Keysight M3300A PXIe Arbitrary Waveform Generator and Digitizer with Optional Real-Time Sequencing and FPGA Programming 500 MSa/s, 16 Bits, 2/4 Channel AWG 100 MSa/s, 14 Bits, 4/8 Channel Digitizer Data Sheet 02 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Fast, Flexible, High-Performance Control, Testing and Prototyping The M3300A combines high-performance with arbitrary waveform generator channels and digitizer channels in the same module providing the ideal tool for testing and prototyping in control or communications applications. Performance meets simplicity thanks to easy-to-use programming libraries, real-time sequencing technology (Hard Virtual Instrumentation or HVI), and graphical FPGA programming technology. Features Outputs (AWG) –– 500 MSa/s, 16 Bits, 2/4 Channels Inputs (digitizer) –– 100 MSa/s, 14 Bits, 4/8 Channels Output features –– AWGs, function generators, AM/FM/PM modulators –– Advanced triggering and marking functionalities Input features –– Powerful data acquisition system (DAQ) –– Advanced triggering and marking functionalities Less than 400 ns input to output latency Optional HW programming for high-performance applications –– Real-time sequencing (HVI technology) –– FPGA programming –– Xilinx Kintex-7 325T or 410T FPGA Up to 2 GB of onboard RAM (~ 1 Gsamples) Mechanical/interface –– 2 slots 3U (PXIe) –– Up to 1.6 GB/s transfer BW with P2P capabilities (PCIe Gen 2) –– Independent DMA channels for fast and efficient data transfer Applications General purpose AWGs & digitizers High-performance control Communications: BB/IF SDR, channel emulation, transceiver testing Aerospace & defense (A/D): RADAR, electronic warfare (EW) Hardware-in-the-loop (HIL), automated test equipment (ATE) Scientific research Quantum computing 03 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Programming Technology and Software Tools Software programming –– Easy-to-use native programming libraries for most common languages: C, C++, Visual Studio, LabVIEW, MATLAB, Python, and more Hardware programming (optional) –– Real-time sequencing (Hard Virtual Instrumentation or HVI technology) –– Graphical flowchart-style M3601A design environment (-HV1 option required on HW) –– Ultra-fast, fully-parallelized, hard real-time execution –– Ultra-fast, time-deterministic decision-making –– Off-the-shelf inter-module synchronization & data exchange –– FPGA programming –– Graphical M3602A FPGA design environment (-FP1 option required on HW) –– No FPGA know-how required –– Include high-level to low-level design elements: off-the-shelf DSP blocks, MATLAB/Simulink designs, Xilinx CORE Generator IP cores, Xilinx VIVADO/ISE projects, VHDL or Verilog code –– Ultra-fast, one-click compiling and on-the-fly programming No programming –– Ready-to-use SD1 SPF (software front panels) PXIe Arbitrary Waveform Generators, Digitizers and Combination Modules Outputs (AWGs) Inputs (Digitizers) Product Type Speed (MSa/s) Bits Ch BW (MHz) M3202A AWG 1000 14 2/4 DC-400 M3201A AWG 500 16 2/4 DC-200 M3102A Speed (MSa/s) Bits Ch BW (MHz) Digitizer 500 14 2/4 DC-200 M3100A Digitizer 100 14 4/8 DC-100 M3302A Combo 500 16 2 DC-200 500 14 2 DC-200 M3300A Combo 500 16 2/4 DC-200 100 14 4/8 DC-100 04 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Functional Block Diagram Output - Arbitrary Waveform Generator Channel 1 Channel x Function generator (FGx) Channel 1 output Frequency Phase Amplitude Offset Angle modulator FM Dual arbitrary waveform generator (AWGx) Amplitude modulator AM DAC LPF Channel x output Quadrature modulator IQ Channel n Odd channels only Even channels only Channel n output Dual modulation option only Figure 1. M3300A output functional block diagram, all channels have identical output structure Input - Digitizer Channel 1 Channel 1 output Channel x Input settings Channel x output Full scale, Z, coupling (as available) Prescaler ÷ Data acquisition (DAQx) Analog trigger Channel n Channel n output Figure 2. M3300A input functional block diagram, all channels have identical input structure 05 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet AWG Technical Specifications and Characteristics General characteristics