KO 4300 DOLD
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• max. 16 / 32 / 48 / 64 terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 spring cage clamps
• Large, variable front plate surface
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Easy and quick connecting of conductors:
solid wire and flexible wire with
end ferrule can be inserted directly
(saving of time in comparsion to screw
terminals: 50 - 80 %)
• Easy removing of conductors (put in a
screwdriver according to DIN 5264-A 0.5 x 3)
• High spring force for a secure connection
• Printed circuit board density t = 1.5 mm
and 1 mm possible
• Max. 16 / 32 / 48 / 64 box terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• Max. 16 / 32 / 48 / 64 box terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• Max. 16 / 32 / 48 / 64 box terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
• Max. 16 / 32 / 48 / 64 box terminals
• Large, variable front plate surface
• Large cross section of connections possible
(e.g. 2 x 1.5 mm2 with stranded ferruled)
• Max. current carrying capacity 16 A
• Machine soldered terminal block,
use of heat-resistant plastic means no
cover for the terminal block facing the
soldering bath is required
• Large plus-minus screws enable high
tightening torques
• High-voltage test complying with IEC 60 439-1
• Printed circuit board density t = 1.5 mm and
1 mm possible
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