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Technical content
The fleXPower series is a range of modular power supplies which can be configured into a bespoke solution for quick delivery of samples, prototypes and low volume production. The range consists of 8 power platforms ranging from 400W to 2400W and 14 modules ranging from 3.3V at 66W to 60V at 750W. The modules can be placed in series or in parallel to give a single output at the chassis rating. Modules of unlike power can be paralleled and will current share within 10%. Signals are floating and allow for configuration as active low or active high and include AC OK, global DC OK, module DC OK and current monitor. There is a global inhibit signal which can alternatively be configured as a global enable. fleXPower consists of a chassis of the required power level in which there are 10 slots in versions rated up to 700W, 12 slots for the 900W version, 14 slots for the 1000W version and 16 slots in the 1500 W version. An extra 200W of power is available from X4, X5, X7, X9 & X10 chassis at high line and an extra 1000 W is available from the X15 chassis at high line. fleXPower chassis can be specified as industrial or medical types. Industrial versions have EN60950 and UL60950 approvals and also meet the requirements of EN61010. Medical versions are approved to EN60601-1 and UL60601-1 and also meet the EMC requirements specified in UL60601-1-2 2nd Edition.
- Industrial / IT & Medical Approvals
- Configurable For Fast Time To Market
- Semi F47 Compliant
- Flexible Series & Parallel Capability
- -20 °C Operation
- Extra Power Available At High Line
- 6 Power Platforms
- Fully Featured Signal Set
- Isolated Signals with Reverse logic Option
- Meets EN60601-1-2 & EN61204-3 For EMC
- FMEA Available
- Optional Fan Speed Control fleXPower Series fleXPower Series
Input Characteristics - X7 Models Characteristic Format Voltage Frequency Minimum Typical Maximum Units Notes & Conditions Input Voltage AC 85 264 VAC Input Voltage DC 120 370 VDC Input Frequency 47 63 Hz 400 Hz operation. See note 1. Power Factor Single 115 V 50 Hz 1.00 See Harmonics Graph 1 115 V 400 Hz 0.97 See Harmonics Graph 3 230 V 50 Hz 0.98 See Harmonics Graph 2 230 V 400 Hz 0.72 See Harmonics Graph 4 DD 115 V 50 Hz 0.99 See Harmonics Graph 5 115 V 400 Hz 0.97 See Harmonics Graph 7 230 V 50 Hz 0.98 See Harmonics Graph 6 230 V 400 Hz 0.71 See Harmonics Graph 8 Input Current, No Load Single 115 V 0.211 A 230 V 0.278 A DD 115 V 0.422 A 230 V 0.556 A Input Current, Full Load Single 115 V 7.57 9.33 A 5.33 A for X4, 6.67 A for X5 230 V 3.77 4.67 A 2.67 A for X4, 3.33 A for X5 DD 115 V 15.14 18.66 A 10.66 A for X4DD, 13.33 A for X5DD 230 V 7.54 5.34 A 5.33 A for X4DD, 6.66 A for X5DD Inrush Current Single 115 V 6.6 20 A 230 V 11.0 20 A 264 VAC DD 115 V 13.2 40 A 230 V 22.0 40 A 264 VAC Leakage Current Single 115 V 205 μA 50 Hz 230 V 370 1500 μA 50 Hz, 200 μA max. for XM DD 115 V 410 μA 50 Hz 230 V 740 3000 μA 50 Hz, 400 μA max. for XM Input Protection T12A / 250V internal fuse in line and neutral 1. Class A harmonic current levels, leakage current levels are exceeded. Plot 1. Inrush Current for X7 at 115 VAC Plot 2. Inrush Current for X7 at 230 VAC xppower.com
Input Characteristics - X9 Models Characteristic Format Voltage Frequency Minimum Typical Maximum Units Notes & Conditions Input Voltage AC 85 264 VAC Input Voltage DC 120 370 VDC Input Frequency 47 63 Hz 400 Hz operation. See note 1. Power Factor Single 115 V 50 Hz 1.00 See Harmonics Graph 9 115 V 400 Hz 0.97 See Harmonics Graph 11 230 V 50 Hz 0.98 See Harmonics Graph 10 230 V 400 Hz 0.73 See Harmonics Graph 12 DD 115 V 50 Hz 0.99 See Harmonics Graph 13 115 V 400 Hz 0.97 See Harmonics Graph 15 230 V 50 Hz 0.98 See Harmonics Graph 14 230 V 400 Hz 0.72 See Harmonics Graph 16 Input Current, No Load Single 115 V 0.265 A 230 V 0.367 A DD 115 V 0.530 A 230 V 0.734 A Input Current, Full Load Single 115 V 9.95 12.00 A 230 V 4.89 6.00 A DD 115 V 19.90 24.00 A 230 V 9.78 12.00 A Inrush Current Single 115 V 10.0 40 A See Plot 3 230 V 14.0 40 A 264 VAC. See Plot 4 DD 115 V 20.0 80 A 230 V 28.0 80 A 264 VAC Leakage Current Single 115 V 252 μA 50 Hz 230 V 512 1500 μA 50 Hz, 200 μA max. for XM DD 115 V 504 μA 50 Hz 230 V 1024 3000 μA 50 Hz, 400 μA max. for XM Input Protection T15A / 250V internal fuse in line and neutral 1. Class A harmonic current levels, leakage current levels are exceeded. Plot 3. Inrush current for X9 at 115 VAC Plot 4. Inrush current for X9 at 230 VAC xppower.com