M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments Inputs and outputs Channels (single-ended mode) 2 4 Out Channels (differential mode) 1 2 Out clock 1 1 1 Out Reference clock 2 1 1 In Triggers/markers 1, 3 1 1 In/out Reconfigurable Triggers/markers 2, 3 8 8 In/out Reconfigurable 500 500 MSa/s Fixed sampling clock Reference Differential uses 2 channels Output channels overview Sampling rate Voltage resolution Output frequency 16 DC Real-time BW Output voltage 16 200 DC 200 –1.5 1.5 –1.5 Bits 200 MHz 200 MHz 1.5 Volts Built-in functionalities Function generators 2 4 1 per channel Dual AWGs 2 4 1 per channel IQ modulators 2 4 1 per channel Frequency modulators 2 4 1 per channel Phase modulators 2 4 1 per channel Amplitude modulators 2 4 1 per channel DC offset modulators 2 4 1 per channel Onboard memory RAM memory 16 1. At front panel 2. At backplane 3. Markers available from firmware version v3.0 or later 2048 16 2048 MBytes 06 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet I/O specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments MSa/s Fixed sampling clock Output channels Sampling rate 500 500 Output frequency DC 200 DC 200 MHz Limited by a reconstruction filter Output voltage –1.5 1.5 –1.5 1.5 Volts On a 50 Ω load Source impedance 50 50 Ω 10 or 100 10 or 100 MHz Generated from the internal clock, user selectable 800 800 mVpp On a 50 Ω load Reference clock output Frequency Voltage Power 2 2 dBm On a 50 Ω load Source impedance 50 50 Ω AC coupled External I/O trigger/marker VIH 2 5 2 5 V VIL 0 0.8 0 0.8 V VOH 2.4 3.3 2.4 3.3 V On a high Z load VOL 0 0.5 0 0.5 V On a high Z load Input impedance 10 Source impedance TTL Speed 10 KΩ TTL 500 – 500 Mbps 07 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Function generators (FGs) specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments General specifications Function generators 2 4 – 1 per channel Waveform types 4 4 – Sinusoidal, triangular, square and DC Frequency range 0 200 0 200 MHz Frequency resolution 45 45 Bits Frequency resolution 5.7 5.7 µHz Phase range 0 360 0 360 Deg Phase resolution 24 24 Bits Phase resolution 21.5 21.5 µdeg Speed performance Frequency change rate 100 100 MChanges/s With HVI technology Frequency modulation rate 500 500 MSamples/s With AWGs and angle modulators Phase change rate 100 100 MChanges/s With HVI technology Phase modulation rate 500 500 MSamples/s With AWGs and angle modulators Amplitude and offset specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min 1.5 –1.5 Typ Max Units Comments 1.5 Volts Amplitude + offset values General specifications Amplitude/offset range –1.5 Amplitude/offset resolution 16 16 Bits Amplitude/offset resolution 45.8 45.8 µV Speed performance Amplitude/offset change rate 500 500 MChanges/s With HVI technology Amplitude/offset modulation rate 500 500 MSamples/s With AWGs and amplitude modulators 08 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Arbitrary waveform generators (AWGs) specifications M3300A-C24 Parameter Min Typ Max M3300A-C48 Min Typ Max Units Comments General specifications Dual AWGs 2 Aggregated speed (16 bits) 2000 Aggregated speed (32 bits) 1000 Waveform multiple 5 16-bit waveform length 15 32-bit waveform length 10 Waveform length efficiency Trigger 4 1 Dual AWG per output channel 4000 MSa/s For all onboard waveforms combined 2000 MSa/s For all onboard waveforms combined Samples Waveform length must be a multiple of this value 957M Samples Maximum depends on onboard RAM 478M Samples Maximum depends on onboard RAM % Effic. = waveform size/waveform size in RAM 5 957M 15 478M 10 93.5 93.5 Selec. Selec. External Trigger (input connector, backplane triggers), software trigger AWG specifications (16-bit single waveform) Speed 500 Resolution AWG destination 500 16 16 Selec. Selec. MSa/s Per AWG Bits Amplitude, offset, frequency or phase AWG specifications (16-bit dual waveform) Speed (waveform A) 500 500 MSa/s Per AWG Speed (waveform B) 500 500 MSa/s Per AWG Resolution (waveform A) 16 Resolution (waveform B) 16 Bits Bits 16 16 AWG destination (waveform A) Selec. Selec. Amplitude, offset or I AWG destination (waveform B) Selec. Selec. Frequency, phase