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...ge killer Diode Contact form SPDT Contact method Single Contact material Ag alloy Contact rated load 250 VAC 10 A (Resistive load) 250 VAC 7.5 A (Inductive load (cosφ = 0.4)...
...ge killer Diode Contact form SPDT Contact method Single Contact material Ag alloy Contact rated load 250 VAC 10 A (Resistive load) 250 VAC 7.5 A (Inductive load (cosφ = 0.4)...
...ge killer Diode Contact form SPDT Contact method Single Contact material Ag alloy Contact rated load 250 VAC 10 A (Resistive load) 250 VAC 7.5 A (Inductive load (cosφ = 0.4)...
...ge killer Diode Contact form SPDT Contact method Single Contact material Ag alloy Contact rated load 250 VAC 10 A (Resistive load) 250 VAC 7.5 A (Inductive load (cosφ = 0.4)...
...nical indicator Contact form SPDT Contact method Single Contact material Ag alloy Contact rated load 250 VAC 10 A (Resistive load) 250 VAC 7.5 A (Inductive load (cosφ = 0.4)...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 40 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 60 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 60 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 60 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 50 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 50 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 60 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 60 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 50 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...
...to +15 % (With V.ADJ) Ripple 50 mV(p-p) max. Static input variation influence 0.5 % max. Static load variation influence 1.0 % max. Ambient temperature variation influence 0.05 %/℃ max. Start...