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Keysight Technologies (Agilent HP) Generators
132 models with full specifications in Generators.
Keysight Technologies (formerly Agilent and Hewlett-Packard) offers a diverse catalog of signal, function, pulse, and arbitrary waveform generators. These instruments serve critical roles across the engineering lifecycle, spanning low-frequency analog development, high-speed digital receiver testing, and millimeter-wave radar design. The generator portfolio is structured into distinct tiers, from economical benchtop sources to high-performance microwave generators and modular system components. This overview details the primary technical families and specifications, assisting engineers and technical buyers in selecting the appropriate instrument for their application requirements.
- Microwave Upper Frequency
- Up to 67 GHz (operational to 70 GHz) on E8257D
- Vector RF Bandwidth
- Up to 160 MHz RF modulation bandwidth on E4438C
- Low Phase Noise Limit
- -146 dBc/Hz at 1 GHz carrier, 20 kHz offset (N5182B / N5181B)
- Maximum Modular AWG Sample Rate
- 12 GSa/s (12-bit resolution) on M8190A
All models
| Model | Type | Interfaces | Output Impedance | Frequency Range |
|---|---|---|---|---|
| 33522B | Multifunction | — | 50 Ω (nominal) | — |
| 346C | Sources, Noise | — | — | 10 MHz to 26.5 GHz (Standard) / 1 to 50 GHz (Option K01) |
| 83731B | Signal | HP-IB (IEEE-488) | 50 Ω nominal | — |
| 8663A | Signal | HP-IB, CIIL / MATE (Option 700) | 50 Ω | 100 kHz to 2560 MHz |
| E5052B | Sources, Signal | GPIB, LAN, USB | — | 10 MHz to 7 GHz |
| 33220A | Function | USB, GPIB, LAN | — | — |
| 81134A | Pattern | — | — | — |
| 83640L | CW | GPIB (IEEE‑488) | — | 10 MHz – 40 GHz |
| 8642B | Signal | GPIB (IEEE-488) | — | — |
| M8195A | Function | AXIe (PCIe backplane via Keysight AXIe chassis); front‑panel analog/clock/trigger I/O | 50 Ω | — |
| 81101A | Pulse | GPIB (IEEE-488.2) | — | 1 mHz to 50 MHz |
| 8114A | Pulse | GPIB (IEEE-488.2) | — | 1 Hz to 15 MHz |
| 83630L | CW | GPIB (IEEE-488) | 50 Ω | 10 MHz to 26.5 GHz |
| 83711B | CW | GPIB (IEEE-488.2) | — | 1 GHz to 20 GHz |
| 83731A | Signal | GPIB (HP-IB) | 50 Ohm | 1.0 GHz to 20 GHz |
| 8657A | Signal | GPIB (IEEE-488) | 50 ohms | — |
| E4428C | Signal | GPIB, LAN, RS-232, Auxiliary I/O | 50 ohms (nominal) | — |
| E8241A | Signal | — | 50 Ω (nominal) | — |
| N4001A | Noise | Multi-pin SNS smart connector (provides +28 V pulse bias and digital communications) | — | 10 MHz to 18 GHz |
| 33210A | Function | USB 2.0, LAN (LXI Class C), GPIB (IEEE-488.2) | — | — |
| 83732A | Signal | GPIB | 50 Ohms | 10 MHz to 20 GHz |
| 8643A | Signal | GPIB (IEEE-488.2) | 50 ohms | 252 kHz to 1030 MHz (expandable to 2060 MHz with Option 002) |
| 8672A | Signal | HP-IB (IEEE-488) | — | 2.0 to 18.0 GHz (usable to 18.599997 GHz) |
| E4420B | Signal | GPIB (IEEE-488.2), RS-232 | 50 ohms | 250 kHz to 2.0 GHz |
| E4422B | Signal | GPIB, RS-232 | — | 250 kHz to 4.0 GHz |
| E4430B | Signal | GPIB, RS-232 | 50 ohms | 250 kHz to 1 GHz |
| 41501B | Pulse | Dedicated host interface connector for 4155/4156 connection | — | — |
| 81160A | Arbitrary | — | — | — |
| 8130A | Pulse | GPIB (HP-IB) as standard | — | 10 Hz to 300 MHz |
| 83650L | CW | GPIB (IEEE-488) | 50 ohms | 10 MHz to 50 GHz |
| 8644A | Signal | GPIB (IEEE-488) | 50 ohms | — |
| 8648A | Signal | — | 50 Ohms | 100 kHz to 1000 MHz |
| 8656B | Signal | GPIB (IEEE-488) | 50 ohms nominal | 100 kHz to 990 MHz |
| 8657D | Signal | GPIB (IEEE-488) | 50 ohms | 100 kHz to 1030 MHz |
| E4400B | Signal | GPIB (IEEE-488.2), RS-232 | 50 ohms | 250 kHz to 1000 MHz |
| E4425B | RF | GPIB (IEEE-488.2), RS-232 | 50 ohms | 250 kHz to 3.0 GHz |
| E8267C | Signal | — | 50 ohms (nominal) | 250 kHz to 20 GHz |
| E8663B | Signal | — | 50 ohms nominal | — |
| N9310A | Signal | — | 50 ohms | — |
| 3324A | Function | GPIB (HP-IB) | 50 Ω | — |
| 33521A | Function | USB 2.0 Host, USB 2.0 Device, LAN (10/100 Base-T, LXI Class C) standard; GPIB (IEEE-488.2) optional | 50 Ω | — |
| 8112A | Pulse | HP-IB (GPIB) | 50 Ohm | — |
| 8116A | Function | HP-IB (IEEE-488) | 50 Ω ±10% | — |
| 81180B | Arbitrary | LAN, USB, GPIB | 50 Ω | — |