Input Characteristics - X10 Models Characteristic Format Voltage Frequency Minimum Typical Maximum Units Notes & Conditions Input Voltage AC 85 264 VAC Input Voltage DC 120 370 VDC Input Frequency 47 63 Hz 400 Hz operation. See note 1. Power Factor Single 115 V 50 Hz 1.00 See Harmonics Graph 17 115 V 400 Hz 0.97 See Harmonics Graph 19 230 V 50 Hz 0.98 See Harmonics Graph 18 230 V 400 Hz 0.73 See Harmonics Graph 20 DD 115 V 50 Hz 0.99 See Harmonics Graph 21 115 V 400 Hz 0.97 See Harmonics Graph 23 230 V 50 Hz 0.98 See Harmonics Graph 22 230 V 400 Hz 0.72 See Harmonics Graph 24 Input Current, No Load Single 115 V 0.265 A 230 V 0.367 A DD 115 V 0.530 A 230 V 0.734 A Input Current, Full Load Single 115 V 9.95 13.30 A 230 V 4.89 6.67 A DD 115 V 19.90 26.6 A 230 V 9.78 13.3 A Inrush Current Single 115 V 10.0 40 A See Plot 5 230 V 14.0 40 A 264 VAC. See Plot 6 DD 115 V 20.0 80 A 230 V 28.0 80 A 264 VAC Leakage Current Single 115 V 142 μA 50 Hz 230 V 281 1500 μA 50 Hz, 200 μA max. for XM DD 115 V 284 μA 50 Hz 230 V 562 3000 μA 50 Hz, 400 μA max. for XM Input Protection T20A / 250V internal fuse in line and neutral 1. Class A harmonic current levels, leakage current levels are exceeded. Plot 5. Inrush current for X10 at 115 VAC Plot 6. Inrush current for X10 at 230 VAC xppower.com
Input Characteristics - X15 Models Characteristic Voltage Frequency Minimum Typical Maximum Units Notes & Conditions Input Voltage AC 85 264 VAC Input Voltage DC 120 370 VDC Input Frequency 47 63 Hz 400 Hz operation. See note 1. Power Factor 120 V 60 Hz 0.997 See Harmonics Graph 27 230 V 60 Hz 0.980 See Harmonics Graph 28 Input Current, No Load 115 V 0.750 A 230 V 0.700 A Input Current, Full Load 115 V 16.31 A 230 V 12.89 A Inrush Current 115 V 16.50 40 A See Plot 7 230 V 28.00 40 A 264 VAC. See Plot 8 Input Protection T30A / 250V internal fuse in line and neutral 1. Class A harmonic current levels, leakage current levels are exceeded. Plot 7. Inrush current for X15 at 115 VAC Plot 8. Inrush current for X15 at 230 VAC xppower.com
Characteristic Minimum Typical Maximum Units Notes & Conditions Voltage 2 60 VDC See modules table Initial Set Accuracy 0.13% Voltage Adjustment ±10 % ±6 min for 3.3 V output Voltage Programming ±6 % -6% apply 0 V, +6% apply 5 V to VProg pin Minimum Load 0 A No minimum load required for 2, 3 or 4 slot single output modules and 6 x dual output modules. 2 slot 5 x dual output modules require 10% load on V1 to meet specified regulation on V2 Start Up Delay 1.6 2 s To 90% of nominal output. See Plot 9 Start Up Delay from ROF 3 ms Start Up Rise Time 37.5 ms See Plot 10 Hold Up Time X7 20 33.5 ms For X7 with full load. Hold Up Time X7 high line 20 24.35 ms For X7 with 900 W load, high line. Hold Up Time X9 20 37.5 ms For X9 with full load. Hold Up Time X9 high line 20 30.7 ms For X9 with 1100 W load, high line. Hold Up Time X4 20 67.0 ms For X4 with full load. Hold Up Time X5 20 51.0 ms For X5 with full load. Hold Up Time X10 20 45.2 ms For X10 with full load. Hold Up Time X10 high line 20 44.2 ms For X10 with 1200 W load Hold Up Time X15 16 44.8 ms For X15 with full load. Hold Up Time X15 high line 16 22.7 ms For X15 with 2500 W load Line Regulation 0.01 0.1 % Load Regulation 1 % Transient Response 0.7 ±2 % 50-100% load change, recovery time 300 μs Ripple & Noise 0.1 1.0 % 20 MHz BW, 150 MHz BW typical 0.2% 48 V output. 6E module has 1.5% max on V1 and V2, 6N module has 1.5% max on V1 and 3% max on V2 Over Voltage Protection 115 125 130 % 140% max for 6E and 6N modules. Overload Protection 110 120 140 % Overtemperature Protection 115 ºC Measured Internally, Auto Resetting Short Circuit Protection Continuous auto-resetting Temperature Coefficient 0.03 % / ºC Parallel Connections Via single wire parallel. Dissimilar powers will share within 10%. Housekeeping Voltage 5 V/1 A from each chassis Plot 10. Start Up Rise TimePlot 9. Start Up Delay xppower.com
Characteristic Minimum Typical Maximum Units Notes & Conditions Input to Output 4000 VAC Input to Ground 1500 VAC Output to Ground 250 VDC Environmental Characteristic Minimum Typical Maximum Units Notes & Conditions Operating Temperature -20 +70 ºC Full power to +50 ºC, 50% power at +70 ºC, -20 ºC startup only Reverse Fan Operating Temperature -20 +60 ºC Full power to +40 ºC, 50% power at +60 ºC, -20 ºC startup only Operating Humidity 5 95 % RH Non-condensing Storage Temperature -40 +85 ºC Operating Altitude 3000 m Audible Noise 46.1 dBA Fan is Delta HH Shock MIL STD-810 Method 516.4 Procedure 1, 30G, half sine, 6 axes Vibration MIL STD-810 Method 514.4 Procedure 1, 1 G rms, 5-500 Hz, 3 axes General Characteristic Minimum Typical Maximum Units Notes & Conditions PFC Switching Frequency 65 kHz Housekeeping supply 130 kHz typical Module Switching Frequency 200 kHz Weight X7 Chassis 2.75 (1250) lbs (g) Weight X9 Chassis 3.3 (1500) lbs (g) Weight X10 Chassis 4.0 (1800) lbs (g) Weight X15 Chassis 8.0 (3636) lbs (g) Weight 2X Module 0.48 (218) lbs (g) Weight 3X Module 0.74 (335) lbs (g) Weight 4X Module 0.95 (431) lbs (g) Power Density X4 3.2 W / in3 Power Density X5 4.0 W / in3 Power Density X7 5.6 W / in3 Power Density X9 6.0 W / in3 Power Density X10, X15 5.7 W / in3 Efficiency 83.5% See graphs page 20 Reliability Designation 25 ºC 40 ºC Units Notes & Conditions
