RSP-1500 TOTAL-POWER | Alldatasheet
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1500W Single Output Power Supply R S P = 1 5 0 0 series Sel @ Features : * Universal AC input/Full range * ZVS new technology * AC input active surge current limiting * High efficiency up to 91% \\ => * Built-in active PFC function, PF>0.95 \\ LE . * Protections: Short circuit / Overload / Over voltage / Over temperature e GS He ties, * Forced air cooling by built-in DC balll bearing fan \\ Y ff Nis * Output voltage can be trimmed between 70~100% of the rated output voltage ~~ : ee i * High power density 8.3W/inch? ~ f * Current sharing up to 6000W(3+1) ~~ * Alarm signal output * Built-in 12V/0.1A auxiliary output for remote control * Built-in remote ON-OFF control * Built-in remote sense function * 3 years warranty = SPECIFICATION ® AA. [42] CB ¢ € DC VOLTAGE oy [GURRENTRANGE [0-240 [0-125 [0-100 fo=@aa f= 568A 92K 150nVe- 150mVe-p 150mVe-p 1600ms, 100ms at full load 0.95/230VAC _0.98/118VAC at full load wweuT ATAIISVAC __8A/230VAC <2.0mA/ 240VAC Protection type : Constant current limiting unit will shut down olp voltage afler Ssec. Re-power on to recover lover vor eee em ene Te 57.6~ 67.2 PROTECTION | OVER VOLTAGE Protection type : Shut down olp voltage, re-power on to recover 95'C 45°C (TSW2) detect on heatsink of power transistor 12V@0.1A(Only for Remote ON/OFF control) REMOTE ON/OFF CONTROL | Please see the Function Manual FUNCTION Please see the Function Manual Please see the Function Manual 20-90% RH non-condensing £0,05%/C (0~ 60) Fite) [EMICONDUCTION & RADIATION | Compliance o ENS5022 (CISPR22) OTHERS [DIMENSION | 278°127"83.5mm (L'W'H) NOTE 1. All parameters NOT specially mentioned are measured at 230VAC input, rated load and 25°C of ambient temperature. 2. Ripple & noise are measured at 20MHz of bandwidth by using a 12" twisted pair-wire terminated with a 0.1uf & 47uf parallel capacitor. 3. Tolerance : includes set up tolerance, line regulation and load regulation. 4. The power suppl 1s conldered a component which wl be insaled io fra equpment. The fra equpment must be re-confed tha ts meets 5, Derating may be needed under low input voltages. Please check the derating curve for more details
MEAN WELL} 1900W Single Output Power Supply R S P . 1 5 0 0 series el 1 Mechanical Specification Case No.943A —_Unit:mm 240 2 \\ Tp max } 1
3 Pt 38
[2 Ole ° jt x 8-M4 L=5(Both Sides) ee i 278 240 41.2, ; ouTPUT ——— 4 — ~ feaHaaaa \\ dM L=5 cL) vy) Ss (ABH Si 5 4 7 0 o direction Sg 8 woe OOU0 = 5). Aes O0s,00 ial . ” =H OOUOB0E 4 iS) 2| PD OO0G0/8] 3[ >" OOO) ag] * = OOOU0== 5 e OOOO000 i l AC Input Terminal Pin No. Assignment Control Pin No. Assignment(CN1,CN2) : HRS DF11-8DP-2DS or equivalent Pin No. 1 Fe = sf RCo Tg TRI eanepsluesorii.~sc 2 | ACN 2 | Re | 6 _[tsiCurent sha) pr equvalent | or equivalent
3 ACiL jar, sf 8 |S
RCG: Remote ON/OFF Ground TRIM: Adjustment of Output Voltage RC2: Remote ON/OFF LS: Load Share -S_ :-Remote Sensing +8: +Remote Sensing Control Pin No. Assignment(CN3) : HRS DF11-6DP-2DS or equivalent [Pino | Assignment | PinNo. | Assignment [Mingus] Terminal _| (1) POKGND | Ere er Srequvaiont | requialent| or equivalent | or equivalent (spores 6A POKGND:PowerOK Ground AUXG: Auxiliary Ground P OK: Power Ok Signal RC1: Remote ON/OFF RCG:Remote ON/OFF Ground AUX: Auxiliary Output
7 PFC fosc : 70KHz
