CTR Manufacturing Industries Ltd.
SMPERRB - GENERAL PURPOSE DC CAPACITORS
MPERRB
MPEAR
PPEAR
PPPAR/C - HIGH FREQUENCY
SMPERRB - GENERAL PURPOSE DC CAPACITORS
Appearance
GENERAL PURPOSE DC CAPACITORS - SMPERRB
Rated Voltage 63VDC
40VAC
100VDC
63VAC
Min uF 0.001 0.001
Max. UF 1.0 0.22

Pulse rise time V/us

8.0 10.0
Epoxy resin encapsulated under vacuum, in a yellow plastic box.
Used extensively in Telecommunication and Printed Circuit Boards.
Equivalent to : MKT 1.68

MPERRB
MPERRB
Appearance
Rated Voltage 63VDC
40VAC
100VDC
63VAC
160VDC
90VAC
250VDC
160VAC
400VDC
200VAC
630VDC
220VAC
1000VDC
250VAC
Min uF 0.1 0.1 0.068 0.022 0.01 0.0047 0.001
Max. UF 15.0 10.0 3.3 1.0 0.47 0.47 0.22
Pulse rise Time V/us Min 1.0 1.0 2.0 3.0 5.0 7.0 10.0
Max 3.0 6.0 8.0 11.0 20.0 30.0 60.0
Epoxy resin encapsulated under vacuum, in a yellow plastic box.
Used extensively in Telecommunication and Printed Circuit Boards.
Equivalent to : MKT 1.68

MPEAR
MPEAR
Appearance
Rated Voltage 63VDC
40VAC
100VDC
63VAC
250VDC
160VAC
400VDC
200VAC
630VDC
220VAC
1000VDC
250VAC
Min uF 0.1 0.1 0.033 0.01 0.0047 0.0047
Max. UF 10.0 10.0 6.8 2.2 1.0 0.33
Pulse rise
Time V/us
Min 1.0 1.0 2.5 4.0 6.0 10.0
Max 4.0 5.0 10.0 13.5 20.0 50.0
Round configuration
Wrapped in Polyester adhesive tape and sealed with epoxy resin.
Used extersively in Telecommunications.
Equivalent to : MKT 1.50

PPEAR
PPEAR
Appearance
Rated Voltage 100VDC
63VAC
160VDC
90VAC
250VDC
120VAC
400VDC
160VAC
Min uF 0.01 0.01 0.01 0.0022
Max. UF 0.47 0.47 0.47 0.47
Pulse rise
Time V/us
Min 200 250 300 350
Max 400 600 800 1000
Round configuration
Wrapped in Polyester adhesive tape and sealed with epoxy resin.
Ideally suited for application where long term stability, High current rating and good attenuation are required..
Equivalent to : KT 1.52

PPPAR/C
PPPAR/C
Appearance
Rated Voltage 63VDC 100VDC 250VDC 400VDC
Min pF 100 100 100 100
Max. pF 10,00,000 5,60,000 2,70,000 47,000
Round configuration
Wrapped in polyester adhesive tape and sealed with epoxy resin.
Ideally suited for applications where capacitance stability high insulation resistance and low losses at high frequency are required.