2 Slot Modules
2D 1,211,340 735,321 Hours MTBF calculation assumptions: 1) All SMD resistors are considered 10K. 2) Quality level is Lower( hermetically ) for transistor and diode by default unless higher quality is mentioned. 3) Non-ER' is used in quality level of capacitor and resistor during the calculation. 4) Commercial' is used in quality level of IC and Relay during the calculation. 5) Special correction factor as 0.01 was used in Q1 and Q2 of the X7,X9 due to the improper module of the software. 6) Fans are not considered during the calculation. 2J 1,221,690 736,597 Hours 2P 1,158,754 697,325 Hours 2R 895,129 532,978 Hours 2W 1,160,350 699,271 Hours
3 Slot Modules
5X 748588 521,751 Hours 3C 1,160,350 707,221 Hours 3D 1,196,651 728,751 Hours 3J 1,321,184 740,414 Hours 3L 1,207,620 730,995 Hours 3P 1,205,278 729,020 Hours 3Q 1,210,351 731,751 Hours 3R 569,600 382,000 Hours 3U 1,198,520 725,096 Hours 3W 1,192,223 720,847 Hours
4 Slot Modules All modules 460,029 327,176 Hours
X4 843,674 507,459 Hours X5 843,674 507,459 Hours X7 599,009 320,296 Hours X9 559,615 336,507 Hours X10 527,132 316,918 Hours X15 181,127 126,133 Hours To calculate the MTBF of your configuration, select the individual MTBF for each modules and use the calculation below to derive total MTBF. 111 1 MTBF MTBF1 MTBF2 MTBFn TOTAL xppower.com
Electromagnetic Compatibility - Emissions Electromagnetic Compatibility - Immunity Phenomenon Standard Test Level Criteria Notes & Conditions ESD EN61000-4-2 4 A EFT EN61000-4-4 3 A Radiated EN61000-4-3 10 V/m A Surges EN61000-4-5 3 A Conducted EN61000-4-6 10 V/m A Dips and Interruptions EN61000-4-11 70% Ut A For 10 ms, 100% load 40% Ut B For 100 ms, 100% load 0% Ut B For 5000 ms, 100% load Dips and Interruptions* EN61000-4-11 (Medical) 70% Ut A For 500 ms, Medical, 100% load 40% Ut A For 100 ms, Medical, 60% load 0% Ut A For 10 ms, Medical, 100% load 0% Ut B For 5000 ms, Medical, 100% load Phenomenon Standard Test Level Criteria Notes & Conditions Conducted (X models) EN55022 Class B Conducted (XM models) EN55011 Class A Radiated EN55022 Class A Harmonic Currents EN61000-3-2 Class A Voltage Fluctuations EN61000-3-3 Complies with EN60601-1-2 for medical equipment, and EN61204-3 for IT equipment. *(EN60601-1-2 available as option) Complies with EN60601-1-2 for medical equipment, and EN61204-3 for IT equipment. Conducted Emissions Peak and average emissions for X7-3L3Q2D configuration against Class B limits Safety Approvals Safety Agency Safety Standard Category CB Report UL IEC60950-1:2005 Ed 2 Information Technology UL UL File #E139109-A62-UL UL60950-1 (2007), CSA 22.2 No.60950-1-07 Ed 2 Information Technology TUV EN60950-1:2006 Information Technology CE LVD Safety Agency Safety Standard Category CB Report IEC60601-1 Ed 3 Including Risk Management Medical (XM Models) UL UL File # E146893, ANSI/AAMI ES 60601-1:2005 & CSA C22.2 No. 60601-1:08 Medical (XM Models) TUV EN60601-1:2006 Medical (XM Models) Equipment Protection Class Safety Standard Notes & Conditions Class I IEC60950-1:2005 Ed 2 & IEC60601-1 Ed 3 See safety agency conditions of acceptability for details Means of Protection Category Primary to Secondary 2 x MOPP (Means of Patient Protection) IEC60601-1 Ed 3Primary to Earth 1 x MOPP (Means of Patient Protection) xppower.com
Configuration - Model Number Construction xppower.com Model Sector Vinput Slots115 V 230 V Pnom Ppk* Pnom Ppk* X4 Industrial 400 W 800 W 600 W 1200 W 10 XM4 Medical 400 W 800 W 600 W 1200 W 10 X5 Industrial 500 W 800 W 700 W 1200 W 10 XM5 Medical 500 W 800 W 700 W 1200 W 10 X7 Industrial 700 W 800 W 900 W 1200 W 10 XM7 Medical 700 W 800 W 900 W 1200 W 10 X9 Industrial 900 W 1100 W 1100 W 1500 W 12 XM9 Medical 900 W 1100 W 1100 W 1500 W 12 X10 Industrial 1000 W 1300 W 1200 W 1600 W 14 XM10 Medical 1000 W 1300 W 1200 W 1600 W 14 X15 Industrial 1500 W 1500 W 2500 W 2500 W 20 XM15 Medical 1500 W 1500 W 2500 W 2500 W 20 The fleXPower range allows for simple configuration of a custom modular power supply with up to twenty outputs. The chassis consists of either ten, twelve or fourteen slots, and modules are either two, three or four slots wide. Please refer to next page for specific X15 configuration information. Dual Output - Module Voltage/Current Rating Output 1 Output 2 Slots CodeVoltage Current Voltage Current 5.0 V 10.0 A 5.0 V 10.0 A 2 5A 5.0 V 10.0 A 3.3 V 10.0 A 2 5B 12.0 V 10.0 A 12.0 V 8.0 A 2 5D 15.0 V 8.0 A 15.0 V 6.0 A 2 5E 15.0 V 8.0 A 15.0 V 6.0 A 2 6E* 15.0 V 8.0 A 12.0 V 8.0 A 2 5F 12.0 V 10.0 A 5.0 V 10.0 A 2 5G 12.0 V 10.0 A 3.3 V 10.0 A 2 5H 12.0 V 10.0 A 2.0 V 10.0 A 