or Q AWG specifications (32-bit single waveform) Speed 100 Resolution AWG destination 100 32 32 Selec. Selec. MSa/s Per AWG, minimum prescaler: 1 Bits Amplitude, offset, frequency or phase AWG specifications (32-bit dual waveform) Speed (waveform A) 100 Speed (waveform B) 100 100 MSa/s Per AWG, minimum prescaler: 1 100 MSa/s Per AWG, minimum prescaler: 1 Resolution (waveform A) 32 32 Bits Resolution (waveform B) 32 32 Bits AWG destination (waveform A) Selec. Selec. Amplitude or offset AWG destination (waveform B) Selec. Selec. Frequency or phase 09 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Angle modulators specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments General specifications Frequency modulators 2 4 1 per output channel Phase modulators 2 4 1 per output channel Carrier signal source Modulating signal source FGs FGs Table 3 on page 8 AWGs AWGs Table 5 on page 9 Frequency modulators (16-bit modulating waveform) Deviation –Dev. gain Modulating signal resolution +Dev. gain –Dev. gain 16 Modulating signal BW 0 Deviation gain 0 Deviation gain resolution +Dev. gain 16 250 0 200 0 16 MHz Bits AWG waveform 250 MHz AWG Nyquist limit 200 MHz 16 Bits Frequency modulators (32-bit modulating waveform) Deviation –Dev. gain Modulating signal resolution +Dev. gain –Dev. gain 32 +Dev. gain 32 MHz Bits AWG waveform AWG Nyquist limit Modulating signal BW 0 50 0 50 MHz Deviation gain 0 200 0 200 MHz Deviation gain resolution 16 16 Bits Phase modulators (16-bit modulating waveform) Deviation –Dev. gain Modulating signal resolution +Dev. gain –Dev. gain 16 +Dev. gain 16 Deg Bits AWG waveform AWG Nyquist limit Modulating signal BW 0 250 0 250 MHz Deviation gain 0 180 0 180 Deg Deviation gain resolution 16 16 Bits ~ 5.5 mdeg Phase modulators (32-bit modulating waveform) Deviation –Dev. gin Modulating signal resolution +Dev. gain –Dev. gain 16 +Dev. gain 16 Deg Bits AWG waveform is truncated AWG Nyquist limit Modulating signal BW 0 50 0 50 MHz Deviation gain 0 180 0 180 Deg Deviation gain resolution 16 16 Bits ~ 5.5 mdeg 10 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Amplitude modulators specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments General specifications Amplitude modulators 2 4 1 per output channel Offset modulators 2 4 1 per output channel Carrier signal source Modulating signal source FGs FGs Table 3 on page 8 AWGs AWGs Table 5 on page 9 Amplitude & offset modulators (16-bit modulating waveform) Deviation –Dev. gain Modulating signal resolution +Dev. gain –Dev. gain 16 Modulating signal BW 0 Deviation gain 0 Deviation gain resolution +Dev. gain 16 250 0 1.5 0 16 Vp Bits AWG waveform 250 MHz AWG Nyquist limit 1.5 Vp 16 Bits Limited by the output DAC Amplitude & offset modulators (32-bit modulating waveform) Deviation –Dev. gain Modulating signal resolution +Dev. gain –Dev. gain 16 +Dev. gain 16 Vp Bits AWG waveform is truncated AWG Nyquist limit Modulating signal BW 0 50 0 50 MHz Deviation gain 0 1.5 0 1.5 Vp Deviation gain resolution 16 16 Bits Limited by the output DAC 11 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet IQ modulators specifications M3300A Parameter Min Typ Max Units Comments General specifications IQ modulators 2 Carrier signal source Modulating signal source 1 per output channel FGs Table 3 on page 8 AWGs Table 5 on page 9 External I/O trigger/marker Amplitude deviation −1.5 Phase deviation −180 I modulating signal resolution 1.5 Vp 180 Deg 16 I modulating signal BW 0 250 Q modulating signal resolution 16 Q modulating signal BW 0 250 Bits AWG waveform MHz AWG Nyquist limit Bits AWG waveform MHz AWG Nyquist limit Clock system specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments MHz Fixed sampling clock General specifications Clock frequency 500 500 12 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet AC performance M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments General characteristics Analog output jitter <2 <2 ps RMS (cycle-to-cycle) AWG trigger to output jitter <2 <2 ps RMS (cycle-to-cycle) for any trigger referenced to the chassis clock; independent of input trigger jitter if input jitter < 4nS peak-to-peak