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Agilent 30 MHz Function/Arbitrary Waveform Generators Data Sheet Lowest jitter and total harmonic distortion in its class and true point-by-point arbitrary waveforms that are always alias-protected for exceptional accuracy 33521A 1-Channel Function/Arbitrary Waveform Generator 33522A 2-Channel Function/Arbitrary Waveform Generator Achieving a New Level of Accuracy and Flexibility Everyday you’re developing new technologies that are faster, more efficient, smaller, greener and require more accuracy than ever before. Agilent 33500 Series function/ arbitrary waveform generators offer the highest signal fidelity and implement a new breakthrough technology that provides you with the ability to generate more accurate arbitrary waveforms. With 10x better jitter than anything in their class, they offer unparalleled control of signal frequency for your most challenging measurements.
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2 Signal fidelity You depend upon the fidelity of generated signals to verify the development of your designs. The higher the fidelity of the generated signal, the more assurance the device under development will perform to your exacting standards. The 33500 Series function/arbitrary waveform generators have < 40 ps jitter for any signal ¯ ten times better than existing function/arbitrary waveform generators. They provide 16-bit resolution, which is the highest resolution in their class. Combined with less than .04% total harmonic distortion and 250 MSa/s, 16-bit sampling, optional...
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3 Specifications Unless otherwise stated, all specifications apply with a 50 Ù resistive load. Instrument characteristics Models & options 33521A 1-channel 33522A 2-channel Option 002 Increases arbitrary waveform memory to 16 MSa/channel Option 010 OCXO timebase for ultra-high stability Option 400 GPIB interface Waveforms Standard Sine, square, ramp, pulse, triangle, Gaussian noise, PRBS (Pseudorandom Binary Sequence), DC Built-in arbitrary Cardiac, exponential fall, exponential rise, Gaussian pulse, Haversine, Lorentz, D-Lorentz, negative ramp, sinc User-defined arbitrary Up to 1 MSa (16...
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4 Waveform characteristics, continued Square & pulse Frequency range 1 ìHz to 30 MHz, 1 ìHz resolution Rise and fall times (nom) Square: 8.4 ns, fixed Pulse: 8.4 ns to 1 ìs, independently variable, 100-ps or 3-digit resolution Overshoot (typ) < 2% Duty cycle 0.01% to 99.99% 8 Pulse width 16 ns minimum, 100-ps resolution Jitter (cycle-to-cycle, typ) < 40 ps rms Built-in arbitrary Cardiac, exponential fall, exponential rise, Gaussian pulse, Haversine, Lorentz, D-Lorentz, negative ramp, sinc Ramp & triangle Frequency range 1 ìHz to 200 kHz, 1 ìHz resolution Ramp symmetry 0.0% to 100.0%, 0.1%...
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5 Output characteristics Isolation Outputs Connector shells for channel output(s), Sync, and Mod In are connected together but isolated from the instrument’s chassis. Maximum allowable voltage on isolated connector shells is ±42 Vpk Signal output Output impedance (nom) 50 Ù On, off, inverted User-selectable for each channel Voltage limit User-definable VMAX and VMIN limits Overload protection Output turns off automatically when an overload is applied Instrument will tolerate a short-circuit to ground indefinitely Built-in arbitrary Cardiac, exponential fall, exponential rise, Gaussian...
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6 Modulation types and operating modes Carrier AM FM PM FSK BPSK PWM Sum Burst Sweep Sine and Square œ œ œ œ œ œ œ œ Pulse œ œ œ œ œ œ œ œ œ Triangle and Ramp œ œ œ œ œ œ œ œ Gaussian Noise œ œ œa PRBS œ œ œ œ œ Single ARB œ œb œb œ œ Sequenced ARB œ œ Modulating signals Carrier Sine Square Triangle / Ramp Noise PRBS ARB External Sine œ œ œ œ œ œ œ Square and Pulse œ œ œ œ œ œ œ Triangle and Ramp œ œ œ œ œ œ œ Gaussian Noise œ œ œ œ œ œ PRBS œ œ œ œ œ œ ARB œ œ œ œ œ œ Modulation characteristics Amplitude modulation (AM) Source Internal or external, or either channel with 33522A Type...
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7 Burst 9 Type Counted or gated Count 1 to 1x108 cycles, or infinite Gated Produces complete cycles while Ext Trig is asserted Start/stop phase 4 -360° to 360°, 0.1° resolution Trigger source Internal Timer or Ext Trig connector Marker Adjustable to any cycle; indicated by the trailing edge of the Sync pulse Sweep 7 Type Linear, Logarithmic, List (up to 128 user-defined frequencies) Operation Linear and Logarithmic sweeps are characterized by a Sweep time (during which the frequency changes smoothly from Start to Stop), a Hold time (during which the frequency stays at the Stop frequency),...
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8 Sync/marker output Connector Front-panel BNC, isolated from chassis Functions Sync, sweep marker, burst marker, or arbitrary waveform marker Assignment Channel 1 or channel 2 Polarity Normal or inverted Voltage level (nom) 3 Vpp into open circuit, 1.5 Vpp into 50 Ù Output impedance (nom) 50 Ù Minimum pulse width (nom) 16 ns External trigger/gate Connector Rear-panel BNC, chassis-referenced Function Input or output Assignment Channel 1, channel 2, or both (as input) Channel 1 or channel 2 (as output) Polarity Positive or negative slope Voltage level (nom) 0 V to 0.4 V for low, > 2.3 V for...
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9 Frequency reference output Connector Rear-panel BNC, chasis-referenced Frequency (nom) 10 MHz Output impedance (nom) 50 Ù, AC-coupled Level (nom) 0 dBm, 632 mVpp into 50 Ù Real-time clock/calendar Set and read Year, month, day, hour, minute, second Battery CR-2032 coin-type, replacable, >5-year life (typ) Programming times (meas.) Configuration change speed LAN (socket) LAN (VXI-11) USB 2.0 GPIB Change function 5 ms 6 ms 5 ms 5 ms Change frequency 2 ms 3 ms 2 ms 3 ms Change amplitude 20 ms 20 ms 19 ms 22 ms Select user arb (16 k) 9 ms 11 ms 9 ms 9 ms Arbitrary waveform download speed to...
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