OMRON S8VK-WA Power Supplies / In Addition
last update: December 3, 2018
This high-capacity yet compact Power Supply requires only less than half the space of the existing models.
Side-by-side mounting possible.
Our shared Value Design for Panel concept for the specifi cations of products used in control panels will create new value to our customer's control panels.
Combining multiple products that share the Value Design concept will further increase the value provided to control panels.
Motor-driven devices such as electric cylinders carry maximal instantaneous current when they start.
When the maximum current exceeds the rated current of a power supply without Boost Current Function, overload protection is activated to limit the output current. To avoid this, you must select a power supply with a rated output larger than the maximum current.
For example, if the maximum current exceeds 10 A, as in the figure on the below, you need a power supply with a rated output of 20 A.
S8VK-WA is equipped with a Boost Current Function that allows a peak current (150% of rated output) to flow for 10 seconds, which ensures a stable startup by a power supply with a rated output current of 10 A as described in the figure on the below.
The equipment stopped and no output from the power supply.
Disconnecting cables and inspection with a tester is required to identify the cause, taking time and work.
・The cause is not clear.
・The failure cannot be reproduced.
・The problem recurs even after the power supply is replaced.
S8VK-WA shows you the source of the problem (e.g. input/output side of the Power Supply, or the main body),
without disconnecting cables or using a tester.
When the door of the control panel is closed, you can still check the status of the Power Supply via your controller, etc.,
using the signal that is output in synchronization with the LED
This feature clarifies the error status and necessary maintenance, minimizing the downtime.
INPUT OK LED: Lights up when the input voltage exceeds the lower limit value of the permissible range.
DC OK LED/signal: Lights up/Signal Output , when the output voltage is more than 90% of the rated output voltage.
Iout >100% LED/signal: Lights up/Signal Output , when the output current exceeds the rated output current.
last update: December 3, 2018
If you have just landed here, this product OMRON S8VK-WA Power Supplies / In Addition,Power Supplies / In Addition is offered online by Tianin FLD Technical Co.,Ltd. This is an online store providing Power Supplies / In Addition at wholesale prices for consumers. You can call us or send enquiry, we would give you the prices, packing,deliverty and more detailed information on the S8VK-WA We cooperate with DHL,TNT,FEDEX,UPS,EMS,etc.They guarantee to meet your needs in terms of time and money,even if you need your OMRON S8VK-WAPower Supplies / In Addition tomorrow morning (aka overnight or next day air) on your desk, 2, 3 days or more.Note to international customers, YES, we ship worldwide.
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last update: December 3, 2018
Not all combinations are possible. Refer to List of Models in Ordering Information, below.
Power rating | Rated input voltage | Rated output voltage | Rated output current | Maximum boost current | Model |
---|---|---|---|---|---|
240 W | Three-phase/single-phase 200 to 240 VAC (Allowable range: Three-phase/single-phase 170 to 264 VAC, 240 to 350 VDC) | 24 V | 10 A | 15 A | S8VK-WA24024 |
480 W | 24 V | 20 A | 30 A | S8VK-WA48024 |
Product name | Model |
---|---|
Front Mounting Bracket (for 240 W) | S82Y-VKW20F |
Front Mounting Bracket (for 480 W) | S82Y-VKW40F |
Part name | Model |
---|---|
Support Rail (Aluminum) | PFP-100N |
PFP-50N | |
PFP-100N2 | |
End Plate | PFP-M |
last update: December 3, 2018
last update: December 3, 2018
(Unit: mm)
Note: The front mounting bracket can be used for front, side-by-side mounting as well.
PFP-100N
PFP-50N
PFP-M
Note: 1. If there is a possibility that the Unit will be subject to vibration or shock, use a steel DIN Rail. Otherwise, metallic
filings may result from aluminum abrasion.
