
Vector Signal Generator Comparison: Ceyear 1434AV/BV vs. R&S SMCV100B vs. Keysight N5182B
Choosing the right vector signal generator is an important decision for RF and wireless test applications. Frequency coverage, modulation bandwidth, output power, spectral purity, vector modulation performance, waveform memory, digital modulation capabilities, and overall system flexibility can significantly affect the efficiency and cost of a test setup.
In this comparison, we look at three popular RF/vector signal generator platforms: Ceyear 1434AV/BV, Rohde & Schwarz SMCV100B, and Keysight MXG N5182B.
The comparison is based on the manufacturers' published technical documentation and focuses on the parameters that are most relevant for general-purpose RF testing, communications research and development, production testing, and educational applications.
Three Different Approaches to Vector Signal Generation
Although these instruments belong to the same general product category, they are positioned somewhat differently.
The Ceyear 1434AV/BV is designed as an economical and compact vector signal generator for general communications, industrial electronics, and education. It combines RF signal generation with an integrated vector/baseband generator and supports a broad selection of digital modulation formats as standard.
The R&S SMCV100B is positioned as a more modular platform targeting applications such as cellular communications, connectivity, broadcast, and GNSS testing. Its extensive option ecosystem and WinIQSIM2-based signal-generation capabilities make it particularly attractive when a test system requires a broad range of digital standards and advanced signal-generation functions.
The Keysight MXG N5182B is a well-established general-purpose RF/vector signal generator aimed at demanding R&D and production environments. Its architecture offers extensive options for phase noise, high output power, fast switching, arbitrary waveform generation, and external I/Q applications.
This means that the best choice depends not only on maximum specifications, but also on the required test functions, configuration, and overall system budget.
Frequency Coverage: Up to 7.5 GHz
All three platforms provide frequency coverage suitable for a wide range of wireless and RF applications.
The Ceyear 1434AV covers 9 kHz to 3 GHz as standard and can be extended to 6 GHz. The 1434BV extends the range natively to 7.5 GHz.
The R&S SMCV100B covers from 4 kHz to 3 GHz, with options extending the frequency range to 6 GHz and 7.125 GHz.
The Keysight N5182B covers 9 kHz to 3 GHz or 6 GHz, with an option combination extending the frequency range to 7.2 GHz.
For engineers working with conventional RF, cellular, WLAN, IoT, and other sub-8-GHz technologies, all three platforms provide appropriate frequency coverage. The Ceyear 1434BV has the advantage of reaching 7.5 GHz without requiring a frequency-extension option.
Wide Internal Modulation Bandwidth
One of the most important differences becomes apparent when comparing the internal vector/baseband capabilities.
The Ceyear 1434AV/BV provides 120 MHz of internal modulation bandwidth as standard, with an optional upgrade to 240 MHz. Its internal baseband generator supports two I/Q channels and symbol rates up to 37.5 Msps as standard or 75 Msps with the 240 MHz option.
The R&S SMCV100B starts with a 60 MHz standard configuration and can be expanded through its K521/K522/K523 options to reach 240 MHz.
The Keysight N5182B provides 80 MHz of internal ARB bandwidth with Option 656, expandable to 160 MHz with Options 656 and 657. Its architecture also supports an external I/Q RF path with up to 200 MHz nominal bandwidth, enabling wider-bandwidth I/Q signal generation for advanced RF applications.
For users who need substantial internal vector modulation bandwidth without building a highly optioned configuration, the Ceyear 1434AV/BV offers a particularly attractive balance between bandwidth and integrated functionality.
Strong Vector Modulation Performance
Modern wireless testing increasingly requires accurate generation of complex digitally modulated signals.
The Ceyear 1434AV/BV supports more than 30 standard real-time digital modulation patterns, including PSK, QAM, FSK, APSK, ASK, and MSK. QAM formats are supported up to 4096QAM, providing flexibility for demanding digital communications experiments.
Ceyear also specifies vector modulation performance of less than 1% EVM under defined conditions, while the product documentation provides measured examples including 0.5% EVM for 5G NR at 3.5 GHz.
The 1434AV/BV also supports 5G NR, LTE, WCDMA, GSM, WLAN, LoRa, Bluetooth, and other communication signal-generation workflows when used together with the appropriate simulation software.
This makes the 1434AV/BV suitable not only for basic RF signal generation, but also for wireless communications R&D, receiver testing, transmitter evaluation, and production test applications.