Trigger resolution 10 Channel-to-channel skew 10 ns <20 <20 ps Between ch 0 & ch 1, and ch 2 & ch 3 <50 <50 ps Between any channel 150 150 ps Between modules, chassis dependant 2 Clock output jitter <2 <2 ps RMS (cycle-to-cycle) Clock accuracy and stability 25 25 ppm PXIe, cPCIe versions; chassis dependent 1. AC characteristics Spurious-free dynamic range (SFDR) Pout = 4 dBm, measured from DC to max frequency fout = 10 MHz 68 68 dBc fout = 80 MHz 64 64 dBc fout = 120 MHz 57 57 dBc fout = 160 MHz 54 54 dBc fout = 10 MHz <–105 <–105 dB fout = 40 MHz –85 –85 dB fout = 80 MHz –75 –75 dB fout = 120 MHz –88 –88 dB Crosstalk (adjacent channels) fout = 160 MHz –73 –73 dB fout = 200 MHz –85 –85 dB fout = 10 MHz <–105 <–105 dB fout = 40 MHz –86 –86 dB fout = 80 MHz –78 –78 dB fout = 120 MHz <–105 <–105 dB fout = 160 MHz –92 –92 dB fout = 200 MHz –100 –100 dB offset = 1 KHz <–127 <–127 dBc/Hz offset = 10 KHz <–133 <–133 dBc/Hz offset = 100 KHz <–138 <–138 dBc/Hz <–142 <–142 dBm/Hz Crosstalk (non-adjacent channels) Phase noise (SSB) Average noise power density 1. This value corresponds to a M9505A chassis. This value can be improved with an external chassis clock or a system timing module. 2. This value corresponds to a M9005A PXIe chassis. 13 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet AC performance, typical Figure 3. Single-tone spectrum @ fout = 10 MHz Figure 4. Single-tone spectrum @ fout = 80 MHz 14 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet AC performance, typical Figure 5. Single-tone spectrum @ fout = 120 MHz Figure 6. Single-tone spectrum @ fout = 160 MHz 15 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Digitizer Technical Specifications and Characteristics General characteristics M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments Inputs and outputs Channels 4 8 Out Reference clock 1 1 1 Out clock 2 Reference 1 1 In Triggers/markers1, 3 1 1 In/out Reconfigurable Triggers/markers 2, 3 8 8 In/out Reconfigurable Sampling rate 100 100 MSa/s Voltage resolution 14 14 Bits Input channels overview Input frequency 4 DC Real-time BW 100 DC 100 MHz 50 50 MHz Input conditioning blocks 4 8 1 per channel Analog trigger processors 4 8 1 per channel Data acquisition blocks 4 8 1 per channel Built-in functionalities Onboard memory RAM memory 1. 2. 3. 4. 16 2048 16 2048 MBytes At front panel At backplane Markers available from firmware version v3.0 or later 100 MHz refer to the Front End bandwidth. This digitizer can operate in 1st and 2nd Nyquist zones (using undersampling technique), but its real-time BW is limited by Nyquist to some 50 MHz. As an example for a band-limited signal of 70 MHz with a 10 MHz signal bandwidth the aliased component will appear between 25 to 35 MHz (30 ± 5 MHz). 16 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet I/O specifications Analog input characteristics Number of channels C24 or C48 Sampling rate 100 MSa/s option CLF Configurable inputs: impedance 50Ω or 1 MΩ (HiZ) Configurable inputs: Coupling AC or DC Input voltage range (50Ω) 400 mVpp to 6Vpp (continue: variable attenuator at input) Input voltage range (HiZ) 200 mVpp to 20Vpp (continue: variable attenuator at input) Bandwidth limit filters 100 MHz Effective number of bits (ENOB)1 10.8 bits @30MHz (typical) Noise floor -142 dBm/Hz @30 MHz (typical) SINAD 67 dB @30 MHz (typical) Spurious free dynamic range (SFDR) + Total Harmonic Distorsion 79 dBc (typical) M3300A Parameter Min Typ Max Units Comments 10 or 100 MHz Generated from the internal clock. User selectable Voltage 800 mVpp On a 50 Ω load Power 2 dBm On a 50 Ω load Source impedance 50 Ω AC coupled Reference clock output Frequency External I/O trigger/marker VIH 2 5 V VIL 0 0.8 V VOH 2.4 3.3 V On a high Z load VOL 0 0.5 V On a high Z load Input impedance 10 Source impedance TTL Speed KΩ 500 Mbps 17 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Data acquisition blocks (DAQs) specifications M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments General specifications DAQs 4 Aggregated speed 8 400 Acquisition burst multiple 800 5 Acquisition RAM capacity 15 Acquisition RAM capacity effic. Trigger 1 per channel 5 957M 15 