2. If the Unit may be subjected to sliding to either side, attach an End Plate (PFP-M) on each side of the Unit.
last update: December 3, 2018
last update: December 3, 2018
Power rating | 240 W | 480 W | ||
---|---|---|---|---|
Item Output voltage | 24 V | 24 V | ||
Efficiency *1 | Three-phase 200 VAC input | 93% typ. | 94% typ. | |
Single-phase 200 VAC input | 92% typ. | 93% typ. | ||
Three-phase 230 VAC input | 93% typ. | 94% typ. | ||
Single-phase 230 VAC input | 93% typ. | 94% typ. | ||
Input con- ditions | Input voltage range *2 | Three-phase/single-phase 170 to 264 VAC, 265 to 300 VAC (1 second) 240 to 350 VDC | ||
Frequency *2 | 50/60 Hz (47 to 63 Hz) | |||
Input current *1 | Three-phase 200 VAC input | 0.80 A typ. | 1.6 A typ. | |
Single-phase 200 VAC input | 1.4 A typ. | 2.6 A typ. | ||
Three-phase 230 VAC input | 0.70 A typ. | 1.4 A typ. | ||
Single-phase 230 VAC input | 1.2 A typ. | 2.3 A typ. | ||
Power factor | 0.9 min. | |||
Leakage current *3 | Three-phase 200 VAC input | 1 mA max. | ||
Three-phase 230 VAC input | 1 mA max. | |||
Inrush current *4 (for a cold start at 25°C) | Three-phase 200 VAC input | 13 A typ. | 13 A typ. | |
Three-phase 230 VAC input | 15 A typ. | 15 A typ. | ||
Output character- istics | Rated output current | 10 A | 20 A | |
Power Boost Function | 15 A | 30 A | ||
Voltage adjustment range *5 | 24 to 29.5 V (with V.ADJ) | |||
Ripple noise voltage *6 | Three-phase 200 to 240 VAC input | 50 mVp-p max. at 20 MHz of bandwidth | 120 mVp-p max. at 20 MHz of bandwidth | |
Input variation influence *7 | 0.5% max. | |||
Load variation influence *8 | 1.5% max. | |||
Temperature variation influence | 200 to 240 VAC input | 0.05%/°C max. | ||
Startup time *9 | Three-phase 200 VAC input | 1,000 ms max. | ||
Three-phase 230 VAC input | 1,000 ms max. | |||
Output hold time *9 | Three-phase 200 VAC input | 35 ms typ. | 30 ms typ. | |
Three-phase 230 VAC input | 35 ms typ. | 30 ms typ. | ||
Additional functions | Overload protection | Yes, automatic reset, intermittent operation type Refer to Overload Protection below. | ||
Overvoltage protection | Yes, 130% or higher of rated output voltage, power shut off (shut off the input voltage and turn on the input again), Refer to Overvoltage Protection below. | |||
Series operation | Yes (For up to two Power Supplies; external diodes required.) | |||
Parallel operation | Yes (For up to two Power Supplies), Refer to Parallel Operation on Data sheet. | |||
INPUT OK Indicator | Yes (LED: Green) | |||
DC OK Indicator | Yes (LED: Green) | |||
Iout > 100% Indicator | Yes (LED: Yellow) | |||
DC OK Signal Output | Yes (MOS FET relay output 30 VDC max., 50 mA max.) | |||
Iout > 100% signal output | Yes (MOS FET relay output 30 VDC max., 50 mA max.) | |||
Insulation | Withstand voltage | 3.0 kVAC for 1 min. (between all input terminals and all output terminals), cutoff current 20 mA | ||
2.0 kVAC for 1 min. (between all input terminals and PE terminals), cutoff current 20 mA | ||||
1.0 kVAC for 1 min. (between all output terminals, signal output terminals and PE terminals), cutoff current 25 mA | ||||
0.5 kVAC for 1 min. (between all output terminals and all signal output terminals), cutoff current 10 mA | ||||
Insulation resistance | 100 MΩ min. (between all output terminals, signal output terminals and all input terminals / PE terminals) at 500 VDC | |||
Environ- ment | Ambient operating temperature *10 | -40 to 70°C (Derating is required according to the temperature. Refer to Engineering Data on Data sheet.) (with no condensation or icing) | ||
Storage temperature | -40 to 85°C (with no condensation or icing) | |||
Ambient operating humidity | 95% max. (Storage humidity: 95% max.) | |||
Vibration resistance | 10 to 55 Hz, maximum 5 G, 0.42 mm single amplitude for 2 h each in X, Y, and Z directions | |||
