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The RIGOL DM3058 is a 5½-digit digital multimeter built around a dual-display architecture and designed for high-precision, multifunction, and automatic measurement. Its dual-display function presents two characteristics of a single signal simultaneously, doing the work that once required two separate multimeters or two sequential measurements.
Its documented application set spans research and development laboratories, scientific research and education, detection and maintenance, quality test, and automatic production test. Preset configuration modes simplify operator workflow on a production line, where ten groups of preset configurations can be stored and recalled, while the dual-display and full measurement set serve bench characterization work equally well.
The DM3058 series comprises two 5½-digit digital multimeters — the DM3058 and the DM3058E — that share an identical measurement architecture, function set, and accuracy specifications. Both deliver dual-display operation, true-RMS AC measurement, any-sensor capability, and the same measurement ranges across DC voltage, DC current, AC voltage, AC current, resistance, capacitance, frequency, and period.
The two models are distinguished by their remote-interface configuration rather than by measurement performance, letting a buyer match connectivity to the application without trading away measurement capability.
Each model below is listed on its own dedicated product page with condition-matched pricing for the new unit you select. Choose the model that fits your interface and application requirements, then pick the listing whose condition and price suit your needs.
The DM3058 is the interface-complete member of the pair, adding 10/100 Mbit LAN and GPIB to the shared USB and RS-232C set. It is the model identified as the first 5½-digit digital multimeter to pass the LXI Criterion, conforming to LXI Class C, Version 1.1, and it supports web-page virtual-panel remote control.
The single functional difference between the two models is connectivity: the DM3058 supports LAN and GPIB interfaces while the DM3058E does not. Both share USB Device, USB Host, and RS-232C. LXI Class C compatibility and web-based remote control likewise apply to the DM3058.
Buyers whose workflow relies on LAN-based system integration, web-panel remote control, or GPIB bus control should select the DM3058; where those interfaces are not required, the DM3058E offers the identical measurement capability over USB and RS-232C. The comparison table below details the interface differences side by side.
| Model | Digits | DC Voltage | Interfaces |
|---|---|---|---|
| DM3058 | 5½ | 200 mV ~ 1000 V | USB Device, USB Host, LAN, RS-232, GPIB |
| DM3058E | 5½ | 200 mV ~ 1000 V | USB Device, USB Host, RS-232 |
Additional differences in specifications beyond the few shown above are not listed here — see each model's full specifications below.
| Specification | Value |
|---|---|
| Basic Measurement Ranges | |
| DC Voltage | 200 mV ~ 1000 V |
| DC Current | 200 μA ~ 10 A |
| AC Voltage (True-RMS) | 200 mV ~ 750 V |
| AC Current (True-RMS) | 20 mA ~ 10 A |
| 2-Wire, 4-Wire Resistance | 200 Ω ~ 100 MΩ |
| Capacitance | 2 nF ~ 10000 μF |
| Continuity Test | Range fixed at 2 kΩ |
| Diode Test | Range fixed at 2.0 V |
| Frequency | 20 Hz ~ 1 MHz |
| Period | 1 μs ~ 0.05 s |
| DC Voltage Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 200.000 mV | 0.015 + 0.004 |
| 2.00000 V | 0.015 + 0.003 |
| 20.0000 V | 0.015 + 0.004 |
| 200.000 V | 0.015 + 0.003 |
| 1000.00 V | 0.015 + 0.003 |
| DC Current Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 200.000 μA (load voltage < 8 mV) | 0.055 + 0.005 |
| 2.00000 mA (< 80 mV) | 0.055 + 0.005 |
| 20.0000 mA (< 0.05 V) | 0.095 + 0.020 |
| 200.000 mA (< 0.5 V) | 0.070 + 0.008 |
| 2.00000 A (< 0.1 V) | 0.170 + 0.020 |
| 10.0000 A (< 0.3 V) | 0.250 + 0.010 |
| Resistance Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 200.000 Ω (1 mA) | 0.030 + 0.005 |
| 2.00000 kΩ (1 mA) | 0.020 + 0.003 |
| 20.0000 kΩ (100 μA) | 0.020 + 0.003 |
