CC6-2412SF-E TDK Corporation, CC6-2412SF-E Datasheet - Page 18

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
Control Functions/Connections
SIP Model
Part No.
CC3–xx03SS–E
CC3–xx05SS–E
CC3–xx12SS–E
CC3–xx12DS–E
Calculate the output voltage Vout(V) from the connected resistance Ra,
Rb(kΩ)
Calculate the connected resistance Ra and Rb(kΩ) from the set output
voltage Vout(V).
Fig.13
Fig.15
• All specifications are subject to change without notice.
+12 to +15V
3.3 to 3.67V, 5 to 6V, 12 to 15V
Set the output voltage higher by adding resistance Ra between
the TRM terminal/–Vout terminal.
Set the output voltage lower by adding resistance Rb between
the TRM terminal/+Vout terminal.
Set the output voltage higher by adding resistance Ra between
the TRM terminal/–Vout terminal.
Set the output voltage lower by adding resistance Rb between
the TRM terminal/+Vout terminal.
∗1
∗2
∗3
∗4
∗5
∗6
∗7
∗8
∗1
∗2
∗3
∗4
∗5
∗6
∗7
∗8
Load Load
Load
Vout=3.3+1.04/(2.83+Ra)
Vout=5+12.75/(12.69+Ra)
Vout=12+48.4/(16.18+Ra)
Vout=12+54.7/(18+Ra)
Vout=3.3–1.69/(3.66+Rb) [Rb
Vout=5–12.78/(17.79+Rb) [Rb
Vout=12–184.1/(35.54+Rb) [Rb
Vout=12–470.3/(61.75+Rb) [Rb
Ra=1.04/(Vout–3.3)–2.83
Ra=12.75/(Vout–5)–12.69
Ra=48.4/(Vout–12)–16.18
Ra=54.7/(Vout–12)–18
Rb=1.69/(3.3–Vout)–3.66
Rb=12.78/(5–Vout)–17.79
Rb=184.1/(12–Vout)–35.54
Rb=470.3/(12–Vout)–61.75
–12 to –15V
Ra
Ra
3.3 to 3.67V
5 to 6V
12 to 15V
Connecting –Vout
with Ra
±12 to ±15V
∗2
∗3
∗1
∗4
Fig.14
Fig.16
+11.4 to +12V
Load Load
3.15 to 3.3V, 4.75 to 5V, 11.4 to 12V
7.6]
Load
33.3]
271.3]
722.1]
Fig.
13
13
13
15
Connecting +Vout
with Rb
3.15 to 3.3V
4.75 to 5V
11.4 to 12V
±11.4 to ±12V
Rb
Rb
–11.4 to –12V
∗6
∗7
∗5
∗8
Fig.
14
14
14
16
002-05 / 20061129 / ea335_cc_e.fm
(18/21)

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