LPM126-OUTA1-05 [BEL]
Standard output voltages of 1.5 to 54 VDC;型号: | LPM126-OUTA1-05 |
厂家: | BEL FUSE INC. |
描述: | Standard output voltages of 1.5 to 54 VDC |
文件: | 总16页 (文件大小:2769K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
The LPM/LMM409 Series is a modular 900-watt AC-
DC power supply that provides a market-leading
power density of 14 watts per cubic inch and has an
extra low 1U profile. The LMM is the medically
approved version. From here on only the LPM
version will be discussed, differences for the LMM
version will be noted. The LPM409 offers the
flexibility of
a
modular architecture and the
combination of high efficiency and high power
density.
Standard output voltages of 1.5 to 54 VDC
Efficiencies up to 87% typical
Extra-Low 1U profile: 1.6 inch
High power density design of 14 Watts/cubic inch
1 to 4 isolated output slots, fully user configurable
Power Factor Correction (PFC) IEC 61000-3-2 compliant
700W @ 85 VAC or 900W @ 150VAC of total output power
Zero-load operation
Single-wire current sharing
Universal input AC range
Individual control signals on each module
Auxiliary power 5V (1A)
Designed for use where a unique set of voltage and
current requirements is needed, the supply's four
slots can be configured with PCB-based output
modules to deliver up to eight outputs. The LPM
output modules operate in any chassis position and
can provide up to 900 watts total power from a 150
VAC input and 700 watts from an 85 VAC input.
Forced-air cooling with airflow direction from input to
output is provided by an internal fan.
For LPM409 supplies using less than the four-slot
capability, blanking plates are installed for safety
purposes and to optimize airflow within the chassis.
The supplies are pre-set with default output module
settings or with the customer’s desired output
settings prior to delivery.
LPM409 (Industrial)
LMM409 (Medical)
Industrial equipment
Telecommunications
Test and measurement
Automation
Peripherals
Audio/broadcast
Linear and rotary motion
Imaging Equipment
Anesthesiology
Surgical Devices
Diagnostic Equipment
Patient Beds
The LPM409 chassis can be populated with the
output modules listed in Module Selection table.
Conformal coating is available on request, please
consult with the factory.
Home Healthcare
Ultrasound
North America
+1-866.513.2839
Asia-Pacific
+86.755.29885888
Europe, Middle East
+353 61 225 977
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BCD.00365_AB3
LPM/LMM409
FACTORY-SET
SINGLE-
OUTPUT (VDC)
MODULE
ADJUSTABLE
RANGE (VDC)
MAX. OUTPUT
CURRENT
(AMPS)
MAX. OUTPUT
POWER 2
NO. OF SLOTS
REQUIRED
MODULE
P/N 3
(WATTS)
E
F
LPM126-OUTA1-05
LPM126-OUTA1-12
LPM126-OUTA1-24
LPM126-OUTA1-36
LPM126-OUTA1-48
LPM109-OUTA1-10
LPM109-OUTA1-20
LPM118-OUTA2-10
LPM118-OUTA2-20
LPM100-BLAN
1
1
1
1
1
1
1
1
1
1
5
2.0 to 5.3
5.2 to 15
14 to 30
53
22
265
265
265
265
265
90
12
24
36
48
15
30
15
30
G
H
J
11
29 to 44
7.4
5,5
6
43 to 54
K
L
1.5 to 15
3 to 32
3
90
M
N
0
2x 1.5 to 15
2x 3 to 32
2x 6
2x 3
2x 90
2x 90
Blank Panel (Slot Cover)
1
To determine your desired power supply's part number, please refer to Figure 2 for a detailed part number description.
Use the LPM Configurator located in the Modular Section on our website, or use our contacts page to locate a
distributor for further assistance.
For the power derating specification please see section 1.4 below.
Add –C for Conformal coating option.
2
3
1.1. Output Voltage Adjustment
Each LPM409 module’s output voltage is adjustable by means of a trimmer located on the module. For the modules
E<->J the trimmer is accessible through the adjustment hole located on the bottom of the power supply (Figure 10).