High Dynamic Range and Practical RF Output
The Ceyear 1434AV/BV combines a wide output-level range with an electronic attenuator designed for high dynamic-range operation.
The published specifications show output levels down to –120 dBm above 100 kHz, while maximum output power reaches +20 dBm from 1 MHz to 3 GHz and +15 dBm from 3 GHz to 7.5 GHz for the standard configuration.
The generator also incorporates reverse-power protection, with a rated capability of up to 50 W AC / 50 V DC from 1 MHz to 1 GHz, and decreasing permissible reverse power at higher frequencies.
For many laboratory and production applications, this provides the dynamic range and protection required for routine RF testing without moving into a significantly more expensive high-end signal-generator platform.
Spectral Purity for RF and Communications Testing
Spectral purity is another critical consideration when selecting a vector signal generator.
The Ceyear 1434AV/BV specifies harmonic performance better than –30 dBc up to 6 GHz and better than –55 dBc from 6 to 7.5 GHz. Non-harmonic spurious performance is specified down to –70 dBc over portions of the frequency range.
The standard phase-noise performance is specified at less than –122 dBc/Hz at 1 GHz at 10/20 kHz offset. For applications requiring improved phase-noise performance, Ceyear offers the H04 low-phase-noise option.
Keysight and Rohde & Schwarz offer more extensive dedicated low-phase-noise options, which can be important for specialized applications where phase noise is one of the primary performance requirements.
Compact Design for Laboratory and Rack Applications
Physical size can become an important consideration when multiple RF instruments need to be installed in the same test system.
The Ceyear 1434AV/BV uses a 2U narrow half-rack chassis measuring approximately 213 × 88.1 × 300 mm, with power consumption below 100 W. The design allows two units to be installed side-by-side in a standard 19-inch rack.
The instrument also features a 5-inch capacitive touchscreen and supports USB and LAN remote control. SCPI command recording can automatically generate example projects in Qt, C#, and C++, simplifying integration into automated test systems.
This combination of compact dimensions, low power consumption, touchscreen operation, and programming support makes the 1434AV/BV particularly practical for laboratories, educational institutions, mobile test setups, and automated production systems.
Ceyear 1434AV/BV: Where Does It Fit?
The comparison shows that the three generators are not simply interchangeable alternatives.
Rohde & Schwarz SMCV100B offers a particularly extensive ecosystem for advanced digital standards, broadcast, GNSS, connectivity, and specialized signal-generation applications. Its modular option architecture makes it suitable for users who need a broad and highly configurable test platform.
Keysight MXG N5182B provides strong performance in areas such as phase noise, fast switching, arbitrary waveform generation, and advanced I/Q functionality. It is well suited to demanding R&D and production environments where the available option ecosystem is an important part of the test solution.
Ceyear 1434AV/BV, on the other hand, focuses on delivering a broad set of vector signal-generation capabilities in a compact and economical platform. Its combination of up to 7.5 GHz frequency coverage, 120/240 MHz internal modulation bandwidth, integrated real-time digital modulation, 4096QAM support, 1 Gsample waveform memory, and compact 2U half-rack construction makes it an attractive alternative for many general-purpose RF and wireless test applications.
Which Vector Signal Generator Should You Choose?
There is no single winner for every application.
If your priority is maximum ecosystem depth, advanced digital standards, specialized broadcast/GNSS testing, or highly configurable test environments, the R&S SMCV100B can be a strong choice.
If you need very low phase noise, high-speed switching, extensive arbitrary waveform capabilities, and advanced I/Q functionality, the Keysight MXG N5182B is a powerful platform.
If your priority is a cost-effective vector signal generator with wide internal modulation bandwidth, integrated digital modulation, broad RF coverage, compact dimensions, and strong performance for general communications and RF testing, the Ceyear 1434AV/BV deserves serious consideration.