2 5J 15.0 V 10.0 A 5.0 V 10.0 A 2 5K 15.0 V 10.0 A 3.3 V 10.0 A 2 5L 15.0 V 10.0 A 2.0 V 10.0 A 2 5M 24.0 V 6.0 A 5.0 V 10.0 A 2 5N 24.0 V 6.0 A 5.0 V 10.0 A 2 6N* 24.0 V 6.0 A 3.3 V 10.0 A 2 5P 24.0 V 6.0 A 2.0 V 10.0 A 2 5Q Step 1 T o configure your fleXPower unit, select the required output power and application type. fleXPower chassis are available in five industrial and five medical power formats, detailed above. Step 2 FleXPower can accommodate up to seven modules, resulting in an extensive range of output combinations. However, as all modules are designed to fit across either 2, 3 or 4 slots in the chassis, configuration is very simple. Select the appropriate modules for your output requirements, ensurig that all modules will fit in the chassis. X4, X5 and X7 chassis have the capacity to accept up to two 4 series modules. X9 and X10 chassis will accept up to three 4 series modules, and X15 chassis will accept up to 4 series modules, max of 2 each per bay. First, insert 4 series modules, ordered lowest voltage to highest. Next in order, insert 3 series modules, ordered by the lowest voltage for same module width. Follow with 2 series single output, lowest voltage to highest voltage, then 5 series multi-output, ordered alphabetically a-z. Then 1 series, single output modules, lowest voltage to highest Step 3 Add any required options. These are grouped into three types; parallel options, series options and other options. The standard signal set for each chassis includes Global Inhibit, Global DC OK and Global AC OK, each having logic 0 operation. Optionally a logic 1 operating version of each is available along with reverse air flow. Also available is a fan speed control card option, which is available separately or combined with previously listed options. Parallel Option Codes Code Description
00 No parallel required
12 Modules 1 & 2
13 Modules 1 to 3
14 Modules 1 to 4
23 Modules 2 & 3
24 Modules 2 to 4
25 Modules 2 to 5
34 Modules 3 & 4
35 Modules 3 to 5
40 Modules 1 & 2, 3 & 4
00 No series required
OUTPUT MODULES 1-5 (1-6: 900 W chassis/ 1-7: 1000 W chassis) *X7- 700 W industrial chassis, odule slots available. 3C - 3.3 V @ 60.0 A. Three slot width module. 3L - 15.0 V @ 20.0 A. Three slot width module. 2C - 3.3 V @ 40.0 A. T wo slot width module. 00 - No parallel option. 23 - Modules 2 and 3 in series to give 18.3 V @ 20.0 A. 16 - Fan speed control card. CHASSIS OPTIONS P P S S + +X X X X - - Example Other Option Codes Code Description
01 Reverse Air
02 Global Enable - Logic 1
03 Option 01 & 02
04 Global DC OK - Logic 1
05 Option 01 & 04
06 Option 02 & 04
07 Option 01, 02 & 04
08 Global AC OK - Logic 1
09 Option 01 & 08
10 Option 02 & 08
11 Option 01, 02 & 08
12 Option 04 & 08
13 Option 01, 04 & 08
14 Option 02, 04 & 08
15 Option 01, 02, 04 & 08
16 Fan Speed Control
17 Option 01 & 16
18 Option 02 & 16
19 Option 04 & 16
20 Option 08 & 16
21 Option 01, 02 & 16
22 Option 01, 04 & 16
23 Option 01, 08 & 16
24 Option 02, 04 & 16
25 Option 02, 08 & 16
26 Option 04, 08 & 16
27 Option 01, 02, 04 & 16
28 Option 01, 02, 08 & 16
29 Option 02, 04, 08 & 16
30 Option 01, 02, 04, 08 & 16
Note: Peak power available for 10 seconds with 35% duty cycle. Note: Fancard options 16-30 will occupy 2 slots. Note: All options also applicable to X15 *No minimum load needed on output 1 for regulation Single Output - Module Voltage/Current Rating Voltage Current Ipk Power Ppk Slots Code 3.3 V 20.0 A n/a 66 W n/a 2 1C 3.3 V 40.0 A n/a 132 W n/a 2 2C 3.3 V 60.0 A n/a 198 W n/a 3 3C 5.0 V 20.0 A n/a 100 W n/a 2 1D 5.0 V 40.0 A n/a 200 W n/a 2 2D 5.0 V 60.0 A n/a 300 W n/a 3 3D 12.0 V 8.50 A n/a 102 W n/a 2 1J 12.0 V 17 .0 A n/a 204 W n/a 2 2J 12.0 V 25.0 A n/a 300 W n/a 3 3J 12.0 V 62.5 A n/a 750 W n/a 4 4J 15.0 V 7 .00 A n/a 105 W n/a 2 1L 15.0 V 14.0 A n/a 210 W n/a 2 2L 15.0 V 20.0 A n/a 300 W n/a 3 3L 15.0 V 50.0 A n/a 750 W n/a 4 4L 24.0 V 5.00 A n/a 120 W n/a 2 1P 24.0 V 10.5 A n/a 252 W n/a 2 2P 24.0 V 17 .0 A n/a 408 W n/a 3 3P 24.0 V 31.5 A n/a 750 W n/a 4 4P 24.0 V 5.00 A 10.0 A 120 W 240 W 2 1R (1) 24.0 V 10.5 A 21.0 A 252 W 504 W 2 2R (1) 24.0 V 17 .0 A 34.0 A 408 W 816 W 3 3R (1) 28.0 V 4.50 A n/a 126 W n/a 2 1Q 28.0 V 9.00 A n/a 252 W n/a 2 2Q 28.0 V 14.0 A n/a 392 W n/a 3 3Q 28.0 V 26.8 A n/a 750 W n/a 4 4Q 36.0 V 3.50 A n/a 126 W n/a 2 1U 36.0 V 7 .00 A n/a 252 W n/a 2 2U 36.0 V 11.0 A n/a 396 W n/a 3 3U 36.0 V 21.0 A n/a 750 W n/a 4 4U 48.0 V 2.50 A n/a 120 W n/a 2 1W 48.0 V 5.20 A n/a 249 W n/a 2 2W 48.0 V 8.50 A n/a 408 W n/a 3 3W 48.0 V 15.7 A n/a 750 W n/a 4 4W 60.0 V 2.00 A n/a 120 W n/a 2 1Y 60.0 V 4.20 A n/a 252 W n/a 2 2Y 60.0 V 7 .00 A n/a 420 W n/a 3 3Y 60.0 V 12.5 A n/a 750 W n/a 4 4Y 1. Peak power available for 10 seconds with 35% duty cycle, if peak power rating is exceeded output may latch, recycle input to reset.