957M 93.5 93.5 Selec. Selec. MSa/s For all onboard DAQs combined Samples Burst length must be a multiple of this value Samples Maximum depends on onboard RAM % Effic. = waveform size/waveform size in RAM Hardware trigger (analog channels, input trigger, backplane triggers), Software trigger DAQ specifications Speed 100 Resolution 100 14 14 MSa/s Per DAQ Bits Clock system specifications M3300A-C24 Parameter Min Typ Max M3300A-C48 Min Typ Max Units General specifications Clock frequency 100 100 MHz Comments 18 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet System Specifications Environmental specifications (PXI Express) M3300A-C24 Parameter Min Typ M3300A-C48 Max Min Typ Max Units Comments Slots PXI Express (CompactPCI Express compatible) – Automatic gen negotiation, chassis dependent System bus Slots PCI Express type PCI Express link 2 Gen 1 2 Gen 2 Gen 1 Gen 2 1 4 1 4 Lanes Automatic lane negotiation, chassis dependent PCI Express speed 400 1600 400 1600 MBytes/s Depends on # of lanes, chassis, congestion, and more Sustainable throughput 200 800 200 800 MPoints/s Depends on # of lanes, chassis, congestion, and more Power dissipation 3.3 V PXIe power supply 3 3 A ~ 10 W 12 V PXIe power supply 3.5 3.5 A ~ 40 W Environmental 1 Temperature range Operating Non-operating 0 to +55°C (10,000 feet) -40 to +70 °C (up to 15,000 feet) Max operative altitude 2000 m (10,000 feet) Operating Humidity range (%RH) 10 to 95% at 40 °C Non-operating Humidity range (%RH): 5 to 95 5 to 95% Calibration interval 1 year EMC Complies with European EMC Directive – IEC/EN 61326-1 – CISPR Pub 11 Group 1, class A This ISM device is in compliance with Canadian ICES-001 Cet appareil ISM est conforme à la norme NMB-001 du Canada. This ISM device is in compliance with Australian and New Zealand RCM This ISM device is in compliance with South Korea EMC KCC 1. Samples of this product have been type tested in accordance with the Keysight Environmental Test Manual and verified to be robust against the environmental stresses of Storage, Transportation and End-use; those stresses include but are not limited to temperature, humidity, shock, vibration, altitude and power line conditions. Test Methods are aligned with IEC 60068-2 and levels are similar to MIL-PRF-28800F Class 3. 19 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Ordering Information 1 Product Description M3300A PXI combo AWG + digitizer: 500/100 MSa/s, 16/14 bits Options Description M3300A-C24 / -C48 Two channels AWG + four channels DIG 2 / four channels AWG + eight channels DIG M3300A-CLF Fixed sampling clock, low jitter 2 M3300A-DM1 Dual modulation capability for the AWG (amplitude and angle simultaneously) M3300A-M01 / -M12 / -M20 Memory 16 MB, 8 MSamples 2 / 128 MB, 60 MSamples / 2 GB, 1 GSamples HW programming options Description M3300A-HVI Enabled HVI programming, requires an HVI design environment license (M3601A) M3300A-FP1 Enabled FPGA programming, requires -K32 or -K41 option and an FPGA design environment license (M3602A) M3300A-K32 / -K41 FPGA, Xilinx 7K325T / 7K410T, required for -FP1 option only (needs memory option -M20) Related software Description M3601A HVI design environment M3602A FPGA design environment 1. All options must be selected at time of purchase and are not upgradable 2. These options represent the standard configuration 20 | Keysight | M3300A PXIe Arbitrary Waveform Generator and Digitizer Combo with Optional Real-Time Sequencing and FPGA Programming - Data Sheet Evolving Since 1939 Our unique combination of hardware, software, services, and people can help you reach your next breakthrough. We are unlocking the future of technology. From Hewlett-Packard to Agilent to Keysight. myKeysight www.keysight.com/find/mykeysight A personalized view into the information most relevant to you. http://www.keysight.com/find/emt_product_registration Register your products to get up-to-date product information and find warranty information. www.pxisa.org PCI eXtensions for Instrumentation (PXI) modular instrumentation delivers a rugged, PC-based high-performance measurement and automation system. 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