The complete comparison table below provides a detailed parameter-by-parameter view of the three platforms, including frequency characteristics, output power, spectral purity, analog and vector modulation, baseband capabilities, interfaces, mechanical specifications, and representative options.
| Parameter | Ceyear 1434AV/BV | R&S SMCV100B | Keysight MXG N5182B |
| General Overview | |||
| Manufacturer | Ceyear (China) | Rohde & Schwarz (Germany) | Keysight Technologies (USA) |
| Positioning | Economical / cost-effective vector signal generator for general communications, industrial electronics and education test needs | Mid/high-performance modular vector signal generator, broadcast + cellular/connectivity + GNSS test platform | General-purpose “workhorse” RF/vector signal generator |
| Chassis / form factor | 2U half-rack width, front 5" capacitive touchscreen; narrow chassis allows two units side-by-side in a 19" rack | 2 HU half-rack width, front 5" capacitive touchscreen | Standard 1U-class benchtop / rack instrument (88 mm H), front keypad + display |
| Documentation reference | Datasheet “1434 series Vector Signal Generator” (2026.04) | Specifications, Version 17.00, September 2025 | Data sheet, published 5991-0038EN (Feb 2023, rev. through 2025) |
| Frequency Characteristics | |||
| Frequency range | 1434AV: 9 kHz – 3 GHz (std), 9 kHz – 6 GHz (option H20-06) 1434BV: 9 kHz – 7.5 GHz | 4 kHz – 3 GHz (B103, mandatory base) 4 kHz – 6 GHz (+ KB106) 4 kHz – 7.125 GHz (+ KB106 + KB107) | 9 kHz – 3 GHz (Opt. 503) 9 kHz – 6 GHz (Opt. 506) 9 kHz – 7.2 GHz (Opt. 506 + FRQ, N5182B only) |
| Frequency resolution | 0.001 Hz | 0.001 Hz | 0.001 Hz |
| Frequency switching speed | ≤ 5 ms | < 5 ms (to specified accuracy, fast I/Q optimization mode) | ≤ 5 ms typical (standard); ≤ 1.15 ms / ≤ 900 µs with Option UNZ |
| Internal reference aging | ±5×10⁻¹⁰/day (after 30 days), ±5×10⁻⁸/year | ≤ 1×10⁻⁶/year (after 30 days uninterrupted operation) | < 5×10⁻¹⁰/day (after 30 days), < 1×10⁻⁷/year |
| Frequency accuracy (factory cal.) | ±3×10⁻⁸ (25 °C ± 10 °C) | < 1×10⁻⁷ at time of calibration | Initial achievable calibration accuracy ± 4×10⁻⁸ (±40 ppb) |
| External reference input | 1–100 MHz (step 1 MHz), –5 to +10 dBm; or 1 GHz, –10 to +5 dBm | 10 MHz standard (Option 1ER not listed here); 0 to +16 dBm, 50 Ω | 10 MHz standard, 1–50 MHz with Option 1ER; –3 to +20 dBm, ±1 ppm lock range |
| Reference output | 10 MHz: > +4 dBm; 1 GHz: > –10 dBm | 10 MHz square wave, +7 to +13 dBm | 10 MHz, ≥ +4 dBm nominal |
| Sweep / list mode | Step sweep, List sweep | Step sweep and list sweep (freq. + level); dwell 10 ms–100 s | Step sweep and list sweep; dwell 100 µs–100 s; up to 65,535 (step) / 3,201 (list) points |
| Output Power / Level Characteristics | |||
| Settable level range | –90 to –120 dBm (min.) up to +5 to +20 dBm (max., freq.-dependent, standard) | –145 dBm to +16 dBm (standard); up to +25 dBm with Option K31 | –144 dBm to +19 dBm (standard); to +30 dBm with Option 1EA |
| Typical maximum output power | +20 dBm (1 MHz–3 GHz); +15 dBm (3–7.5 GHz); lower below 1 MHz | +15 to +20 dBm (typ., ≤ 6 GHz); up to +25 dBm with K31 option (< 10 MHz) | +18 dBm (10 MHz–3 GHz, std.) / +24–26 dBm with Opt. 1EA; +13–16 dBm at band edges |
| Level resolution | 0.01 dB | 0.01 dB | 0.01 dB |
