media, or the National Instruments Patent Notice at ni.com/patents. You can find information about end-user license agreements (EULAs) and third-party legal notices in the readme file for your NI product. Refer to the Export Compliance Information at ni.com/legal/export-compliance for the NI global trade compliance policy and how to obtain relevant HTS codes, ECCNs, and other import/export data. NI MAKES NO EXPRESS OR IMPLIED WARRANTIES AS TO THE ACCURACY OF THE INFORMATION CONTAINED HEREIN AND SHALL NOT BE LIABLE FOR ANY ERRORS. U.S. Government Customers: The data contained in this manual was developed at private expense and is subject to the applicable limited rights and restricted data rights as set forth in FAR , DFAR , and DFAR National Instruments. All rights reserved A-01 February 5, 2018

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