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TDK-Lambda Genesys GENH Series - Supplemental Characteristics

TDK-Lambda Genesys GENH Series
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NOTES:
1:Minimum voltage is guaranteed to maximum 0.2% of the rated output voltage.*
2 Minimum current is guaranteed to maximum 0.4% of the rated output current.*:
3 For cases where conformance to various safety standards (UL, IEC etc.) is required, to be*:
described as 100-240Vac (50/60Hz).
At 100/200Vac input voltage and maximum output power.*4:
From 85~132Vac or 170~265Vac, constant load.*5:
From No-load to Full-load, constant input voltage. Measured at the sensing point in*6:
Remote Sense.
For load voltage change, equal to the unit voltage rating, constant input voltage.*7:
For 6V models the ripple is measured at 2~6V output voltage and full output current.*8:
For other models, the ripple is measured at 10~100% output voltage and full output current.
With rated, resistive load*9: .
0:For 6V~300V models: Measured with JEITA RC-9131A (1:1) probe.*1
For 600V model: Measured with 10:1 probe.
*11:Measured at the sensing point.
*1 :2 Signal and control ports interface cables length: Less than 3m
*13:DC Input voltage range: 120~340Vdc, Safety certification is for AC input only.
*14:Unless otherwise noted, specifications are warranted over the ambient temperature range of
0 to 50°C.
2.12 SUPPLEMENTAL CHARACTERISTICS
The supplemental characteristics give typical but non-warranted performance characteristics.
The supplemental characteristics are useful in assessing applications for the power supply.
Several kinds of supplemental characteristics are listed below.
1.Evaluation Data: Typical performance of the power supply.
2.Reliability Data: Reliability performance of the power supply.
3.IEC1000 Data: Performance of the power supply under IEC1000 test conditions.
4.EMI Data: Typical EMI (conducted and radiated) performance of the power supply.
The supplemental characteristics data is held in each Lambda sales and service facility.
toFor further details please contact the Lambda office nearest you.
Vout<60V Models: Output and Sense are Non Hazardous Communication/control interfaces
(RS232/485, IEEE, Isolated Analog, LAN, Remote Programming and Monitoring) are Non Hazardous.
60
V≤Vout≤300V Models: Output and Sense are Hazardous
Communication/control interfaces: RS232/485, IEEE, Isolated Analog, LAN, Remote Programming
and Monitoring (pins 1-3, pins 14-16) are Non Hazardous, Remote Programming and Monitoring
(pins 8-13, pins 21-25) are Hazardous.
300<Vout≤600V Models: Output and Sense are Hazardous
a) Floating output or Output “-“ connected to ground:
RS232/485, IEEE, Isolated Analog, LAN, Remote Programming and Monitoring (pins 1-3, pins 14-16)
are Non Hazardous; Remote Programming and Monitoring (pins 8-13, pins 21-25) are Hazardous.
b) Output “+“ connected to ground and Vout > 400VDC: RS232/485, IEEE, Isolated Analog, LAN,
Remote Programming and Monitoring (all pins) are Hazardous.
Vout<60V Models: Input-Output (Non Hazardous): 4242VDC/1min., Input-Non Hazardous: .
4242VDC/1min Input-Ground: 2828VDC/1min.
V≤Vout≤150V Models: Input-Output (Hazardous): 3425VDC/1min., Input-Non Hazardous:60
4242VDC/1min. Input-Ground: 2828VDC/1min., Output (Hazardous)-Non Hazardous: 2307VDC/1min.
Output (Hazardous)-Ground: 1414VDC/1min.
300V≤Vout≤600V Models: Input-Output (Hazardous): 3490VDC/1min.,
Input-Non Hazardous: 4242VDC/1min. Input-Ground: 2828VDC/1min.,
.Output (Hazardous)-Non Hazardous: 4242VDC/1min. Output (Hazardous)-Ground: 2738VDC/1min
2.11 SAFETY/EMC
1.1.Interface classification
1.2.Withstand voltage
1.Safety standards:
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IEC 61010-1, UL 61010-1, CSA22.2 No. 61010-1, EN 61010-1.
Mohm
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1.3.Isolation resistance
2.EMC standards (*12):
2.1.Conducted emission
2.2.Radiated emission
> at 25 C, 70%RH, Output to Ground 500VDC100 .
o
IEC/EN 55032, IEC/EN 55024, IEC/EN 61000-3-3, IEC/EN 61000-3-2, FCC part 15-subpart B, VCCI.
EN55032-class B, FCC-class B, VCCI-class B.
EN55032-class A, FCC-class A, VCCI-class A.
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