| Level accuracy | ±0.7–±0.9 dB typical (–90 to –50 dBm and above, 25 °C ± 10 °C) | ±0.3–±1.8 dB depending on range/frequency (18–33 °C) | 0.5–±1.8 dB depending on range/frequency (20–30 °C) |
| Step attenuator | Electronic, large dynamic range | — (solid-state ALC) | 0–130 dB in 5 dB steps, electronic |
| VSWR | < 1.6 (100 kHz–6 GHz), < 1.8 (6–7.5 GHz) | < 2.0 typ. (200 kHz–4.5 GHz), < 2.5 typ. (4.5–6 GHz) | < 1.3:1 to < 1.9:1 (band- and attenuator-state-dependent) |
| Max. reverse power | 50 W AC / 50 V DC (1 MHz–1 GHz); down to 10 W (2–7.5 GHz) | 2 W (1 MHz–7.125 GHz); 35 VDC max | 50 W (< 1 GHz) → 20 W (2–6 GHz); 50 VDC max |
| Amplitude switching speed | (covered under frequency switching, ≤ 5 ms) | N/A (not separately specified) | ≤ 5 ms typ. (standard); ≤ 750/500 µs (Option UNZ, CW/list) |
| RF output connector | N-type female, 50 Ω | N-type female, 50 Ω | N-type female, 50 Ω |
| Spectral Purity | |||
| SSB phase noise @ 1 GHz, 20 kHz offset | < –122 dBc/Hz (10/20 kHz offset) | < –100 dBc/Hz (standard); < –125 dBc/Hz (Option K709 low-noise) | –131 to –134 dBc/Hz (standard); –141 to –146 dBc/Hz (Option UNX) |
| Harmonics | < –30 dBc (100 kHz–6 GHz); < –55 dBc (6–7.5 GHz) | < –30 dBc (100 kHz–7.125 GHz, full-scale I/Q) | < –35 dBc (standard, 9 kHz–3 GHz); < –30 dBc (Option 1EA) |
| Non-harmonic / sub-harmonic spurs | Non-harmonics < –56 to –70 dBc; sub-harmonics < –55 to –80 dBc | Non-harmonics < –52 to –63 dBc (> 10 kHz offset from carrier) | Non-harmonics –65 to –87 dBc (std.); sub-harmonics –74 to –77 dBc typ. |
| Residual FM | (not separately specified) | < 2 Hz (300 Hz–3 kHz, weighted ITU-T, @ 1 GHz) | < N × 2 Hz (300 Hz–3 kHz BW, CCITT rms) |
| Residual AM | (not separately specified) | < 0.08% (4 kHz–100 MHz); < 0.05% (100 MHz–7.125 GHz) | < 0.01% (100 kHz–3 GHz, measured) |
| Analog Modulation (AM / FM / φM / Pulse) | |||
| Frequency modulation | Max deviation N×4 MHz; accuracy < ±(2% set + 20 Hz); rate DC–100 kHz | Max deviation 4 MHz; accuracy < 1% of setting; via baseband (Option K197) | Max deviation N×4 MHz (Option UNT); accuracy < ±2% + 20 Hz |
| Phase modulation | Max deviation N×5 rad | Max deviation 6 rad; via baseband (Option K197) | Max deviation N×2 rad normal BW, N×0.2 rad high-BW mode (Option UNT) |
| Amplitude modulation | Max depth > 90%; accuracy ±(4%×depth + 1%) | Max depth 100%, linear/exponential; via baseband (Option K197) | Max depth 100%, linear or exponential (Option UNT) |
| Pulse modulation | On/off ratio ≥ 80 dB; rise/fall ≤ 15 ns; min. pulse width 20 ns | On/off ratio > 80 dB (meas.); rise/fall < 15 ns; min. pulse width 50 ns (Option K198, via baseband) | On/off ratio > 80 dB; rise/fall < 10 ns; min. pulse width > 2 µs ALC-on / > 20 ns ALC-off (Option UNW) |
| Internal Baseband Generator / ARB | |||
| Standard modulation bandwidth | 120 MHz standard, 240 MHz max (Option H31-240) | 60 MHz standard (Option 656); up to 240 MHz with Options K521/K522/K523 | 80 MHz (Option 656); 160 MHz (Option 656 and 657), external I/Q RF path up to 200 MHz nominal |
| Baseband channels | 2 (I/Q) | 2 (I/Q) | 2 (I/Q) |
| Max symbol rate | 37.5 Msps standard; 75 Msps (Option H31-240) | 50 MHz standard; up to 150 MHz (custom digital modulation, Option K523) | 100 Msps (Arb custom modulation); up to 200 MSa/s ARB sample rate (Options 656+657) |
| Baseband waveform memory | 1 G samples (4 GByte storage) | 1 sample–64 Msample standard; up to 1 Gsample (Option K512) | 32 Msa standard; up to 1024 Msa (Option 023) |