xppower.com X15 Configuration Rules
- Configuration for X15 is Chassis - Top Bay - Options Bottom Bay - Options
- Modules for each bay are configured same as X4, X5, X7, X10.
- Maximum 1250W for each bay, power to be evenly distributed between top and bottom bays.
- Option codes within each bay is the same as X4 to X10.
- Fan control card mounts on bottom bay standard. For other mount location contact sales.
- 1st and 2nd digits = parallel like voltages, including vertical parallel.
- 3rd and 4th digits = series option designation.
- 5th and 6th digits = other option codes. (5th and 6th digits fan card options 16 to 30 is called out for one bay only, either top or bottom). TOP BAY OPTIONS BOTTOM BAY CHASSIS OPTIONS P P S S + +X X X X - - P P S S + +- MOD.2 MOD.3 MOD.4 MOD.5 Vertical Parallel Option Codes Code Description
61 Parallel module 1 to module 1 top and bottom
62 Parallel module 2 to module 2 top and bottom
63 Parallel module 3 to module 3 top and bottom
64 Parallel module 4 to module 4 top and bottom
65 Parallel module 5 to module 5 top and bottom
91 Parallel module 1 to module 1 top and bottom, plus parallel code 12 top bay
92 Parallel module 1 to module 1 top and bottom, plus parallel code 12 top & 12 bottom bay
93 Parallel module 1 to module 1 top and bottom, plus parallel code 13 top & 12 bottom bay
94 Parallel module 2 to module 2 top and bottom, plus parallel code 23 top bay
95 Parallel module 2 to module 2 top and bottom, plus parallel code 23 top & 23 bottom bay
96 Parallel module 2 to module 2 top and bottom, plus parallel code 24 top & 24 bottom bay
97 Parallel module 3 to module 3 top and bottom, plus parallel code 34 top bay
98 Parallel module 3 to module 3 top and bottom, plus parallel code 34 top & 34 bottom bay
- All information and options described on the previous page are also valid for x15, including options codes as listed.
xppower.com X15 - 2500 W industrial chassis, 20 module slots configured as 2 bays of 10 slots each. 3D - 5.0 V @ 60.0 A. Three slot width module. 2D - 5.0 V @ 40.0 A. T wo slot width module. 2P - 24 V @ 10.5 A. T wo slot width module. 91 - Vertical parallel module 1 top bay to module 1 bottom bay plus parallel modules 1 and 2 top bay Example 1 X15-3D2D2P5J-91 - 5V @ 200A, 24V @ 10.5A, 12V @ 10A, 3.3V @ 40A, 2V @ 10A, with fan speed control X15-3D2D2P5J-91 3D2D2C-120016 3D2D2C-120016 3D - 5.0 V @ 60.0 A. Three slot width module 2D - 5.0 V @ 40.0 A. T wo slot width module 2C - 3.3 V @ 40.0 A. T wo slot width module 12 - Parallel modules 1 and 2, bottom bay 00 - No series option 16 - Fan speed control card Front End & Top Bay & Options Bottom Bay & Options
xppower.com Example 2 X15 - 2500 W industrial chassis, 20 module slots configured as 2 bays of 10 slots each. 3D - 5.0 V @ 60.0 A. Three slot width module. 2D - 5.0 V @ 40.0 A. T wo slot width module. 61 - Vertical parallel module 1 top bay to module 1 bottom bay X15-3D2D5J-61 - 5V @ 160A, 5V @ 40A, 12V@ 10A, 3.3V @ 40A, 2V @ 10A, with fan speed control X15-3D2D5J-61 3D2D2C-120016 3D2D2C-120016 3D - 5.0 V @ 60.0 A. Three slot width module 2D - 5.0 V @ 40.0 A. T wo slot width module 2C - 3.3 V @ 40.0 A. T wo slot width module 12 - Parallel modules 1 and 2, bottom bay 00 - No series option 16 - Fan speed control card Front End & Top Bay & Options Bottom Bay & Options
xppower.com Signals Global AC OK/Power Fail Global AC OK is an open collector signal providing a minimum of 5 ms warning of loss of output regulation. The signal is fully isolated and the collector and emitter must be connected externally. Maximum sink current 2 mA, maximum voltage 20 V . On dual output module, DC OK monitors V1 output only. AC OK Collector Pin 6 AC OK Emitter Pin 5 POWER SUPPLY Standard Logic 0 Transistor On (<0.8 V): AC OK Transistor Off (>4.5 V): AC NOT OK Optional Logic 1 Transistor Off (>4.5 V): AC OK Transistor On (<0.8 V): AC NOT OK Chassis J2 Logic Connector 3300R
5 V Standby
Transistor On (<0.8 V): DC OK Transistor Off (>4.5 V): DC NOT OK Optional Logic 1 Transistor Off (>4.5 V): DC OK Transistor On (<0.8 V): DC NOT OK Chassis J2 Logic Connector 3300R Chassis J2 Logic Connector Global Inhibit Return Pin 1
0 V or Floating: Power Supply On
2-5 mA: Power Supply Off Optional Logic 1 2-5 mA: Power Supply On
0 V or Floating: Power Supply Off
Global DC OK is an open collector signal providing warning that the output voltage has fallen below 90% of nominal. The signal is fully isolated and the collector and emitter must be connected externally. Maximum sink current 2 mA, maximum voltage 20 V . On dual output module, DC OK monitors V1 output only. Global Inhibit Global Inhibit is an isolated control signal which can turn the power supply off by supplying 2 to 5mA into the pin. Global Enable option available, see ‘Other Option Codes’ table. Module DC OK Module DC OK is a nominal “ON” floating collector and emitter transistor of an optocoupler, which provides a warning of the loss of output regulation on the main output of the module. Maximum sink current 2 mA, maximum voltage 20 V . Module DC OK Collector Pin 8 Module DC OK Emitter Pin 9 POWER SUPPLY Transistor On (<0.8 V): DC OK Transistor Off (>4.5 V): DC NOT OK Module Logic Connector 3300R 0 V +5 V Module Inhibit Pin 6 POWER SUPPLY 1K Ohm Module Logic Connector Module Inhibit Return Pin 7
0 V or Floating: Module On
2-5 mA: Module Off 2-5 mA +5 V Module Inhibit Module Inhibit signal is an isolated control signal which can turn the module off by supplying 2 to 5 mA into the pin. Pin 2 Pin 9 POWER SUPPLY Open Collector Transistor On : Fan Fail Transistor Off : Fan OK Chassis J2 Logic Connector 3300R When fan speed control fitted (option 16). Open collector signal warns of any fan failure.