| 8131A | Pulse | GPIB (HP-IB) | — | 10 Hz to 500 MHz |
| 83711A | CW | GPIB (HP-IB) | 50 Ω | 1.0 to 20.0 GHz |
| 8647A | Signal | GPIB (IEEE-488) | 50 ohms | — |
| E4426B | Signal | GPIB (IEEE-488.2), RS-232 | 50 ohms | — |
Microwave PSG Series and Low-Noise Performance
The PSG series represents Keysight's highest-tier analog and vector microwave sources. The E8257D PSG provides analog microwave signals up to 67 GHz (operational to 70 GHz) with standard AM, FM, phase, and pulse modulation options. It achieves a typical phase noise of -115 dBc/Hz at a 10 kHz offset for a 10 GHz carrier, serving as a reliable choice for local oscillator substitution. For vector applications, the E8267D integrated microwave vector signal generator extends these capabilities up to 44 GHz with an internal baseband generator. Where the absolute lowest close-to-carrier phase noise is required for RF receiver testing, the E8663D offers specialized analog signal generation up to 9 GHz.
Mid-Range RF Signal Generators: MXG, EXG, and ESG
Keysight divides its standard 9 kHz to 6 GHz RF generator platform into high-performance MXG and cost-effective EXG families.
- MXG Series: Instruments like the N5182B (vector) and N5181B (analog) are optimized for low phase noise (-146 dBc/Hz at 1 GHz carrier, 20 kHz offset) and fast frequency and amplitude switching to optimize manufacturing throughput.
- EXG Series: Models such as the N5172B (vector) and N5171B (analog) deliver parametric component testing capabilities at lower price points, offering up to 120 MHz baseband bandwidth on the N5172B.
- ESG Legacy Series: Earlier platforms such as the E4438C and E4421B remain common in legacy environments. The E4438C offers an 80 MHz internal baseband generator bandwidth and is widely utilized for legacy wireless standard emulation.
Arbitrary Waveform and Function Generators
For direct digital generation, Keysight's portfolio ranges from basic laboratory benchtop tools to high-throughput modular AWGs.
- Trueform Waveform Generators: The 33622A 120 MHz 2-channel generator utilizes Trueform architecture to perform point-by-point arbitrary waveform generation with 1 GSa/s sample rate and 14-bit vertical resolution, minimizing the jitter and skipped points found in older direct digital synthesis (DDS) units like the 33120A.
- Modular AWGs: The AXIe-based M8190A arbitrary waveform generator is designed for high-speed RF and digital logic emulation, generating up to 12 GSa/s with 12-bit resolution or 8 GSa/s with 14-bit resolution, and sporting a DC to 5 GHz analog bandwidth.
Pulse, Pattern, and Broadband Noise Generators
Keysight's pulse and pattern generators address high-speed digital timing validation and optical component characterization. Mainframes like the 81110A support modular output configurations, reaching frequencies up to 330 MHz when paired with the 81112A output module. For faster logic architectures, the 8133A pulse generator operates from 33 MHz to 3 GHz, providing transition times under 100 ps for precise signal integrity testing. Beyond structured signals, Keysight also provides specialized validation tools like the 346B broadband RF noise source, which covers 10 MHz to 18 GHz with a nominal Excess Noise Ratio (ENR) of 15.2 dB.
Frequently asked questions
- What is the primary difference between Keysight's MXG and EXG signal generator series?
- The MXG series (such as the N5182B) is built for applications requiring low phase noise and fast switching speed. The EXG series (such as the N5172B) is optimized to balance cost and performance for standard RF component manufacturing and receiver verification.
- Can the E8257D PSG signal generator be used beyond 70 GHz?
- Yes. The E8257D supports frequency extension up to 325 GHz when integrated with external millimeter-wave modules, such as those from Oleson Microwave Labs.
- How does Keysight's Trueform technology in generators like the 33622A differ from older DDS systems?
- Trueform technology generates arbitrary waveforms point-by-point without skipping or repeating data points. Traditional DDS systems, such as the 33120A, can skip or interpolate points to match the target frequency, which introduces higher jitter and distortion.