Shock resistance | 294 m/s2, 3 times each in ±X, ±Y, ±Z directions | |||
Reliability | MTBF *11 | 290,000 hrs typ. | 230,000 hrs typ. | |
Expected life *12 | 10 years min. | |||
Construc- tion | Weight | 800 g max. | 1050 g max. | |
Cooling fan | No | |||
Degree of protection | IP20 by EN/IEC 60529 | |||
Standards | Harmonic current emissions | Conforms to EN 61000-3-2 | ||
EMI | Conducted emissions | Conforms to EN 61204-3 Class B, EN 55011 Class B (three-phase) Conforms to EN 61204-3 Class A, EN 55011 Class A (single-phase) | ||
Radiated emissions | Conforms to EN 61204-3 Class B, EN 55011 Class B (three-phase) Conforms to EN 61204-3 Class A, EN 55011 Class A (single-phase) | |||
EMS | Conforms to EN 61204-3 high severity levels | |||
Safety standards | UL 508, UL121201 (Listing) CSA C22.2 No.107.1, CSA C22.2 No.213 (cUL) UL 62368-1 (Recognition) OVC II (≤ 3000 m) Pol2 CSA C22.2 No.62368-1 (cUR) OVC II (≤ 3000 m) Pol2 EN 62477-1 OVC III (≤ 2000 m) OVC II (2000 m < and ≤ 3000 m) Pol2 EN 50178 OVC III (≤ 2000 m) OVC II (2000 m < and ≤ 3000 m) Pol2 EN 62368-1 OVC II (≤ 3000 m) Pol2 EAC (TR CU 004 / 2011, TR CU 020 / 2011) RCM (EN61000-6-4) Conforms to PELV (EN/IEC 60204-1) Conforms to EN/IEC 61558-2-16 | |||
SEMI | Conforms to SEMI F47-0706 (three-phase / single-phase 200 to 240 VAC input) |
*1. The value is when both rated output voltage and rated output current are satisfied.
*2. Do not use an inverter output for the product. Inverters with an output frequency of 50/60 Hz are available, but the rise
in the internal temperature of the product may result in ignition or burning. If the input is connected to a UPS, do not
connect a UPS with a square-wave output. Doing so will cause the internal temperature of the product to increase,
possibly causing smoking or burning.
*3. The value is determined according to the Electrical Appliances and Material Safety Act.
*4. Values for a cold start at 25°C. Refer to Inrush Current, Startup Time, and Output Hold Time on below.
*5. If the output voltage adjuster (V. ADJ) is turned, the voltage will increase by more than the voltage adjustment range.
When adjusting the output voltage, confirm the actual output voltage from the product and be sure that the load is not
damaged.
*6. The value is when both rated output voltage and rated output current are satisfied. A characteristic when the ambient
operating temperature is 25°C.
*7. This is the maximum variation in the output voltage when the input voltage is gradually changed within the allowable
input voltage range at the rated output voltage and rated output current.
*8. 200 to 240 VAC input, in the range of 0 A to the rated output current.
*9. This is the value when both rated output voltage and rated output current are satisfied and at room temperature
(25°C). Refer to Inrush Current, Startup Time, and Output Hold Time on below for details.
*10. At -40 to -25°C, time will be required before the rated output voltage is output after the input voltage is input.
*11. MTBF is calculated according to JEITA RCR-9102.
*12. Refer to Recommended Replacement Periods and Periodic Replacement for Preventive Maintenance on Data Sheet for
details.
• To comply with PELV output requirements for EN/IEC 60204-1, ground the negative side of the output (-V) to a protective earth (PE).
• EN/IEC 61558-2-16
The S8VK-WA was designed based on EN/IEC 61558-2-16.
Currently, IEC 61558-2-17 has been replaced by IEC 61558-2-16.
When certification was received for EN/IEC 60204-1 (Machinery Safety), it was necessary to go through a control transformer to the control circuits. However, a control transformer is not always necessary for product that have been certified for the safety standard for OVCIII or for product that use a transformer that conforms to EN/IEC 61558-2-16.