| 200.000 kΩ (10 μA) | 0.020 + 0.003 |
| 2.00000 MΩ (1 μA) | 0.040 + 0.004 |
| 10.0000 MΩ (200 nA) | 0.250 + 0.003 |
| 100.000 MΩ (200 nA || 10 MΩ) | 1.75 + 0.004 |
| Diode Test Accuracy (1 Year, 23℃ ± 5℃) | |
| 2.0000 V (1 mA) | 0.05 + 0.01 |
| Continuity Test Accuracy (1 Year, 23℃ ± 5℃) | |
| 2000 Ω (1 mA) | 0.05 + 0.01 |
| True RMS AC Voltage Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 200.000 mV, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 200.000 mV, 45 Hz – 20 kHz | 0.2 + 0.05 |
| 200.000 mV, 20 kHz – 50 kHz | 1.0 + 0.05 |
| 200.000 mV, 50 kHz – 100 kHz | 3.0 + 0.05 |
| 2.00000 V, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 2.00000 V, 45 Hz – 20 kHz | 0.2 + 0.05 |
| 2.00000 V, 20 kHz – 50 kHz | 1.0 + 0.05 |
| 2.00000 V, 50 kHz – 100 kHz | 3.0 + 0.05 |
| 20.0000 V, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 20.0000 V, 45 Hz – 20 kHz | 0.2 + 0.05 |
| 20.0000 V, 20 kHz – 50 kHz | 1.0 + 0.05 |
| 20.0000 V, 50 kHz – 100 kHz | 3.0 + 0.05 |
| 200.000 V, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 200.000 V, 45 Hz – 20 kHz | 0.2 + 0.05 |
| 200.000 V, 20 kHz – 50 kHz | 1.0 + 0.05 |
| 200.000 V, 50 kHz – 100 kHz | 3.0 + 0.05 |
| 750.000 V, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 750.000 V, 45 Hz – 20 kHz | 0.2 + 0.05 |
| 750.000 V, 20 kHz – 50 kHz | 1.0 + 0.05 |
| 750.000 V, 50 kHz – 100 kHz | 3.0 + 0.05 |
| True RMS AC Current Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 20.0000 mA, 20 Hz – 45 Hz | 1.5 + 0.10 |
| 20.0000 mA, 45 Hz – 2 kHz | 0.50 + 0.10 |
| 20.0000 mA, 2 kHz – 10 kHz | 2.50 + 0.20 |
| 200.000 mA, 20 Hz – 45 Hz | 1.50 + 0.10 |
| 200.000 mA, 45 Hz – 2 kHz | 0.30 + 0.10 |
| 200.000 mA, 2 kHz – 10 kHz | 2.50 + 0.20 |
| 2.00000 A, 20 Hz – 45 Hz | 1.50 + 0.20 |
| 2.00000 A, 45 Hz – 2 kHz | 0.50 + 0.20 |
| 2.00000 A, 2 kHz – 10 kHz | 2.50 + 0.20 |
| 10.0000 A, 20 Hz – 45 Hz | 1.50 + 0.15 |
| 10.0000 A, 45 Hz – 2 kHz | 0.50 + 0.15 |
| 10.0000 A, 2 kHz – 5 kHz | 2.50 + 0.20 |
| AC Additional Wave Crest Factor Error (not Sine, for frequency < 100 Hz) | |
| Wave crest coefficient 1 - 2 | 0.05 (% range) |
| Wave crest coefficient 2 - 3 | 0.2 (% range) |
| Frequency / Period Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 200 mV – 750 V, 20 Hz – 2 kHz | 0.01 + 0.003 |
| 200 mV – 750 V, 2 kHz – 20 kHz | 0.01 + 0.003 |
| 200 mV – 750 V, 20 kHz – 200 kHz | 0.01 + 0.003 |
| 200 mV – 750 V, 200 kHz – 1 MHz | 0.01 + 0.006 |
| 20 mA – 10 A, 20 Hz – 2 kHz | 0.01 + 0.003 |
| 20 mA – 10 A, 2 kHz – 10 kHz | 0.01 + 0.003 |
| Capacitance Accuracy (1 Year, 23℃ ± 5℃, ± (% of reading + % of range)) | |
| 2.000 nF (200 nA) | 3 + 1.0 |
| 20.00 nF (200 nA) | 1 + 0.5 |
| 200.0 nF (2 μA) | 1 + 0.5 |
| 2.000 μF (10 μA) | 1 + 0.5 |
| 200 μF (100 μA) | 1 + 0.5 |
| 10000 μF (1 mA) | 2 + 0.5 |
| DC Voltage Characteristics | |
| Input Resistance (200 mV, 2 V) | 10 MΩ or > 10 GΩ selectable |
| Input Resistance (20 V, 200 V, 1000 V) | 10 MΩ ± 2% |
| Input Bias Current | < 90 pA, 25℃ |
| Input Protection | 1000 V on all ranges |
Important: For continuous current higher than DC 7 A or AC RMS 7 A, 30 seconds off after 30 seconds on is recommended.
Important: The only difference between DM3058 and DM3058E is that DM3058E does not support LAN and GPIB interfaces.
ValueTronics supplies both new and used test and measurement equipment. New units ship factory-sealed, exactly as received from the manufacturer; every used unit is inspected and functionally verified in-house at our 20,000 sq ft secure facility in Elgin, Illinois before it ships. Our Test Architects can help you select the condition, calibration, and configuration that fit your application.
Please review the Manufacturer's Data Sheet to verify published specifications. Feedback on this webpage is always welcome — please reach out to your Test Architect at any time for questions or concerns. Thank you, we truly appreciate you being our customer.
Model No
RIGOL
Condition
Factory New
Manufacturer
RIGOL
Multi_met_acv
200 mV ~ 750 V
Multi_met_dcv
200 mV ~ 1000 V
Multi_met_dig
5½
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