xppower.com Module 1 Pin 2 Pin 4 Module 2 Pin 2 Pin 4 Module 4 Pin 2 Pin 4 Dual Output: Module Logic Connector Pinouts Pin Function
1 V1 Sense +
2 V1 Sense -
3 Not used
4 Not used
5 V2 Sense +
6 Inhibit
7 Module Inhibit Return
8 DC OK Collector
9 DC OK Emitter
10 V2 Sense -
0.691 (17.55) 0.480 (12.19)0.325 (8.26) ADJUST (V2) VOLTAGE ADJUST (V1) VOLTAGEOUTPUT TERMINAL BLOCK 6-32 HARDWARE 0.325 CTR TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) V22.30 (58.42) 2 1 Notes 1. All dimensions in inches (mm). 2. Weight: 0.48 lb (218 g) approx. 3. Mating plug: JST p/n PHDR-10VS. 4. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. Connecting pins 2 and 4 of like voltage modules (4 maximum) within the same chassis or separate chassis will force the current to share between the outputs. Different slot width modules can share. 0.312 (7.92) Fan Speed Control Module Connector Pinouts Pin Function
1 Fan Fail
2 Fan Fail
5 Not Used
6 Not Used
7 Not Used
8 Not Used
9 Ground
10 Ground
- All dimensions in inches (mm). 2. Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. Fan Speed Control Module
2 Slot Module
Controls speed of fan(s) depending on output load and thermal environment of the power supply. Also provides warning of any fan failure. Notes 1. All dimensions in inches (mm). T olerance: x.xx = ±0.02 (±0.50), 2. Weight: 2 / 2R Slot : 0.48 lb (218 g) approx, 3 Slot : 0.74 lb (335 g) approx. 4 Slot: 0.95 lb (431 g) approx. 3. Mating plug: JST p/n PHDR-10VS. 4. Contact: 26-22 AWG JST p/n SPHD-001T - P0.5. Single Output: Module Logic Connector Pinouts Pin Function Pin Function
1 Sense + 6 Inhibit
2 Sense - 7 Module Inhibit Return
3 V Prog 8 DC OK Collector
4 I Share 9 DC OK Emitter
5 Not used 10 Not used
0.60 (15.2) VOLTAGE ADJUST 0.45 (11.4) 0.425 (10.8) M4-0.7 THD OUTPUT HARDWARE TORQUE: 12-14 IN-LB (0.138-0.161 KG-M) 0.60 (15.2) 1.25 (31.78) 0.225 (5.7) 0.60 (15.2) 0.45 (11.4) 0.60 (15.2) M4-0.7 THD OUTPUT HARDWARE TORQUE: 12-14 IN-LB (0.138-0.161 KG-M) VOLTAGE ADJUST (3R Peak)
4 Slot Modules2 Slot Modules
(1R/2R Peak) ADJUST VOLTAGE 0.45 (11.4) M4-0.7 THD OUTPUT HARDWARE TORQUE: 12-14 IN-LB (11.05) 0.691 (17.55) 0.60 (15.2) 1.25 (31.78) 0.54 (13.7) 2 1 0.45 (11.4) M4-0.7 THD OUTPUT HARDWARE TORQUE: 12-14 IN-LB (0.138-0.161 KG-M) 0.425 (10.65) 0.60 (15.37)
xppower.com Use of DC OK Signal for Modules in Parallel or Series Use of Module Inhibit for Modules in Parallel or Series Parallel Connection Series Connection
xppower.com Mechanical Details Notes 1. All dimensions in inches (mm). 2. Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. 4. High line only (180-264 VAC). 400 (600) (4) Watt X4 & XM4 Chassis, 500 (700) (4) Watt X5 & XM5 Chassis, 700 (900) (4) Watt X7 & XM7 Chassis 10.00 (254.0) 8.20 (208.3)1.50 (38.1) 0.75 (19.1) 4X M4 X 0.7 THD 0.15 (3.8) MAX SCREW PENETRATION 2X M4 X 0.7 THD, 0.15 (3.8) MAX SCREW PENETRATION TYP ON BOTH SIDES OF THE POWER SUPPLY 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALS NL AC INPUT TERMINAL BLOCK M3.5 HARDWARE, 0.375 (9.52) CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) J2 INPUT LOGIC CONNECTOR 2.50 (63.5) 1.50 SHOWN WITH 2-SLOT-WIDTH MODULE FOR REFERENCE 5.00 (127.0)3.50 (88.9) AIRFLOW Weight: 2.75 lb (1250 g) approx. J2 Input Logic Connector Pinouts Pin Function
1 Global Inhibit Return
2 Global Inhibit
3 Global DC OK Emitter
4 Global DC OK Collector
5 Global AC OK Emitter
6 Global AC OK Collector
9 Not used
10 Not used