For the modules K<->N the trimmer is accessible from rear side of the power supply (Figure 5).
1.2. Parallel Connections
Depending on certain situations where current requirements exceed one module’s capability, the configurator will
process a solution using parallel connections. Paralleling busbars are available to make connections requiring higher
current needs. For correct current sharing functionality it is necessary to interconnect Current Share pins of the
modules that will operate in parallel using signal wires. Only E-J modules can be connected in parallel. For more
details read section 10.3, see Figure 15.
1.3. Serial Connections
To increase output voltage it is possible to connect modules in series. Serial busbars are available (see section 10.4)
to make connections requiring higher voltage needs. The output of LPM409 is rated as SELV circuit, so the output
voltages are guaranteed to be less than 60V. The series combination of modules can exceed this SELV voltage, so in
this case the users must take adequate precautions to prevent direct contact with conductive parts. The maximal
total voltage must not exceed 200V. It is recommended to only connect the same modules with the same current
rating in series. The voltage sense pins VS+, VS- available on LPM126 modules must be connected according to
Figure17.
1.4. Power Derating
When specifying an LPM409 power supply in an application it is necessary to ensure that LPM409-CHAS and
modules (LPM126, LPM118 and LPM109) are operating within their power output capabilities, taking into account
the temperature derating and input voltage derating. The maximum permissible output power that may be drawn
from LPM409-CHAS and modules assembled in this chassis is given in Figure1.
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BCD.00365_AB3
LPM/LMM409
Figure 1 - Power Derating Curves
a.) LPM409-CHAS
b.) Modules LPM126-5V
c.) Modules LPM126-12/24/36/48V
d.) Modules LPM118 / LPM109
2.1. Chassis Identification Numbering
First left-to-right sequence of the part number (4 characters):
LPM409 Low Profile Modular 4-slot, 900W, with single-phase AC input. (Figure 2)
NOTE: Chassis and modules are RoHS-6 compliant.
Figure 2 - LPM 4-Slot Model Part Number Description
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BCD.00365_AB3
LPM/LMM409
Example: After entering your requirements, the web Configurator could recommend the following optimized part
number: LPM409-0HEG-DXXX which represents: Low Profile Modular Series with single-phase AC input, 4-slot, 900W
chassis with modules of: blank panel “0” in slot 1 and modules H, E, G in slots 2 to 4, respectively. Besides the blanking
panel in slots 1, the example's modules in this case would represent desired DC output voltages as follows: Slot 2 = H
for 36V, Slot 3 = E for 3.3V and Slot 4 = G for 24V.
Assembly facility code and customer build ID No. are established during actual power supply assembly.
The slots numbering when viewing the unit from the rear, or output side is 1 - 6 from left to right.
3.1. Safety Approvals
LPM409 (Industrial)
LMM409 (Medical)
UL/CSA 60950-1 2nd
UL/CSA 60601-1, 3rd
IEC 60601-1, 3rd
EN 60601-1, 3rd
IEC 60950-1 2nd
EN 60950-1 2nd
CE Mark for LVD
3.2. Insulation Safety Ratings
TEST POINTS
MINIMUM TEST VOLTAGE
2120 Vdc / min. 1s
4240 Vdc / min. 1s
200 Vdc / min. 1s
INSULATION SAFETY RATING
Basic Insulation
Input-to-Chassis
Input-to-Output
Reinforced Insulation
Functional Insulation
Functional Insulation
Outputs-to-Chassis
Output-to-Output
200 Vdc / min. 1s
4.1. Environmental Specification
PARAMETER
CONDITIONS / DESCRIPTION
MIN
NOM
MAX
UNITS
Internal DC fan, air intake is from the AC connector side
exiting at the DC module side
Cooling
Single unit, 4 modules assembled and full loaded, on a table
at 1m distance.
