background image

¡

The output voltage may become unstable at low temperature due 
to the ESR of power thermistor. In this case, increase the capaci-
tance of Cbc more than recommended value or connect same 
capacitors in parallel.  Please evaluate before use.

2.2  Wiring output pin

(1)  Co : Output capacitor

¡

Install an external capacitor Co bVOUT and -VOUT pins 
for stable operation of the power supply (Fig.1.1).

  Recommended capacitance of Co is shown in Table 2.3.

¡

Select the high frequency type capacitor. Output ripple and start-
up waveform may be influenced by ESR-ESL of the capacitor and 
the wiring impedance.

¡

Install a capacitor Co near the output pins (within 50mm from the 
pins).

¡

When the power supply is used under 0

C

 ambient temperature, 

output ripple voltage increases. In this case, connect 3 capacitors 
Co in parallel connection.

Table 2.3 Recommended capacitance Co[μF]

Model

Temperature of base plate

Tc=0 to +100

C

Tc=-40 to +100

C

Output voltage 

(V)

TUNS50F

TUNS100F

TUNS50F

TUNS100F

5

2200

2200

2200×3

2200×3

12

470

470

470×3

470×3

24

220

220

220×3

220×3

The specified ripple and ripple noise are measured by the method 
introduced in Fig.2.1.

C4 :

5V,12V 10

m

F

24V  4.7

m

F

FG

+

F1

TH1

FG

FG

CY

C1

+BC -BC

Cbc

AC IN

AC1

AC2

+VOUT

-VOUT

-S

+S

TUNS50F

TUNS100F

C2

Load

C4

R
C

+

Co

50mm

Oscilloscope

BW:100MHz

1.5m 

50

W

Coaxial

Cable

R=50

W

C=0.01

m

F

Noise

filter

+S, -S : TUNS100F

Fig.2.1 Method of Measuring Output Ripple and Ripple Noise

2.3  BC/-BC pins

(1)  Cbc : Smoothing capacitor for boost voltage

¡

In order to smooth boost voltage, connect Cbc bBC and 
-BC. Recommended capacitance of Cbc is shown in Table2.4.

¡

Note that +BC and -BC terminals have high voltage (DC385V typ).

¡

Keep the capacitance within the allowable external capacitance.

¡

Select a capacitor of which the boost voltage ripple voltage does 
not exceed 30Vp-p.

¡

When the power supply is operated under -20

C

, it may make 

the boost voltage unstable due to the characteristic of equivalent 
series resistor.  Please choose the capacitor which has more than 
recommended capacitance.

Table 2.4 Recommended capacitance Cbc

No.

Model

Voltage

Cbc

Allowable 

capacitance range

1

TUNS50F

DC420V

or more

82μF

 47 to 150μF

2

TUNS100F

120μF

68 to 220μF

(2)  C2 : Capacitor for boost voltage 

¡

Install external capacitors C2 with capacitance shown in table 2.5.

¡

If capacitors C2 are not installed, it may cause the failure of the 
power supply or external components.

Table 2.5 Recommended capacitance C2

No.

Model

Voltage

Capacitance

Rated ripple 

current

1

TUNS50F

DC450V

0.47μF or more 1A or more

2

TUNS100F

0.47μF or more 1A or more

3  Function

3.1  Input voltage range

¡

The input voltage range is from 85 VAC to 264 VAC.

¡

In cases that conform with safety standard, input voltage range is 
AC100-AC240V(50/60Hz).

¡

Be aware that use of voltages other than those listed above may 
result in the unit not operating according to specifications, or may 
cause damage.  Avoid square waveform input voltage, commonly 
used in UPS and inverters.

3.2  Overcurrent protection

¡

Overcurrent protection is built-in and comes into effect over 105% 
of the rated current.
Overcurrent protection prevents the unit from short circuit and 
overcurrent condition.  The unit automatically recovers when the 
fault condition is cleared.

¡

When the output voltage drops at overcurrent, the average output 
current is reduced by hiccup operation of power supply.

3.3  Overvoltage protection

¡

Overvoltage protection circuit is built-in.  If the overvoltage protec-
tion circuit is activated, shut down the input voltage, wait more 
than 3 minutes and turn on the AC input again to recover the out-
put voltage.  Recovery time varies depending on such factors as 
input voltage value at the time of the operation.