10.00 (254.0) 8.20 (208.3)1.50 (38.1) 4.50 (114.3) 0.75 (19.1) 4X M4 X 0.7 THD 0.15 (3.8) MAX SCREW PENETRATION L N AC INPUT TERMINAL BLOCK M3.5 HARDWARE, 0.375 (9.52) CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) J2 INPUT LOGIC CONNECTOR SHOWN WITH 2-SLOT-WIDTH MODULE FOR REFERENCE 6.00 (152.4) 2X M4 X 0.7 THD, 0.15 (3.8) MAX SCREW PENETRATION TYP ON BOTH SIDES OF THE POWER SUPPLY 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALS 2.50 (63.5) 8.20 (208.3)1.50 (38.1) AIRFLOW Weight: 3.3 lb (1500 g) approx. 900 (1100) (4) Watt X9 & XM9 Chassis
xppower.com Notes 2. Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. 4. High line only (180-264 VAC). Mechanical Details 1000 (1200) (4) Watt X10 & XM10 Chassis Weight: 4 lb (1800 g) approx. SHOWN WITH 2 SLOT AND 3 SLOT WIDTH MODULES FOR REFERENCE L 10 N 7.00 (177.8) 10.00 (254.0) 8.20 (208.3) 1.50 (38.1) 5.50 (139.7) 0.75 (19.1) VOLTAGE ADJUST, TYP LOGIC CONNECTOR, TYP4X M4 X 0.7 THD
0.15 MAX SCREW PENETRATION
2X M4 X 0.7 THD, 0.15 MAX SCREW PENETRATION TYP ON BOTH SIDES OF THE POWER SUPPLY 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALS AC INPUT TERMINAL BLOCK M3.5 HARDWARE, .375 CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) 5V STANDBY AND LOGIC CONNECTOR 2.50 (63.5) 8.20 (208.3) 1.50 (38.1) AIRFLOW J2 Input Logic Connector Pinouts Pin Function
9 Manufacturer Use Only
10 Manufacturer Use Only
xppower.com Mechanical Details Notes 1. All dimensions in inches (mm). 2. Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. 4. High line only (180-264 VAC) 1J2 NL 1J2 NL AC INPUT TERMINAL BLOCKS (PARALLEL CONNECTED) M3.5 HARDWARE, 0.375 (9.52) CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) 5V STANDBY AND LOGIC CONNECTORS EACH P/S IS SHOWN WITH 2-SLOT-WIDTH MODULE FOR REFERENCE 10.00 (254.0) 8.20 (208.3)1.50 (38.1) 3.50 (88.9) .75 (19.1) 4X M4 X 0.7 THD 0.15 (3.8) MAX SCREW PENETRATION 5.20 (132.1) 0.10 (2.5) TYP 0.228 (5.79) 0.228 (5.79) 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALS 2.50 (63.5) 5.00 (127.0) AIRFLOW J2 Input Logic Connector Pinouts Pin Function
9 Inhibit Sum
10 VCC Return
10.00 (254.0) 8.20 (208.3)1.50 (38.1) 4.50 (114.3) 0.75 (19.1) M4 X 0.7 THD 0.15 (3.8) MAX SCREW PENETRATION 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALS 5.00 (127.0) 8.20 (208.3)1.50 (38.1) 2.50 (63.5) 6.20 (157.5) 0.10 (2.5) TYP L N J21 L N J21 AC INPUT TERMINAL BLOCKS (PARALLEL CONNECTED) M3.5 HARDWARE, 0.375 (9.52) CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) 5V STANDBY AND LOGIC CONNECTORS EACH P/S IS SHOWN WITH 2-SLOT-WIDTH MODULE FOR REFERENCE AIRFLOW 0.228 (5.79) 0.228 (5.79) 800 (1200) (4) Watt X4DD & XM4DD Chassis, 1000 (1400) (4) Watt X5DD & XM5DD Chassis, 1400 (1800) (4) Watt X7DD & XM7DD Chassis Weight: 5.5 lb (2500 g) approx. Weight: 6.6 lb (3000 g) approx. 1800 (2200) (4) Watt X9DD & XM9DD Chassis
xppower.com XxxxxxxxxxMechanical Details 2000 (2400) (4) Watt X10DD & XM10DD Chassis Weight: 8.0 lb (3636 g) approx. L 10 1J2 N L 10 1J2 N 7.00 (177.8) 10.00 (254.0) 8.20 (208.3) 1.50 (38.1) 5.50 (139.7) .75 (19.1) 4X M4 X 0.7 THD 4X M4 X 0.7 THD, TYP ON BOTH SIDES OF THE POWER SUPPLY 1.25 (31.7) 0.30 (7.6) MAX BEFORE ADDING TERMINALSAC INPUT TERMINAL BLOCKS (PARALLEL CONNECTION) M3.5 HARDWARE, .375 CENTERS TORQUE: 9-10 IN-LB (0.104-0.115 KG-M) 5V STANDBY AND LOGIC CONNECTOR 2.50 (63.5) 5.00 (127.0) 1.50 (38.1) 8.20 (208.3) LOGIC CONNECTOR, TYP VOLTAGE ADJUST, TYP 0.228 (5.79) 0.228 (5.79) AIRFLOW J2 Input Logic Connector Pinouts Pin Function
- Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. 4. High line only (180-264 VAC).