65
dBA
Audible Noise
50°C at Full power and up to 70°C at 50% load (linearly
derated, for details see section 1.4)
Operating Temperature
-20
-40
25
50
75
ºC
ºC
Storage Temperature
Humidity
95% relative humidity @ 25 ºC, non-condensing
Operating: Swept 5-500-5Hz profile, 3 axis, 5 sweep cycles
per axis
Non-operating: Swept 5-500-5Hz profile, 3 axis, 5 sweep
cycles per axis
Operating: 11ms, half sine, 10 shocks per face
Non-operating: 11ms, half sine, 3 shocks per face
1
4
Gpk
Gpk
Vibration
Shock
20
40
Gpk
Gpk
4.2. Reliability
PARAMETER
CONDITIONS / DESCRIPTION
MIN
NOM
MAX
UNITS
hours
hours
According to MIL-HDBK217, Ground benign 30ºC,
NOTE: Calculation was done for LPM409-EFGH.
Calculated MTBF
250,000
250,000
Demonstrated MTBF
Tamb = 25°C
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LPM/LMM409
PARAMETER
CONDITIONS / DESCRIPTION
MIN
NOM
MAX
UNITS
One fuse, non-user serviceable, located on line leg of AC
input, Fast Acting type
Input Fuse
12.5
A
Inrush Current Limitation
Short Circuit Protection
Provided by NTC
See Input Specification section
%
Provided by Current Limit circuit
105 1
125 1
Io_nom
Output Overvoltage
Protection
%
Vo_nom
Latching (unit needs to be turned-off and on)
OT with auto restart
10
25
70
Over Temperature
°C amb
1
100-150% for K, M modules
100-200% for L, N modules
6.1. EMC Immunity
PARAMETER
CONDITIONS / DESCRIPTION
CRITERION
Electrostatic Discharge
(ESD)
IEC/EN61000-4-2; GR-1089 R2-1, R2-2, R2-3
Level 4: contact: ±8 kV, air: ± 15kV
IEC/EN 61000-4-3;
Perform, criterion B
RF Susceptibility
Level 3: 10 V/m; 80 MHz to 1000 MHz;
AM 80%, 1 kHz radiated; RF electromagnetic field
IEC/EN 61000-4-4; Level 3; ±2 kV, 5kHz
electrical fast transient / burst immunity test
IEC61000-4-5, level 3; line to earth: ± 2kV, line to line: ± 1kV surge
immunity test
Perform, criterion A
Fast transient / burst
Surge
Perform, criterion B
Perform, criterion B
Perform, criterion A
IEC/EN 61000-4-6; Level 3; GR-108;
10V, 0.15 to 80MHz, AM 80%, 1kHz
RF Conducted Disturbance
IEC/EN 61000-4-11; Voltage dips, interruptions and variations.
(Interpretation: dip below Vi min with Po nom = hold-up time 10 ms)
1a: Dip 30%, 100ms
Perform, criterion B
Perform, criterion B
Perform, criterion A
Perform, criterion B
Perform, criterion A
Perform, criterion B
1a: Dip 30%, 200ms
Voltage Dips / Short
Interruptions
1a: Dip 60%, 10ms
1a: Dip 60%, 100ms
1a: Dip >95%, 10ms (interruption)
1a: Dip >95%, 100ms (interruption)
6.2. EMC Emission
PARAMETER
CONDITIONS / DESCRIPTION
CRITERION
EN 55022, FCC – EN 55022, and CISPR 22 Class B,
FCC 47CFR15 unintentional radiators; standalone at all nominal
input voltages and measured in Po1: 0, 50%, 100%;
signal connections open
Conducted Emission
EN55022, FCC
Class B;
min. 3dB/µV margin
EN 55022, FCC – EN 55022, and CISPR 22 Class B,
FCC 47CFR15 unintentional radiators; standalone at all nominal
input voltages and measured in Po1: 0, 50%, 100%;
signal connections open
Radiated Emission
EN55022, FCC
Radiated Class B QSP / AVG
min. 3 dB margin
EN 61000-3-2, sine wave input, Class D; measured standalone at all
Vin nominal at power levels between 0 and rated
Input Current Harmonics
Pass
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7.1. Input Specification
PARAMETER
CONDITIONS / DESCRIPTION
MIN
NOM
MAX
UNITS
Continuous AC voltage Range
Po=700W from 85-150 VAC
Po=900W from 150-264 VAC