@ Block Diagram PWM fose: 100KHz ie +S ARUME RECTIFIERS POWER | 2 ¢ | RECTIFIERS ia > “ae ee UP & SWITCH. = = & FILTER MEIN PFC Inc | 3 |_FILTER pe ene) L_.-s Qh ON PEC Oren OP. - CONTROL TT OLR, owe] | ert DETECTION [orp] CONTROL = CIRCUIT o POK ¢ REMOTE 5 sheanc es ENROL its AUX 3 € RECTIFIERS POWER [3 2 === ig AUX POWER — FILTER (12V/0.1A) File Name:RSP-1500-SPEC 2007-12-25
MEAN WELL} 1900W Single Output Power Supply R S P . 1 5 0 0 series el lf Derating Curve I Static Characteristics Ta=25°C 100 [ NS L 80 ON 400 -=-~---7 60 / oy ' = » +5V = o--+ | = © Ee $ zm} 3 nr) gs hot 6O- f H m0 10 20 804045 50 G70 (HORIZONTAL) 90 100 120 140 150 160 180 200 220 240 264 AMBIENT TEMPERATURE (‘C) INPUT VOLTAGE (V) 60Hz @ Function Manual 1.Remote ON/OFF (1)Remote ON/OFF control becomes available by applying voltage in CN1 & CN2 & CN3 (2)Table 1.1 shows the specification of Remote ON/OFF function (3)Fig.1.2 shows the example to connect Remote ON/OFF control function Table 1.1 Specification of Remote ON/OFF : SWOpen | SWOpen | SWClose SW Logic —ctoutoff | SWClose | SW Close | SWOpen Fig.1.2 Examples of connecting remote ON/OFF (A)Using external voltage source (B)Using internal 12V auxiliary output an.) ne. @ aux ) AUX 22KQ | 22KQ | poy 1902 | pop Sv 1502 | Roy 12V typ. WO wv 12V typ. —w—© i 6202 Dy T (2) | sw Q | Js ary + AA ROG 4 RG o) On 4 (C)Using internal 12V auxiliary output ©) AUX 2.2KQ NWN ——@ Ret
1502 RC2
12V typ. | WW —O RCG
MEAN WELL} 1900W Single Output Power Supply R S P 7 1 5 0 0 series el 2.Alarm Signal Output (1)Alarm signal is sent out through "P OK" & "P OK GND" pins POK (2)An external voltage source is required for this function. The maximum applied voltage i ae a is 50V and the maximum sink current is 10mA @Qy™ (3)Table 2.1 explain the alarm function built-in the power supply l I | R Output of alarm(P OK) K OstUF 100K v The signal is "Low" when the power supply is above | Low 65% of the rated output voltage-Power OK (0.5V max at 10mA) (6) POK High ne, a The sgnatiuens be ight when ine power supply (External applied voltage POKGND External voltage and R 's under 65% of the rated output voltage-Power Fall | “1004 may ) (The max. Sink s 10mA and 50V) Table 2.1 Explanation of alarm Fig, 2.2 Internal circuit of P OK (Open collector method) 3.Output Voltage TRIM (1)Agjustment of output voltage is possible between 70~100%(Typ.) of the rated output which is shown in Fig. 3.1 (2)Connecting a resistor externally between TRIM and-S on CN1 or CN2 that is shown in Fig. 3.2. Vout | TRIM (©)}— | | or = R(0.5W) | | | CN2 og © | | | | | 1 | | SR Fig. 3.2 Output voltage trimming 02 4702 1.8KQ OPEN Fig. 3.1 External Resistor (Typical) 4.Current Sharing FOCOCSEOY (1)Parallel operation is available by connecting the units shown as below ten i yy (+8,-S and LS are connected mutually in parallel): fetieste) ff % (2)The voltage difference among each output should be minimized that less than +2% is required ‘a ow 0 (3)The total output current must not exceed the value determined by the following equation ‘ U ) (Output current at parallel operation)=(The rated current per unit) x (Number of unit) x 0.9 a [} ¥ (4) In parallel operation 4 units is the maximum, please consult the manufacture for other sn Aon & 0 applications lala Q (5) When remote sensing is used in parallel operation, the sensing wire must be connected only aoe y 7 fal to the master unit No,2(Slave) K inal ve x =) v. fal . 4 alaiel Q Sv voawoe) ee oh aed Ue “ , v ACIL ACIN, = U alee) Row r a filo (| sci. Aon glee)