The Fluke ESA612 Electrical Safety Analyzer is a reliable and easy-to-use instrument designed to perform essential electrical safety testing on medical devices. In Bangladesh, it is widely used in hospitals, clinics, diagnostic centers, biomedical engineering departments, and service providers to ensure that medical equipment operates safely for patients and staff. Pico Labs Limited is a reliable technology provider in Bangladesh where you can explore a wide range of Biomedical Test Equipment at the best price. From hospitals and clinics to diagnostic centers and biomedical engineering departments, you can find professional analyzers, simulators, and test tools for accurate performance checking of medical devices like infusion pumps, defibrillators, patient monitors, incubators, and ventilators.
By providing core electrical safety functions in a portable and user-friendly design, the ESA612 enables biomedical teams to conduct routine inspections, preventive maintenance, and post-repair verification efficiently and accurately.
The ESA612 focuses on delivering essential safety tests with simplicity and precision. Key features include:
These features make the ESA612 ideal for facilities seeking effective safety testing without unnecessary complexity.
The table below provides a simplified overview of typical functions and characteristics of the Fluke ESA612 Electrical Safety Analyzer. Actual specifications may vary depending on configuration.
| Parameter / Function | Typical Description |
|---|---|
| Ground Wire Resistance | Measures continuity of the protective earth conductor |
| Equipment Leakage Current | Measures leakage from mains and enclosure |
| Applied Part / Patient Leakage | Tests current flow through patient-connected parts |
| Test Modes | Preset and manual sequences for common medical devices |
| Display | Digital numeric readout |
| Power Source | Mains-powered |
| Portability | Compact, portable for field or bench use |
| Operation | Simple buttons and menu interface |
| Application Environment | Hospitals, clinics, labs, service centers |
| Typical Use | Routine electrical safety verification of medical devices |
This table is for general understanding and not a formal datasheet.
The Fluke ESA612 Electrical Safety Analyzer is applicable across a variety of healthcare and biomedical settings in Bangladesh:
Hospitals and Clinics
Routine safety checks on patient monitors, infusion pumps, ventilators, anesthesia machines, and other electrically powered devices.
Diagnostic Centers
Ensures electrical safety compliance for devices in imaging, laboratory, and procedural areas.
Biomedical Service Providers
Portable design allows for on-site electrical safety testing at multiple healthcare facilities.
Medical Equipment Workshops
Supports pre-delivery inspections, post-repair verification, and preventive maintenance programs.
Using the ESA612 helps reduce electrical hazards, improve device reliability, and enhance patient and staff safety.
The Fluke ESA612 offers multiple benefits for healthcare facilities:
Enhanced Safety
Regular testing of ground continuity, equipment leakage, and patient-applied part leakage minimizes electrical risks.
User-Friendly Operation
Simple controls and a clear digital display make testing quick and accurate, even for less experienced technicians.
Consistent Safety Procedures
Promotes standardized and repeatable electrical safety checks across devices and departments.
Support for Preventive Maintenance
Early detection of electrical issues helps prevent unexpected failures and reduces downtime.
Documentation and Traceability
Digital readouts facilitate recording of test results for audits, quality assurance, and compliance purposes.
A common workflow for using the ESA612 in Bangladeshi healthcare facilities may include:
This workflow ensures efficient, safe, and documented testing of all medical devices.
Before adopting the Fluke ESA612 Electrical Safety Analyzer, healthcare facilities should consider:
Device Compatibility
Verify support for medical equipment types in use (Class I, Class II, BF, CF devices).
Training
Ensure staff are trained in safe connections, electrical safety, and interpretation of results.
Calibration and Maintenance
Plan periodic calibration to maintain accuracy and reliability.
Integration into Maintenance Programs
Include ESA612 testing in preventive maintenance, post-repair verification, and routine safety checks.
Documentation Practices
Maintain logs for internal audits, compliance, and quality assurance.