Input AC Voltage Range
85
115/230
264
VAC
Input Overvoltage Range
Ground continuity
Leakage Current
Frequency
At max. power, no input OVP shutdown
300
0.1 1
VAC
Ohm
mA
@ 264 VAC, 60Hz, Commercial LPM / Medical LMM
AC line
1.5 / 0.5
63
47
50/60
Hz
Active PFC meets requirements of
EN 61000-3-2 at full load ,120/230 VAC input
Power Factor
Input Current
0.98
Steady state, 85 VAC at 700W
11
Arms
A pk
180 VAC, Max Power, 25°C,
acc. prETS300-132-1
230 VAC, Max Power, 25°C,
Inrush Current
40
acc. prETS300-132-1 (Repeat rate >1min)
Vi = 230 VAC 100% loading
Vi = 230 VAC 30-80% loading
Vi = 115 VAC 100% loading
Vi = 115 VAC 30-80% loading
86
80
83
78
87
82
84
80
%
%
%
%
Efficiency 2
1
For any combination of output modules, any valid load and voltage setting
Efficiency typical for standard configuration EFGH and nominal output voltage settings
2
7.2. Output Specification
PARAMETER
CONDITIONS/DESCRIPTION
MIN
NOM
MAX
UNITS
Output Power
One fan for internal cooling
900
W
Output DC
Voltages / Modules
All output modules work in any chassis position and are
max 1U high PCB-based
-
Active single-wire current share (modules E-J)
Max. difference in currents between two modules–
percentage of one module nominal current
Current Share 3
±10
%
Line Regulation
Load Regulation
Thermal Drift
Input from 85 to 264 VAC , 80% load
From 0-100% load, Input >180VAC, Vo_nom
After 15 minute warm-up period
1.0
1.0
% Vo_nom
% Vo_nom
%/ºC
0.02
2.0
Total Regulation
Output Adjust. Range
Variation of line, load and temperature drift
% Vo_nom
See Module Selection Table 1
Deviation for 10-90% or 90-10% load changes at a rate
of 1A/µs, (constant current mode, Vo reach 1% band
around Voset)
Deviation for 50-100% or 100-50% load steps with
1A/µs rate. (constant current mode, Vo reach 1% band
around Voset)
4% 1,2
2000µs
-
-
Dynamic Response
3% 1
400µs
BW = 20MHz; Filter 10nF/10uF; over line and load,
25°C
Output to chassis, over line and load
(Measured across 50 Ohms, with 10µH / 10nF in
parallel)
1% of
Output Ripple & Noise
CM Noise
mVpk-pk
mVpp
Vo_nom 1
220
4
500
Overshoot
Output voltage overshoot at turn-on
% Vo_nom
Turn-On Characteristics
Turn-Off Characteristics
Turn ON at minimum and nominal output current
Turn OFF at minimum and nominal output current
Monotonic characteristic
Monotonic characteristic
-
-
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LPM/LMM409
Time required for output within regulation after initial
application of AC input
Time required for output within regulation after
1.5
s
Turn-On Time
100
ms
removing inhibit
Vo is required to stay within 95% regulation after AC is
removed. Measured from the last AC peak, VAC min
and full load.
Hold-up Time
10
ms
mV
%
Remote Sense 3
Total compensation for cable losses
250
500
130 (180
for K-N)
Over-current Protection
Automatic recovery (Hiccup by K-N modules)
1
the E module dynamic deviation is less than 6%, the E, K, M module ripple is less than 2%
the K and M module dynamic deviation is less than 7% and response time is below 1000us
except K-N modules
2
3
7.3. Input - Signals, Features and Indicators Description
SIGNAL NAME
PIN
DESCRIPTION
Output is available when the AC input is over 85VAC. The output nominal output voltage is
5.0V at maximum current rating of 1.0A. Over current protection occurs above 1.5A. The
output is referenced to logic return, RTN_D.