Remarks:

Please note that devices inside the power supply might fail when 
voltage of more than rated output voltage is applied to output ter-
minal of the power supply.  This could happen when the customer 
tests the overvoltage performance of the unit.
To check the function of overvoltage protection, adjust the output 
voltage by changing TRM voltage. Please contact us for details.

TUNS50F, TUNS100F

AC-DC Power Supplies Bus Converter.Power Module Type

Instruction Manual

TUNS-20

July 27, 2020

Содержание TUNS100F

Страница 1: ...rallel operation 4 1 Series operation 4 2 Parallel operation 4 3 N 1 redundant operation 8 1 Medical Isolation Grade 5 Cleaning TUNS 22 5 Cleaning TUNS 30 TUNS 20 TUNS 20 TUNS 20 TUNS 21 TUNS 21 TUNS...

Страница 2: ...C1 is not connected it may cause the failure of the power sup ply or external components Table 2 2 Input Capacitor C1 No Model Voltage Capacitance Rated ripple current 1 TUNS50F AC250V 1 F or more 3A...

Страница 3: ...ore than recommended capacitance Table 2 4 Recommended capacitance Cbc No Model Voltage Cbc Allowable capacitance range 1 TUNS50F DC420V or more 82 F 47 to 150 F 2 TUNS100F 120 F 68 to 220 F 2 C2 Capa...

Страница 4: ...e voltage is increased gradually When turning off reduce the voltage gradually by using the dial of the hi pot tester Do not use a voltage tester with a timer as it may generate voltage several times...

Страница 5: ...ime expectancy depends on stress by temperature difference Regarding lifetime expectancy design of solder joint following contents must be considered It must be careful that the soldering joint is str...

Страница 6: ...to 264Vin 3 F or more 5A or more 5 TUNS1200F 85 to 305Vin AC300V 3 F or more 5A or more 3 CY Noise filter Decoupling capacitor The product doesn t have noise filter internally Please connect external...

Страница 7: ...current limiting resistor 4 7ohm 22ohm Connect a resistor between R pin and BC pin for inrush cur rent protection The surge capacity is required for TFR1 please contact component mfg Wirewound resisto...

Страница 8: ...is ON in L 3 Isolation INPUT RC INPUT RC OUTPUT RC INPUT RC 4 Base pin S RC2 S RC2 5 Output ON SW OPEN 0 1mA max SW SHORT 0 5V max 6 Output OFF SW SHORT 2mA min SW OPEN 0 1mA max c a b ON POWER RC2 R...

Страница 9: ...tage range the output ripple voltage might increase When the output voltage adjustment is not used open the VTRM pin 1 Output voltage adjustment by potentiometer By connecting the external potentiomet...

Страница 10: ...e VTRM V Fig 3 9 VTRM Output Voltage TUNS1200F48 0 01 F 4 7k 10k VTRM S 5V Fig 3 10 VTRM circuit Y1 TUNS300F 500F 700F 1200F Adjustable voltage range of 48V output is changed to 20 Adjustable voltage...

Страница 11: ...12 Power good PG TUNS1200F By using PG it is possible to monitor power supply whether normal operation or abnormal operation The PG signal is Low when the power supply operates correctly The signal tu...

Страница 12: ...attaching the same heat sinks Connect the sensing line and the power line by one point after connecting each power supply s sensing pins S S If the output current is less than 2 of the rated current...

Страница 13: ...Co R C1 F1 FG AC IN FG TFR1 CY C3 C2 BC M BC M Cbc AC1 AC2 VOUT VOUT Noise filter FG Co R C1 F1 FG FG TFR1 CY C3 C2 BC M BC M Cbc AC1 AC2 VOUT VOUT Noise filter FG Co R C1 F1 FG FG TFR1 CY C3 C2 BC M...

Страница 14: ...for details 0 5 10 25 30 35 40 45 50 55 60 65 70 1time ON OFF 1day 2times ON OFF 1day 3times ON OFF 1day 4times ON OFF 1day 5times ON OFF 1day The aluminum base plate central temperature differenceDTc...

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