CC6-2412SF-E TDK Corporation, CC6-2412SF-E Datasheet - Page 19

CONV DC/DC 6W SNGL 24V 12V PCB

CC6-2412SF-E

Manufacturer Part Number
CC6-2412SF-E
Description
CONV DC/DC 6W SNGL 24V 12V PCB
Manufacturer
TDK Corporation
Series
CC-Er
Type
Isolatedr

Specifications of CC6-2412SF-E

Output
12 ~ 15V
Number Of Outputs
1
Power (watts)
6W
Mounting Type
Through Hole
Voltage - Input
18 ~ 36V
Package / Case
7-DIP Module
1st Output
12 ~ 15 VDC @ 500mA
Size / Dimension
1.40" L x 0.89" W x 0.33" H (35.6mm x 22.6mm x 8.5mm)
Power (watts) - Rated
6W
Operating Temperature
-40°C ~ 85°C
Approvals
CE, CSA, EN, UL
Dc / Dc Converter O/p Type
Fixed
No. Of Outputs
1
Input Voltage
18V To 36V
Power Rating
6W
Output Voltage
12V
Output Current
500mA
Approval Bodies
CE, CSA, EN, UL
Supply Voltage
24V
Brand/series
CC-E Series
Configuration
Open-Frame
Power, Output
6 W
Primary Type
DC-DC Converter
Special Features
Remote On/Off
Voltage, Input
24 VDC
Voltage, Output
12 VDC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
3rd Output
-
2nd Output
-
4th Output
-
Lead Free Status / Rohs Status
RoHS Compliant part
Other names
445-2493
CC62412SFE

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CC6-2412SF-E
Manufacturer:
TDK-LAMBDA
Quantity:
686
Noise Reduction Measurement
REDUCING RIPPLE NOISE
If ripple noise from the converter is not measured, the results may
differ greatly depending on the measurement method. Therefore,
when measuring ripple noise, be sure to measure the noise from
the root part of the output terminal and not to make a loop so that
magnetic flux is not collected when connecting the probe.
Please keep in mind that spike voltage may vary greatly depending
on the ripple voltmeter and the frequency range of the oscillo-
scope.
TDK measures noise using the following wiring at a frequency
range of 50MHz.
INPUT RIPPLE NOISE
This series contains a capacitor at the input location. Therefore, it
is possible to be operated without connecting an external capacitor
for the input. However, if a capacitor is connected, it is possible to
reduce input ripple noise and input return noise. Input ripple noise
can be reduced even further when a π type filter is used as shown
in the following diagram.
When the distance between the input power source and the input
location of the converter is great, install a capacitor near an input
terminal as much as possible.
When the distance between the input power source and the input
location of the converter is great, the impedance of the input line
becomes high and spike noise may also increase.
Therefore, in such cases, it is recommended to connect the capac-
itor as close to the input location of the DC to DC converter as pos-
sible.
• All specifications are subject to change without notice.
Iin
A
Vin
+Vin
–Vin
V
+Vout
–Vout
+Vin
–Vin
+Vin
–Vin
+Vout
–Vout
Termination:
Oscilloscope
+Vout
–Vout
10mm
V
( 50MHz )
Vout
0.1µF
50Ω+0.1µF
+Vin
–Vin
or
50Ω coaxial cable
20mm
( 1.5m )
volt meter
( 50MHz )
+Vout
–Vout
Ripple
OUTPUT RIPPLE NOISE
In order to reduce output ripple noise, connect the capacitor to the
output portion of the converter. Output ripple noise can be
reduced even further when a π type filter is used as shown in the
following diagram. If such a filter is used, please use a coil upto
100µH.
When the distance between the converter output and the load is
great, connect the capacitor to the root portion of the load. To
reduce output spike noise, connect a ceramic capacitor with 0 to
1µF to the output portion of the converter.
OUTPUT EXTERNAL CAPACITANCE RANGES
Please keep in mind that if the capacitor installed at the output
location has a larger capacity than shown in the following value, or
if capacitors with low impedance are connected parallel much,
converter operation may be unstable.
Part No.
CC1R5-xx03Sx-E
CC1R5-xx05Sx-E
CC1R5-xx12Sx-E
CC1R5-xx12Dx-E
CC3-xx03Sx-E
CC3-xx05Sx-E
CC3-xx12Sx-E
CC3-xx12Dx-E
CC6-xx03Sx-E
CC6-xx05Sx-E
CC6-xx12Sx-E
CC6-xx12Dx-E
CC10-xx03Sx-E
CC10-xx05Sx-E
CC10-xx12Sx-E
CC10-xx12Dx-E
CC15-24xxSx-E
CC25-24xxSx-E
+Vin
–Vin
+Vin
–Vin
+Vout
–Vout
+Vout
–Vout
Capacitance(µF)max.
100
100
47
22
220
220
100
47
470
470
220
100
470
470
220
100
470
470
1µF
002-05 / 20061129 / ea335_cc_e.fm
+Vin
–Vin
+Vout
–Vout
(19/21)

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