Auxiliary Output
- 5V -
1,2 vs 3,4
(RTN_D)
Open Collector output with 20mA pull-down capability referenced to logic return RTN_D.
PFAIL open or High state indicates the warning that the input is out of limits (the input
voltage falls below 85Vac or rises over 264Vac ) 5 ms before the output goes below the
lower regulation limit. PFAIL will turn-off the green Input OK LED.
PFAIL LOW state indicates that the input voltage is within the operating range.
Open Collector output pin with 20mA pull-down capability referenced to logic return
RTN_D.
FAN_FAIL OPEN OR HIGH state indicates a fan failure/over temperature protection (OTP)
condition min. 100 ms before the unit shuts-down. A fan failure/OTP condition will turn-off
the green FAN OK LED.
Input AC Indication
- PFAIL -
5
6
Fan Fail / OTP Indication
- FAN_FAIL -
FAN_FAIL LOW state indicates normal fan operation and no OTP condition.
7.4. Output - Signals, Features and Indicators Description
7.4.1.Modules E, F, G, H, J
SIGNAL NAME
PIN
DESCRIPTION
Output voltage sense wire. Internally connected to Vout+ via 51 Ω. It is recommended to
connect sense wire at positive load point.
Positive Sense Wire
- VS+ -
1
Output voltage sense wire. Internally connected to Vout- via 51 Ω. It is recommended to
connect sense wire at negative load point.
Negative Sense Wire
- VS- -
2
Common wire for parallel connected modules to achieve proper current sharing between
the modules. Referenced to the Common pin. Interconnect CS pin on all parallel working
modules. Active current share pin enables control of output voltage. Pulling-up this pin to
5V is possible to increase the output voltage. Pull-down of this pin has no effect. Voltage on
this pin is 3.5V at nominal module current.
Current Share
- CSH -
3
Common
N/C
4
5
6
Reference pin to CSH
N/C
Open collector output with 20mA pull-down capability, max. 15V
(recommended Rpull-up = 1k, Vcc = 5V). Referenced to PG_LO.
Output Good Indication
- PG_HI -
7
PG_HI OPEN OR HIGH state indicates that the module output voltage is below lower
regulation limit. A PG_HI fail state turns the GREEN DC OK LED to RED.
PG_HI LOW state indicates the module output voltage is within normal operation limits.
- PG_LO -
8
9
Reference pin to PG_HI
An opto-isolated input with 2-10mA current capability. Apply +(3-15)V on INH_HI and RTN
on INH_LO (e.g. from the Auxiliary Output 5V) to activate the inhibit function.
INH_HI OPEN OR LOW state ENABLES the module output.
Output Inhibit Function
- INH_HI -
INH_HI HIGH state INHIBITES the module output.
- INH_LO -
10
Reference pin to INH_HI
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7.4.2.Modules K, L, M, N
SIGNAL NAME
PIN
DESCRIPTION
- INH_LO_B -
1
Reference pin to INH_HI_B
An opto-isolated input with 2-10mA current capability. Apply +(3-15)V on INH_HI_B and
RTN on INH_LO_B (e.g. from the Auxiliary Output 5V) to activate the inhibit function.
INH_HI OPEN OR LOW state ENABLES the module output.
Output Inhibit Function
- INH_HI_B -
2
3
INH_HI HIGH state INHIBIT the module output.
- PG_LO_B -
Reference pin to PG_HI_B
Open collector output with 20mA pull-down capability, max. 15V (recommended Rpull-
up=1k, Vcc=5V). Referenced to PG_LO_B.
PG_HI open or High state indicates that the module output voltage is below lower regulation
limit. A PG_HI fail state turns the GREEN DC OK LED to RED.
Output Good Indication
- PG_HI_B -
4
PG_HI LOW state indicates that the module output voltage is within normal operation limits.
