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INSTRUCTION MANUAL

CCG15

30 

Series

TDK-Lambda

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16/23

6-11. Operating Ambient Temperature

This is the allowable operating range.
Output load needs to be derated depending on the ambient temperature. There is no restriction on 
mounting direction but there should be enough consideration for airflow so that heat does not 
accumulate around the power supply vicinity. Determine external components configuration and 
mounting direction on PCB such that air could flow around the power supply at forced cooling and 
convection cooling. For better improvement of power supply reliability, derating of ambient 
temperature is recommended. For details, refer to "7.Output Derating" section.

6-12. Operating Ambient Humidity

Take note that condensation could lead to power supply abnormal operation or damage.

6-13. Storage Ambient Temperature

Take note that sudden temperature change can cause dew condensation, and it may affect solderability 
of terminals.

6-14. Storage Ambient Humidity

Take enough care when storing the power supply because rust which causes poor solderability would 
occurred on terminals when stored in high temperature, high humidity environment.

6-15. Withstand Voltage 

This power supply is designed to have a withstand voltage of 1.5kVDC between input and output, 
1.0kVDC between input and case and 1.0kVDC between output and case for 1 minute. When 
conducting withstand voltage test during incoming inspection, set the current limit value of the 
withstand voltage testing equipment to 10mA. Furthermore, avoid throw in or shut off of the testing 
equipment when applying or when shutting down the test voltage. Instead, gradually increase or 
decrease the applied voltage. Take note especially when using the timer of the test equipment because 
when the timer switches the applied voltage off, impulse voltage which has several times the magnitude 
of the applied voltage is generated causing damage to the power supply. Connect the terminals as shown 
in the diagram below.  

Fig.6-12

 

Withstand Voltage Test for Input 

 Output

Fig.6-14

 

Withstand Voltage Test for Output 

 Case 

Fig.6-13

 

Withstand Voltage Test for Input 

 Case

+Vin

  RC

+Vout

-Vout

-Vin

TRM,COM

Withstand 

voltage tester 

Case

+Vin

  RC

+Vout

-Vout

-Vin

TRM,COM

Withstand 

voltage tester 

Case

+Vin

  RC

+Vout

-Vout

-Vin

TRM,COM

Withstand 

voltage tester 

Summary of Contents for CCG15 Series

Page 1: ...eld responsible after the product has been modified changed or disassembled Do not use this product under unusual condition such as emission of smoke or abnormal smell and sound etc Please stop using...

Page 2: ...l terminals Especially applying reverse voltage or overvoltage more than the rated voltage to the output might cause failure electric shock or fire Never operate the product under overcurrent or short...

Page 3: ...put Voltage Input Voltage Output Power type Series Name 2 Terminal Explanation Top view Bottom view 3 23 CCG S Vin Input Terminal Vin Input Terminal RC Remote ON OFF Control Terminal Vout Output Termi...

Page 4: ...ge Detector Output Filter Rectifier Circuit or Synchronous Rectifier Circuit Switching Frequency fixed 3 3V 5V 270kHz 12V 15V 360kHz Vin Remote ON OFF Control Vin RC Vout Vout TRM 3 3V 5V Model only I...

Page 5: ...Voltage shows Negative Logic control operation For details on this function please refer to Application Notes 6 7 Remote ON OFF Control RC terminal section RC Voltage 1 Vin 0V Vout 0V Hi Low Input Vo...

Page 6: ...fuse must be connected to Vin side if Vin side is used as ground or fuse must be connected to Vin side if Vin side is used as ground Consider margin over the actual input voltage to be used when selec...

Page 7: ...ambient temperature connect more than two recommended capacitor in parallel to reduce ESR 3 When input line inductance becomes excessively high due to insertion of choke coil operation of the power su...

Page 8: ...e output voltage by attaching capacitor CCG S between Vout and Vout terminal CCG D between Vout and COM terminal Vout and COM terminal Maximum capacitance of external output capacitor is shown in Tabl...

Page 9: ...tage range for CCG series is indicated below Input Voltage Range CCGxx 24 xxS D 9 36VDC CCGxx 48 xxS D 18 76VDC Take note that power supply might be damaged or not meet specification when applied inpu...

Page 10: ...prevent the effect of noise or other connect as short as possible because TRM terminal is relatively high impedance Please refer to Table 6 1 when adjusting output voltage Output Voltage Vout V Exter...

Page 11: ...or other connect as short as possible because TRM terminal is relatively high impedance Please refer to Table 6 2 when adjusting output voltage Fig 6 3 Basic Connection for Output Voltage Trim Up Vou...

Page 12: ...ripple voltage and spike noise voltage Generally increasing capacitance value of external capacitor can reduce output ripple voltage and connecting ceramic capacitor can reduce output spike noise vol...

Page 13: ...uctuation might increase Also when CCG D is used with unbalanced load the output voltage with the higher load factor decreases and the output voltage with the lower load factor increases A thorough pr...

Page 14: ...should be shorted on Negative Logic model In contrast RC and Vin terminals should be opened on Positive Logic model 2 Source current from RC terminal to Vin terminal is 1mA or lower 3 The allowable m...

Page 15: ...s possible for CCG series Connections shown in Fig 6 9 and Fig 6 10 are possible Fig 6 7 Redundant Operation Connection CCG S Fig 6 9 Series Operation for High Output Voltage Vout Vout CCG Vout Vout C...

Page 16: ...poor solderability would occurred on terminals when stored in high temperature high humidity environment 6 15 Withstand Voltage This power supply is designed to have a withstand voltage of 1 5kVDC be...

Page 17: ...18 Shock Withstand shock value is define to be the value at TDK Lambda shipment and packaging conditions or when mounted on PCB 6 19 Capacitance of Input Output This product has internal capacitor co...

Page 18: ...ld flow around the power supply at forced cooling and conventional cooling The derating of the output current is necessary when the ambient temperature is high See Output Current vs Ambient Temperatur...

Page 19: ...ion Size 150mm 70mm t 1 6mm Material FR 4 Double sided Copper 35 m 3 Temperature Measurement Point on The Case Confirm the temperature measurement point on the case of Fig 7 3 is below 110 C Moreover...

Page 20: ...120 40 50 60 70 80 90 100 Output current Ambient temperature C 85 40 0 20 40 60 80 100 120 40 50 60 70 80 90 100 Output current Ambient temperature C 85 40 1 0m s 0 5m s 1 5m s or more 0 5m s 1 0m s...

Page 21: ...and output pattern If pattern width is too narrow heat on pattern will increase because of voltage drop of pattern Relationship between allowable current and pattern width varies depending on materia...

Page 22: ...0 C for 30 40 seconds 2 Soldering Iron 350 C within 3 seconds Note Soldering time changes according to heat capacity of soldering iron pattern on printed circuit board etc Please confirm actual perfor...

Page 23: ...in the output load used 4 Load regulation or line regulation is large Is specified input voltage applied Are the input terminals and the output terminals firmly connected Is the input or output wire t...

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