The Fluke ESA612 Electrical Safety Analy zer is a reliable and practical tool for ensuring electrical safety of medical equipment in Bangladesh. Its combination of core testing functions, portability, and ease of use makes it ideal for hospitals, clinics, diagnostic centers, and biomedical service providers.
| Voltage | |
| Range (mains voltage) | 180 to 264 V ac rms |
| Range (accessible voltage) | 0 V ac to 300 V ac rms |
| Accuracy | ± (2 % of reading + 0.2 V) |
| Voltage tests | Mains, accessible, and point-to-point |
| Earth resistance | |
| Mode | Two terminal |
| Test current | > 200 mA ac |
| Range | 0 W to 2 W |
| Accuracy | ± (2 % of reading + 0.015 W) |
| Resistance tests | Earth resistance and point-to-point |
| Equipment current | |
| Mode | AC rms |
| Range | 0 A to 20 A |
| Accuracy | ± 5 % of reading + (2 counts or 0.2 A, whichever is greater) |
| Duty cycle | 15 A to 20 A, 5 min on/5 min off 10 A to 15 A, 7 min on/3 min off 0 A to 10 A continuous |
| Leakage current | |
| Modes Modes are available in all leakage tests with the exception of MAP leakages that are available only in true-rms |
AC + DC (true-rms) AC only DC only |
| Patient load selection (input impedance) |
AAMI ES1-1993 IEC 60601 |
| Crest factor | = 3 |
| Ranges | 0 µA to 199.9 µA 200 µA to 1999 µA 2 mA to 10 mA |
| Frequency response/accuracy DC to 1 kHz 1 kHz to 100 kHz 100 kHz to 1 MHz |
± (1 % of reading + (1 µA or 1 LSD, whichever is greater)) ± (2 % of reading + (1 µA or 1 LSD, whichever is greater)) ± (5 % of reading + (1 µA or 1 LSD, whichever is greater)) |
| Leakage tests | Ground wire (earth) Chassis (enclosure) Lead to ground (patient) Lead to lead (patient auxiliary) Lead isolation (mains on applied part) Direct equipment Direct applied part Alternative equipment Alternative applied part Point to point |
| Mains on applied part test voltage | 100 % of mains |
| Differential leakage | |
| Ranges | 10 µA to 199 µA 200 µA to 2000 µA 2 mA to 20 mA |
| Accuracy | ± 10 % of reading + (2 counts or 20 µA, whichever is greater) |
| Insulation resistance | |
| Ranges | 0.5 MW to 20 MW 20 MW to 100 MW |
| Accuracy | ± (2 % of reading + 0.2 MW) ± (7.5 % of reading + 0.2 MW) |
| Source test voltage | 500 V dc 250 V dc |
| Insulation resistance tests | Mains-PE, AP-PE, Mains- PE, Mains-NE (non-earthed accessible conductive part) and AP- NE (non-earthed accessible conductive part) |
| ECG performance waveforms | |
| Accuracy | ± 2 % ± 5 % for amplitude of 2 Hz square wave only, fixed at 1 mV Lead II configuration |
| Waveforms ECG complex (BPM) Ventricular fibrillation Square wave (50 % duty cycle) (Hz) Sine wave (Hz) Triangle wave (Hz) Pulse (63 ms pulse width) |
30, 60, 120, 180, and 240 0.125 and 2 10, 40, 50, 60, and 100 2 30 BPM and 60 BPM |
| Power ratings | |
| Mains voltage outlet | 230 V ac |
| Mains voltage inlet power range | 180 to 264 V ac rms |
| Maximum current | 16 A |
| Hz | 50 or 60 |
| Environmental specifications | |
| Operating temperature | 10 °C to 40 °C (50 °F to 104 °F) |
| Storage temperature | -20 °C to 60 °C (-4 °F to 140 °F) |
| Operating humidity | 10 % to 90 % non-condensing |
| Altitude | 230 V ac mains supply voltage up to 2,000 m |