N/C
5
6
7
N/C
- INH_LO_A -
Reference pin to INH_HI_A
An opto-isolated input with 2-10mA current capability. Apply +(3-15)V on INH_HI_A and
RTN on INH_LO_A (e.g. from the Auxiliary Output 5V) to activate the inhibit function.
INH_HI OPEN OR LOW state ENABLES the module output.
Output Inhibit Function
- INH_HI_A -
8
9
INH_HI HIGH state INHIBIT the module output.
- PG_LO_A -
Reference pin to PG_HI_A
Open collector output with 20mA pull-down capability, max. 15V (recommended Rpull-
up=1k, Vcc=5V). Referenced to PG_LO_A.
PG_HI open or High state indicates that the module output voltage is below lower regulation
Output Good Indication
- PG_HI_A -
10
limit. A PG_HI fail state turns the GREEN DC OK LED to RED.
PG_HI LOW state indicates that the module output voltage is within normal operation limits.
7.5. Visual Alarms Description
ALARM NAME
LED POSITION
DESCRIPTION
ON state LED indicates operation within specified input voltage range.
GREEN LED indicator goes to an OFF condition on PFAIL signal failure
state.
Front panel – LED2
(see Fig.7)
Input AC Good
ON state LED indicates normal fan operation and no OTP status.
GREEN LED indicator goes to an OFF condition on FAN_FAIL / OTP signal
failure state.
Front panel – LED1
(see Fig.7)
Fan Good
GREEN LED indicates that module output voltage is over minimum
regulation limit.
GREEN LED indicator goes to RED on PG_HI signal failure state.
Module connector / rear side
(see Fig.5 and Fig.6)
Output Good
8.1. Input Connector Information
LPM409 front panel connectors pinout refers to Fig.4 and chapter 8.2 and 8.3. The signal connector is Cvilux part
number: CI3306P1H10, the mating part is Cvilux CI3306S0010, Molex 50-57-9406 or Taiwan King Pin P553L-06(LF).
NOTE: See chapter 10.1 Mating Connections and cables for Input cable information.
Figure 3 – LPM409 Front Panel Connectors Pinout View
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8.2. Input Power Connector - Pinout
V MAX
I MAX
SIGNAL NAME
PIN # TYPE
Earth / Chassis
RECOMMENDED WIRES
Earth
Min. 0,75 mm2
AC Neutral
AC Line
N
L
Input Power AC
e.g. Interpower 86230120
Max. torque on screws (M4x6): 1,5 Nm
264 Vrms
10 Arms
Input Power AC Fused
CAUTION:
The plastic cover must be in place when AC input voltage is applied to the unit! The cover may be removed (with the
help of a screwdriver) only when the input cable is disconnected from the mains.
8.3. Input Signal Connector – Pinout
(Mating connector: Molex 50-57-9406, Pins: Molex 16-02-0082)
SIGNAL
NAME
SIGNAL
REFERENCE
LOW LEVEL
HIGH LEVEL
V MAX
I MAX
PIN #
WIRE COLOR
TYPE
+5V
1
2
3
4
Red
Red
Aux Output
Aux Output
RTN_D
-
-
-
-
5.0Vdc
1.0Adc
+5V
RTN_D
RTN_D
RTN_D
Black
Black
Logic Reference Potential
Logic Reference Potential
-
-
-
-
<400mV@ 20mA
Pull up
<400mV@ 20mA
-
PFAIL
5
6
Yellow
Green
Open Collector Output + ZD 5.6V
Open Collector Output + ZD 5.6V
RTN_D
RTN_D
20mA
-
20mA
FAN_FAIL
Pull up
8.4. Module Power Outputs Pinout
8.4.1.Modules E, F, G, H, J - A, B Bus-Bar
SIGNAL
REFERENCE
LOW LEVEL
HIGH LEVEL
V MAX
I MAX
See Module
Selection Table 1
See Module
SIGNAL NAME
PIN #
Vout+
Vout-
TYPE
Vout+
Output Power DC
Output Power DC
Vout-
-
Vout-
-
-
Selection Table 1
Connector type: Bus-bar see Figure 4
Mating part:
Ring terminal for M4 screw, with appropriate cross section for wire.