| ARB sample rate | (shares baseband clock; see symbol rate above) | 400 Hz–75 MHz standard; up to 300 MHz (Option K523) | 100 Sa/s–100 MSa/s standard; up to 200 MSa/s (Options 656+657) |
| Digital modulation formats (real-time / internal) | PSK (incl. π/4-QPSK, 8PSK, APSK), QAM up to 4096, FSK up to 64, ASK, MSK | ASK, FSK (2–64FSK, MSK), PSK, QAM up to 2048/π4-32QAM (Option K199 custom digital modulation) | PSK, QAM up to 1024QAM, FSK, MSK, ASK, DVB-S2 APSK (Arb custom mod., Option N5180431B) |
| Arbitrary waveform playback / protocol simulation software | Ceyear signal simulation software: 5G NR, LTE, WCDMA, GSM, WLAN, LoRa, Bluetooth, etc. | R&S WinIQSIM2 (external PC) covers 5G NR, LTE, 3GPP FDD, GSM/EDGE, CDMA2000, TD-SCDMA, 802.11a/ac/ax/be, Bluetooth, GNSS, DVB, NFC, LoRa — broadest standards coverage of the three | Keysight Signal Studio (separate software, requires Option 660 real-time baseband) — LTE-FDD/TDD, HSPA+/W-CDMA, GSM/EDGE, cdma2000, GPS/GLONASS/Galileo, DVB-T/T2/H/S/S2/C, ISDB-T |
| Built-in broadcast standards (no external PC) | Not offered as standalone broadcast options | Extensive internal digital standards (Option K519 required): AM/FM/RDS, DAB/T-DMB, DRM, DVB-C/T/T2/S/S2, ATSC/ATSC3.0, ISDB-T, DTMB, J.83/B | Not offered as standalone broadcast options (requires external Signal Studio PC) |
| Vector Modulation Accuracy (Representative EVM / ACLR) | |||
| EVM, general | < 1.0% typ. (100 MHz–7.5 GHz, 4 Msps QPSK, RRC α = 0.3); < 0.5% typ. RMS (measured) | Modulation error ratio > 40 dB meas. (≈ < 1% EVM, 8 Msample/s 64QAM) | EVM 0.2–2% depending on standard/config (e.g. GSM 0.2%, LTE FDD 0.65%, 802.11ac 0.4–0.8%) |
| EVM – 5G NR (100 MHz, 256QAM) | < 1.0% (measured example: 0.51% RMS, PDSCH 256QAM) | < 1.0% typ. (3GPP FDD, 1800–2200 MHz, TM1 64 DPCH) | (5G NR requires Signal Studio; not directly tabulated) |
| EVM – LTE (10 MHz) | Measured example: EVM All 0.44% RMS / 0.55% max | < 1.0% typ. (with Option K255) | 1.5% spec / 0.9% typ. (LTE FDD E-TM3.1, 10 MHz, 64QAM, full RB) |
| ACLR / ACPR | > 60 dBc (WCDMA, 2 GHz, 0 dBm); > 50 dBc (5G NR, 3.5 GHz, 0 dBm); measured example –67.98/–75.19 dBc | Adjacent –64.77 to –69.14 dBc (3GPP FDD / LTE, measured examples) | Adjacent –64 to –71 dBc (3GPP FDD / LTE-FDD, Standard/Option UNV, spec/typ.) |
| Image / carrier suppression | (not separately specified for vector path) | Image & carrier rejection > 80 dB meas. (up to 240 MHz mod. BW) | (specified per external I/Q modulator path, N5182B only) |
| AWGN (noise generation) | (not offered as standard option) | Available (Option K62): C/N –50 to +65 dB, 1 kHz–240 MHz system BW | Available (Option N5180403B, requires N5102A): 1 Hz–160 MHz BW, 15 dB crest factor |
| Triggering & Markers | |||
| Trigger sources | Key, External | Internal (GUI/remote), External (BNC user1/user2) | Trigger key, external BNC, bus (GPIB/LAN/USB) |
| Trigger modes | Auto, Trigger, Single-shot (buffered/real-time), Gated | Auto, Retrig, Armed auto, Armed retrig, Single | Continuous, Single, Gated, Segment advance |
| Marker outputs | 2 marker interfaces | 1 marker signal (multiple modes: unchanged, restart, pulse, pattern, ratio) | 4 markers (Option 656/657 baseband generator) |
| Interfaces & Connectivity | |||