xppower.com Notes 1. All dimensions in inches (mm). 2. Mating plug: JST p/n PHDR-10VS. 3. Contact: 26-22 AWG JST p/n SPHD-001T -P0.5. 4. High line only (180-264 VAC). 5. Weight: 8.0 lbs (3636 g) approx. 1500 (2500)(4) Watt X15 & XM15 Chassis 11.00 (279.4) Fan Control Card M4 x 0.7 THD Output Hardware, Typ Voltage Adjust, Typ Logic Connector, Typ P/S is shown with 2-slot-width modules and fan control card for reference 1.75 (44.5) 5.00 (127.0) 5.00 (127.0) 102 N L
5 V standby & logic connector
(see pin table) AC Input Terminal Block 6-32 Hardware, 0.375 centers 2 x 1.75 (44.5) 2 x 0.75 (19.1) 2 x 8.950 (227.33) 0.75 (19.1) 3.500 (88.9) 4 x M4 x 0.7 THD 0.15 (3.8) Max Screw Penetration Both sides of P/S 2 x 3.500 (88.9) 4 x M4 x 0.7 THD 0.15 (3.8) Max Screw Penetration 8.950 (227.33) AIRFLOW J2 Input Logic Connector Pinouts Pin Function
9 Inhibit Sum (Internal Use Only)
10 VCC Return (Internal Use Only)
Chassis Mechanical Details
xppower.com Hold Up Time X7 Hold Up Time X7 with 900 W load Hold Up Time X4 Hold Up Time X5 Hold Up Time X9 with 1100 W load Hold Up Time X9 Output Characteristics - Hold Up Time
xppower.com Hold Up Time X10 with 1200 W load Hold Up Time X10 Hold Up Time X15 with 2500 W load Hold Up Time X15 Output Characteristics - Hold Up Time - Continued Output Power Derating 85 90 100 180 230 264 0 % 100% 1000 W X15 only Output Power Input Voltage 90% 200W { 85 90 100 180 230 264 0 % 100% Output Power Input Voltage 90% 400W { Load derating curve for X4, X5, X7, X9, X10, X15 Load derating curve for X4DD, X5DD, X7DD, X9DD and X10DD
xppower.com 0.7 0.75 0.8 0.85 0.9 0.95 25% 50% 75% 100% Load Percentage Efficiency Load Percentage Efficiency 0.7 0.75 0.8 0.85 0.9 0.95 25% 50% 75% 100% X10 Models F7 25% 50% 75% 100% 85 V 0.739 0.784 0.781 0.766 115 V 0.750 0.803 0.809 0.804 150 V 0.756 0.811 0.824 0.822 200 V 0.760 0.817 0.832 0.833 250 V 0.763 0.819 0.835 0.837 F9 25% 50% 75% 100% 85 V 0.760 0.775 0.765 0.749 115 V 0.771 0.798 0.797 0.789 150 V 0.778 0.808 0.812 0.810 200 V 0.782 0.814 0.821 0.820 250 V 0.785 0.817 0.826 0.825 X10DD Models 0.60 0.65 0.70 0.75 0.80 0.85 0.90 25% 50% 75% 100% Load Percentage Efficiency F9 25% 50% 75% 100% 85 V 0.680 0.760 0.780 0.785 90 V 0.680 0.760 0.778 0.782 115 V 0.710 0.765 0.810 0.825 230 V 0.715 0.820 0.840 0.860 246 V 0.715 0.825 0.845 0.870 X15 Models Efficiency Load Percentage Efficiency 0.86 0.84 0.82 0.80 0.78 0.76 0.74 25% 50% 75% 100% Load Percentage Efficiency 0.86 0.84 0.82 0.80 0.78 0.76 0.74 0.72 0.70 25% 50% 75% 100% X7 Models F7 25% 50% 75% 100% 85 V 0.796 0.806 0.791 0.755 115 V 0.808 0.826 0.821 0.806 150 V 0.813 0.836 0.834 0.825 200 V 0.819 0.843 0.843 0.834 250 V 0.822 0.847 0.849 0.840 F9 25% 50% 75% 100% 85 V 0.763 0.779 0.761 0.733 115 V 0.790 0.804 0.799 0.784 150 V 0.797 0.819 0.816 0.807 200 V 0.800 0.829 0.828 0.820 250 V 0.804 0.834 0.834 0.827 X9 Models
xppower.com Output Characteristics - Transient Response
5 V/40 A Module, 50 to 100% load Change
5 V/60 A Module, 50 to 100% load Change
48 V/5.2 A Module, 50 to 100% load Change 48 V/8.5 A Module, 50 to 100% load Change
xppower.com Output Characteristics - Ripple & Noise
5 V Output Ripple and Noise at 30 MHz
5 V Output Ripple and Noise at 150 MHz
48 V Output Ripple and Noise at 30 MHz 48 V Output Ripple and Noise at 150 MHz
xppower.com Harmonics Harmonics 1: X7 50 Hz 115 V Harmonics 2: X7 50 Hz 230 V Harmonics 3: X7 400 Hz 115 V Harmonics 4: X7 400 Hz 230 V
xppower.com Harmonics Harmonics 5: X7 DD 50 Hz 115 V Harmonics 6: X7 DD 50 Hz 230 V Harmonics 7: X7 DD 400 Hz 115 V Harmonics 8: X7 DD 400 Hz 230 V
xppower.com Harmonics Harmonics 9: X9 50 Hz 115 V Harmonics 10: X9 50 Hz 230 V Harmonics 11: X9 400 Hz 115 V Harmonics 12: X9 400 Hz 230 V
xppower.com Harmonics Harmonics 13: X9 DD 50 Hz 115 V Harmonics 14: X9 DD 50 Hz 230 V Harmonics 15: X9 DD 400 Hz 11 5 V Harmonics 16: X9 DD 400 Hz 230 V
xppower.com XxxxxxxxxxHarmonics Harmonics 17: X10 50 Hz 115 V Harmonics 18: X10 50 Hz 230 V Harmonics 19: X10 400 Hz 11 5 V Harmonics 20: X10 400 Hz 230 V
xppower.com XxxxxxxxxxHarmonics Harmonics 21: X10 DD 50 Hz 115 V Harmonics 22: X10 DD 50 Hz 230 V Harmonics 23: X10 DD 400 Hz 11 5 V Harmonics 24: X10 DD 400 Hz 230 V
xppower.com XxxxxxxxxxHarmonics Harmonics 25: X15 120 V 50 Hz Harmonics 26: X15 230 V 50 Hz MHarmonics 27: X15 120 V 60 Hz Harmonics 28: XM15 230 V 50 Hz 16-July-15