8.4.2.Modules K, L, M, N
SIGNAL
REFERENCE
LOW LEVEL
HIGH LEVEL
V MAX
I MAX
See Module
Selection Table 1
See Module
Selection Table 1
See Module
Selection Table 1
See Module
Selection Table 1
SIGNAL NAME
PIN #
Vout1+
Vout1-
Vout2+
Vout2-
TYPE
Vout1+
Output 1 Power DC
Output 1 Power DC
Output 2 Power DC
Output 2 Power DC
Vout1-
-
-
-
-
Vout1-
-
Vout2-
-
Vou2+ 1
Vout2- 1
1
valid only for two outputs modules M and N.
Connector type: Phoenix Contact 1803277
Mating part:
Phoenix Contact 1850660
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Figure 4 - Modules E,F,G,H,J Power Output Connectors
Figure 5 - Modules K,L,M,N Power Output Connectors
Vo1 adjustment
Vo2 adjustment
8.5. Module Signal Output Connector Pinout
The output signal connector provides signal information across its 10-pin output, for position of the output signal
connector please see Figure 4 and Figure 5.
Connector type: JST S10B-PHDSS-B
Mating part:
JST housing PHDR-10VS, pins SPHD-002T-P0.5 (AWG 28-24)
or SPHD-001T-P0.5 (AWG 26-22)
Modules E, F, G, H, J
LOW LEVEL
HIGH LEVEL
V MAX
I MAX
0.5V
10mA
0.5V
10mA
5V
SIGNAL NAME
PIN #
TYPE
SIGNAL REFERENCE
Vout+
Output voltage sense wire. Internally
connected to Vout+ via 51 Ω
Output voltage sense wire. Internally
connected to Vout- via 51 Ω
VS+
VS-
1
2
3
-
-
-
Vout-
CSH
Active Current Share pin
Common
-
Common
N/C
4
5
6
Reference pin to CSH
-
-
-
-
-
-
-
-
-
-
-
N/C
<400mV@5mA
Pull up
15V
20mA
-
20mA
15V
10mA
-
PG_HI
PG_LO
INH_HI
INH_LO
7
8
Open collector output
Reference for PG_HI
PG_LO
-
-
LED with a serial
resistor 2 kOhms
9
Input, protected by 18V Zener diode
Reference for INH_HI
INH_LO
-
10
-
10mA
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BCD.00365_AB3
LPM/LMM409
8.5.1.Modules K, L, M, N
SIGNAL
REFERENCE
LOW LEVEL
HIGH LEVEL
V MAX
I MAX
-
10mA
15V
10mA
-
20mA
15V
20mA
SIGNAL NAME
INH_LO_B
INH_HI_B
PIN #
TYPE
1
2
3
4
Reference for INH_HI_B
Input, protected by 18V Zener diode
Reference for PG_HI_B
Open collector output
-
-
LED with a serial
resistor 2 kOhms
INH_LO_B
-
PG_LO_B
-
<400mV@5mA
Pull up
PG_HI_B
PG_LO_B
N/C
N/C
5
6
-
-
-
-
-
-
-
-
-
INH_LO_A
INH_HI_A
PG_LO_A
PG_HI_A
7
8
Reference for INH_HI_A
Input, protected by 18V Zener diode
Reference for PG_HI_A
-
-
10mA
15V
10mA
-
20mA
LED with a serial
resistor 2 kOhms
INH_LO_A
-
9
-
<400mV@5mA
Pull up
15V
20mA
10
Open collector output
PG_LO_A
Overall Dimensions: 11.9" x 3.6" x 1.6" (303.7 x 92 x 40.64mm)
Weight: 1.38 kg (including 4 modules)
All drawing dimensions are shown in millimeters, unless otherwise noted.
Figure 6 - Front View
Figure 7 - Rear View
Figure 8 - Side View
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BCD.00365_AB3
LPM/LMM409
Figure 9 - Top View
Figure 10 - Bottom View
10.1.