• Safety Standards for a DC Input
The following safety standards apply to a DC input: UL 62368-1, cUR (CSA C22.2 No. 62368-1), EN/IEC 62368-1, EN 50178, EN/IEC62477-1, EN/IEC 61558-2-16. Safety standard compliance is achievable by connecting a UL-certified fuse as specified below to the (L1/+) side.
For a DC power input, connect (L1/+) side to (+), and (L3/-) side to (-).
To select a UL certified fuse, refer to Recommended circuit breakers and fuses on Data Sheet.
Note: Twice the normal inrush current will flow during parallel operation or for backup operation. Therefore, check the fusing
characteristics of fuses and operating characteristics of breakers making sure that the external fuses will not burn out
and the circuit breakers will not be activated by the inrush current.
The product is automatically protected from short-circuit current and overcurrent damages when the load current is in the range of 151 to 175% of the rated current.
When the output current falls within the rated range, the overload protection function is automatically cleared.
Note: 1. Internal parts may occasionally deteriorate or be damaged if a short-circuited or overcurrent state continues during
operation. Be sure to check that the Iout > 100% indicator is not lit or the Iout > 100% signal output is turned OFF
before using.
2. Internal parts may possibly deteriorate or be damaged if the Power Supply is used for applications with inrush
current or overloading at the load end. Do not use the Power Supply for such applications.
Overvoltage will be detected to prevent the load from being subjected to excessive voltage when the feedback circuit in the Power Supply fails, etc.
When an excessive voltage that is approximately 130% of the rated output voltage or more is output, the output voltage is cut OFF, preventing damage to the load due to overvoltage.
Reset the input power by turning it OFF for at least three minutes and then turning it back ON again.
Note: Do not turn ON the power again until the cause of the overvoltage has been removed.
The INPUT OK indicator will light when the input voltage exceeds the lower limit value of the permissible range.
Note: The voltage may be applied even if the indicator does not light.
Be sure to check the input voltage when performing wiring.
The DC OK indicator will light when the output voltage is more than 90% of the rated output voltage, and the internal MOS FET relay is conducted (turned ON).
Note: 1. The output voltage may be generated even if the indicator does not light. Be sure to check the output voltage when
connecting to the load.
2. This function monitors the voltage at the power output terminals.
To check the voltage accurately, measure the voltage at the load end.
3. If the output voltage is set to less than 90% of the rated output voltage, the indicator may go off and the signal
output may be turned OFF.
The Iout > 100% indicator lights up when the output current exceeds the rated output current, and the internal MOS FET relay is conducted (turned ON).
Note: 1. The Iout > 100% Indicator may light up, and the Iout > 100% Signal Output may turn ON during peak current
operation, however, the Power Supply can be used as long as the operating conditions specified in Peak current
(Data Sheet) are satisfied.
2. Even when the operating conditions for parallel operation are satisfied, the Iout>100% Indicator / Signal Output
may operate, so do not use the Iout>100% Indicator / Signal Output.
3. During a short-circuit, the indicator will operate intermittently due to the overload protection function. When this
happens, the indicator will blink in accordance with the intermittent operation, and the Iout > 100% signal output
will repeated turn ON and OFF.
The shortest ON time of the Iout > 100% signal output during intermittent operation is 5 ms.
Since the Signal Output is composed of the MOS FET relay, it does not have any polarity.
30 VDC max., 50 mA max.
Residual voltage when the function is ON: 2 V max.
Leakage current when the function is OFF: 0.1 mA max.
Note: 1. Internal current control circuits are not provided internally for output signals. Do not allow the output current to
exceed 50 mA.
2. After completing wiring, confirm that the circuits operate correctly.
Error locations at the input, product, and load side can be identified by the INPUT OK, DC OK, Iout > 100% Indicator / Signal Output.
last update: December 3, 2018
Catalog Name | Catalog Number [size] | Last Update | |
---|---|---|---|
![]() | T219-E1-01 [4641KB] | Jan 21, 201920190121 | S8VK-WA Data Sheet |
![]() | T220-E1-01 [3176KB] | Dec 14, 201820181214 | S8VK-WA Catalog |