| Remote control | USB, LAN; SCPI command recording with Qt/C#/C++ example project generation | LAN 10/100/1000BASE-T; SCPI 1999.5 or compatible (emulates SFE, SFE100, SGT100A); VISA VXI-11, Telnet, VNC, FTP, SMB | GPIB IEEE-488.2, LAN 1000BaseT (LXI Class C), USB 2.0; SCPI 1997.0; emulates numerous legacy Keysight/R&S/Aeroflex generators |
| Front panel I/O | 5" touchscreen; USB 2.0 | 5" capacitive touchscreen; USB 2.0 (power sensors, mouse/keyboard, USB stick) | Keypad + display; USB 2.0 |
| Rear panel I/O | I/Q In/Out, Q In/Out, USER1/2, HDMI, LO In/Out, Pulse/Video/Trig, LF Out, Ext Mod In, Pulse In/Trig In, REF In/Out, 1 GHz In/Out, LAN, USB 3.0 | REF In/Out (BNC), User1/2 (BNC), Dig. I/Q HS1/2 (QSFP+/28), IP Data (SFP+), USB 3.0 x2, LAN (RJ-45), DisplayPort | RF Out, I/Q In/Out (Option 1EM), I-bar/Q-bar (Option 1EL), Event1, Pattern trigger, BBTRIG1/2, Sweep/Trigger Out, EXT1/2, LF Out, Pulse, Ref In/Out, LO In/Out (Option 012), Aux I/O, GPIB, LAN, USB |
| Digital I/Q interface | Not specified as a standard digital I/Q bus | Dig. I/Q HS (40G, QSFP+/28) – lossless connection to other R&S instruments (Option K19) | Digital baseband I/O via external N5102A module (Options 003/004), up to 400 MHz parallel/serial |
| General / Mechanical / Environmental | |||
| Dimensions (W×H×D) | 213.0 × 88.1 × 300.0 mm | 222 × 97 × 366 mm | 426 × 88 × 489 mm |
| Weight | < 4 kg | 4.7 kg | N5181B ≤ 13.6 kg; N5182B ≤ 15.9 kg (net) |
| Power consumption | < 100 W, 100–240 VAC (auto) | < 110 W measured (360 W max rated), 100–240 VAC | 160 W max (N5181B); 300 W max (N5182B), 100/120 / 220/240 VAC |
| Display | 5" color capacitive touchscreen | 5" color capacitive touchscreen, 800 × 480 px | Front-panel graphical display (non-touch) |
| Key Options (Representative) | |||
| Frequency extension | 1434A-H20-06 (extend 1434AV to 6 GHz) | KB106 (to 6 GHz), KB107 (to 7.125 GHz) | Option 506 (to 6 GHz), + FRQ Frequency Extender (to 7.2 GHz, N5182B only) |
| Wider modulation bandwidth | H31-240 (240 MHz internal mod. BW) | K521/K522/K523 (120/160/240 MHz baseband extension) | 80 MHz (Option 656); 160 MHz (Option 656 and 657 |
| High output power | (standard – high-dynamic electronic attenuator included) | K31 (high output power, up to +25 dBm) | Option 1EA (high output power) / Option UNZ (fast switching, low SSB phase noise) |
| Low phase noise | H04 (optimized phase noise, –12 dBc/Hz → –112 dBc/Hz @10 GHz/10 kHz) | K709 (low SSB phase noise) | Option UNX / UNY (low phase noise) |
| Rack mount kit | H94-212 | Rack adapter R&S HZN96 (accessory) | Standard rack-mount / bench configurations available |
Looking for a Cost-Effective Alternative to Keysight or Rohde & Schwarz?
The Ceyear 1434AV/BV Vector Signal Generator can be an excellent option for laboratories, universities, RF development teams, wireless communications testing, and production environments that need modern vector signal-generation capabilities without necessarily requiring the complete option ecosystem of a high-end platform.
Technical Sources
- Ceyear “1434 series Vector Signal Generator” (1434AV/BV, doc. dated 2026.04)
- Rohde & Schwarz R&S®SMCV100B “Specifications” (Version 17.00, September 2025)
- Keysight “MXG X-Series Signal Generator N5181B Analog & N5182B Vector” data sheet (5991-0038EN)
Where to Buy:
🔵 Vector Signal Generator 1434AV/BV series are now available to order from SEA Components GmbH, the official Ceyear partner in the European Union. For sales inquiries and quotations, please contact us at tm@sea-ceyear.com