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Standard Models

TypeGeneral-purpose Controllers
61F-[]N
Long-distance
61F-[]NL 2KM (2 km)
Controllers
61F-[]NL 4KM (4 km)
High-sensitivity Controllers
61F-[]NH
Controlling materials and
operating conditions
For control of ordinary purified water and wastewaterFor control of ordinary purified water and wastewater. Particularly in cases where the distance between the pumps and water tanks or between supply and receiver tanks are far apart or where remote control is required.For control of liquids with high specific resistance, such as distilled water
Rated voltage100/200, 110/220 or 120/240 VAC, 50/60 Hz (both supported on same model)
Allowable voltage
fluctuation range
85% to 110% of rated voltage
Inter-electrode voltage8 VAC
Inter-electrode currentApprox. 1 mA AC max.
Power consumptionGN[]: 3 VA max., G1N[], G2N[], IN[]: 4 VA max., G3N[]: 5.5 VA max., G4N[]: 8.5 VA max.
Inter-electrode
operation resistance
(recommended values)
0 to approx. 4 k Ω0 to 1.8 k Ω (for 2 km)
0 to 0.7 k Ω (for 4 km)
Approx. 10 k Ω to 40 k Ω
(See note 4.)
Inter-electrode
release resistance
(recommended values)
Approx. 15 k to ∞Ω4 k to ∞Ω (for 2 km)
2.5 k to ∞Ω (for 4 km)
Approx. 100 k to ∞Ω
Cable length
(See note 2.)
1 km max.2 km max.
4 km max.
50 m max.
Output3 A, 200 VAC (Resistive load)
Ambient operating
temperature
- 10 to 55 ° C
Ambient operating
humidity
45% to 85%
Insulation resistance
(See note 3.)
100 M Ω min. (at 500 VDC)
Dielectric strength
(See note 3.)
2,000 VAC, 50/60 Hz for 1 min.
Life expectancyElectrical: 250,000 operations min.
Mechanical: 10,000,000 operations min.
WeightGN models: 315 g; G1N, G2N, IN models: 410 g; G3N models: 625g; G4N models: 870 g
Internal Circuit DiagramsExample: 61F-GN
Example: 61F-GNL
Example: 61F-GNH

Note:
1. The [] in the model name represents G, G1, G2, G3, G4, or I.

2. The length when using completely insulated, 600-V, 3-core (0.75 mm2) cabtire cables. Usable cable lengths will become shorter as the cable diameter or number of cores becomes larger due to increased floating capacity.

3. The insulation resistance and dielectric strength are the values between power terminals and Electrode terminals, between power terminals and contact terminals, and between Electrode terminals and contact terminals.

4. Application is possible with 10 kΩ or less, however, this may cause reset failures.

TypeLow-sensitivity Controllers
61F-[]ND
Two-wire Controllers
61F-[]NR
Controlling materials and operating conditionsFor control of liquids with low specific resistance, such as salt water, wastewater, acid chemicals, or alkaline chemicalsFor control of ordinary purified water or wastewater. Used with a Two-wire Electrode Holder (incorporating a resistor of 6.8 k )
Rated voltage100/200, 110/220 or 120/240 VAC, 50/60 Hz (supported by the same model)
Allowable Voltage Fluctuation85% to 110% of rated voltage
Inter-electrode voltage8 VAC
Inter-electrode currentApprox. 1 mA AC max.
Power consumptionGN[]: 3 VA max., G1N[], G2N[], IN[]: 4 VA max., G3N[]: 5.5 VA max.,
G4N[]: 8.5 VA max.
Inter-electrode operation resistance
(recommended values)
0 to approx. 1.8 kApprox. 0 to 1.1 k
Inter-electrode release resistance
(recommended values)
Approx. 5 k to 0%Approx. 15 k to 0%
Cable length
(See note 2.)
1 km max.800 m max.
Output3 A, 200 VAC (Resistive load)
Ambient operating temperature- 10 to 55 ° C
Ambient operating humidity45% to 85%
Insulation resistance
(See note 3.)
100 M Ω min. (at 500 VDC)
Dielectric strength
(See note 3.)
2,000 VAC, 50/60 Hz for 1 min.
Life expectancyElectrical: 250,000 operations min.
Mechanical: 10,000,000 operations min.
WeightGN models: 315 g; G1N, G2N, IN models: 410 g; G3N models: 625g;
G4N models: 870 g
Internal Circuit DiagramsExample: 61F-GND
Example: 61F-GNR

Note:
1. The [] in the model name represents G, G1, G2, G3, G4, or I.

2. The length when using completely insulated, 600-V, 3-core (0.75 mm2) cabtire cables. Usable cable lengths will become shorter as the cable diameter or number of cores becomes larger due to increased floating capacity.

3. The insulation resistance and dielectric strength are the values between power terminals and Electrode terminals, between power terminals and contact terminals, and between Electrode terminals and contact terminals.

4. Application is possible with 10 kΩ or less, however, this may cause reset failures.

Caution: In the interenst of product improvement, specifications are subject to change without notice.