Mating Connections and Cables
All the power and signal cables and mating connectors are not included in the LPM616 standard package. These all
need to be ordered extra.
Front panel signal cable:
Output signal cable:
Bel Power Solutions accessory LPM000-LEAD-03
Bel Power Solutions accessory LPM000-LEAD-04
JST, housing PHDR-10VS, pins SPHD-002T-P0.5 (AWG 28-24)
see Figure 11
see Figure 12a
Mating connector:
Output power cable (for LPM126):
14AWG – 10AWG depend on the output current, min. thermal class
105°C, lug terminal 4mm 6mm2
Output power cable (for LPM109/118): Bel Power Solutions accessory LPM000-LEAD-05,
see Figure 12b
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BCD.00365_AB3
LPM/LMM409
Figure 11 - LPM000-LEAD-03:
Front panel signal cable
(length of the cable 1.8m)
Figure 12a - LPM000-LEAD-04:
Output signal cable
(length of the cable 0.75m)
Figure 12b - LPM000-LEAD-05:
Output power cable for modules K-N (length
of the cable 0.75m)
10.2.
Signal Output Wire Colors
SIGNAL NAME BY
MODULES E, F, G, H, J
SIGNAL NAME BY
MODULES K, L, M, N
PIN #
WIRE COLOR
1
2
VS+
PG_HI_A
PG_LO_A
INH_HI_A
INH_LO_A
N/C
Red
Blue
Yellow
White
-
VS-
3
CSH
4
Common
N/C
5
6
N/C
N/C
-
7
PG_HI
PG_LO
INH_HI
INH_LO
PG_HI_B
PG_LO_B
INH_HI_B
INH_LO_B
Violet
Brown
Black
Green
8
9
10
10.3.
Paralleling Busbars (only for modules E-J)
ITEM
DESCRIPTION
MODEL
Busbar for parallel connection of two modules, central screw M5, max. 100A 1.
Two pieces are in one package LPM000-BBAR-07.
LPM000-BBAR-07
LPM000-BBAR-08
Busbar washer with 1 opening for odd module paralleling.
Two pieces are in one package LPM000-BBAR-08.
NOTES:
1 For load current over 100A use two or more cables connected to separate busbars.
2 By using busbars (paralleling modules) you will need also the signal output leads LPM000-LEAD-04, one for each connected module.
The interconnection is shown in Figure 15 (especially all pins 3 - CSH and all pins 4 - Common must be reconnected).
3 Modules K-N cannot be connected in parallel.
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BCD.00365_AB3
LPM/LMM409
The example of LPM409-00EE-DXXX assembly configuration (two modules in parallel) is shown in Figure13. One set of
busbars LPM000-BBAR-07 + 2x LPM-LEAD-04 is necessary for connection.
Figure 13 – LPM409-0000EE-DXXX Parallel Configuration
Figure 14 – LPM409-000EEE-DXXX Parallel Configuration
An example of an LPM409-0EEE-DXXX assembly configuration (three modules in parallel) is in Figure14. Two sets of
busbars LPM000-BBAR-07 + one set of LPM000-BBAR-08 + 3x LPM-LEAD-04 are necessary to make the
interconnections.
Note, for odd number of modules in parallel it is necessary to also use one set of busbar washers LPM000-BBAR-08.
To connect the load for higher output currents use more cables for each pole. For example for 200A output current
(LPM409-EEEE-DXXX) connect minimal two power cables for each pole (2x 42mm2 for one pole). Use min. 105°C
thermal class isolation.
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BCD.00365_AB3
LPM/LMM409
Figure 15 – LPM409 - Paralleling Connection Diagram for LPM126 Modules
10.4.
Serial Busbars (only for modules E-J)
ITEM
DESCRIPTION
MODEL
LPM000-BBAR-09
Busbar for serial connection of two modules.
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BCD.00365_AB3
LPM/LMM409
Figure 17 – LPM409 – Serial Connection Diagram for LPM126 Modules
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BCD.00365_AB3
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