• eTM-605F
  • eTM-605F
  • eTM-605F
  • eTM-605F

eTM-605F

4-digit F Series DC bench power supply with 0–60V adjustable output, 0–5A current, and 300W power in a compact 280 × 130 × 165mm desktop enclosure. With preset voltage and current, power display, ON/OFF output control, and rear communication for reading and switch control, it is well suited for circuit board testing, mobile phone testing, electronics repair, and laboratory power applications.

Input Power
110V input or 100V/220V manual switching
Output Voltage
0-60V
Output Current
0-5A
Set Resolution Voltage
<100V : 10mV ; ≥100V : 0.1V
Set Resolution Current
<10A : 10mA ; ≥10A : 10mA
Set Precision Voltage
≤ 0.1% + 5digits
Set Precision Current
≤ 0.2% +10digits
Ripple Voltage
≤ 15mVrms
Ripple Current
≤ 15mArms
Size / Weight
280(D)x130(W)x165(H)mm/≤2.8kg
  • eTM-605F
  • eTM-605F

Description

30-Second Fit Check
  • Output range fits your system: 0–60V, 0–5A (up to 300W).
  • Key differentiator: 4-digit 60V-class bench supply tuned for 48–60V product verification.
  • Workflow: Preset V/I, CV/CC operation, power display, and front output switch..
  • Integration: Optional PC communication is available (options vary).
  • Input power: 110V input or 100V/220V manual switching (per configuration).
What it is + Why it matters
  • A 4-digit digital bench supply aimed at day-to-day engineering work where clear readouts reduce rework.
  • Preset voltage/current and an enable-style workflow make it easier to connect DUTs safely and consistently.
  • Power display supports quick fit checks during debugging and troubleshooting.
Key Specs
  • Output: 0–60V, 0–5A
  • Max power: 300W
  • Display: 4-digit (as specified)
  • Power readout: supported (as specified)
Integration & Controls
  • Optional PC communication is available (options vary).
  • Front-panel output control is specified (ON/OFF or enable key, model dependent).
  • If you need automation: specify interface, command/control environment, and whether list steps are required.
Best for / Not for
  • Best for: 48–60V product verification (LED drivers, industrial subsystems)
  • Best for: R&D benches where readout clarity speeds debugging
  • Best for: Educational labs needing a wider voltage range than 30V
  • Not for: Low-voltage rails requiring >5A
  • Not for: High-voltage testing beyond 60V
Typical Applications
  • LED driver evaluation
  • Industrial electronics verification
  • Test bench validation
  • Teaching labs
Selection Checklist
  • Confirm your DUT stays within 0–60V, 0–5A and 300W at worst case.
  • Decide whether you need remote comms (Y/N) and which interface (RS485/RS232/USB).
  • Define your workflow: manual presets vs. programmable list/sequence.
  • Plan wiring/fixture: appropriate lead gauge and short runs to reduce drop and improve stability.
  • If you have inrush or sensitive DUTs, set current limit first, then enable output.
RFQ Quick Checklist: quantity • target delivery • DUT voltage/current range • need list/sequence (Y/N) • comms (RS485/RS232/USB) (Y/N) • install/fixture constraints.
Note: Final compliance and performance depend on your end-product design, wiring, and verification testing.

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