GE Industrial Solutions JRCW016A0R User Manual

GE
Data Sheet
JRCW016A0R Orca* Series; DC-DC Converter Power Modules
36–75 Vdc Input; 28Vdc Output; 16Adc Output
RoHS Compliant
Applications
RF Power Amplifier Wireless Networks Switching Networks
Options
Output OCP/OVP auto restart Shorter pins Unthreaded heatsink holes Tunable Loop* for transient response optimization
Features
Compliant to RoHS II EU Directive 2011/65/EC (-Z versions) Compliant to REACH Directive (EC) No 1907/2006
3
High power density: 166 W/in Very high efficiency: >93.5% Typ at Full Load Industry standard half-brick pin-out Low output ripple and noise Industry standard, DOSA compliant half-brick footprint
57.7mm x 60.7mm x 12.7mm (2.27” x 2.39” x 0.5”)
Remote Sense 2:1 input voltage range Single tightly regulated output Constant switching frequency Constant Current Overcurrent limit Latch after short circuit fault shutdown Over temperature protection auto restart Output voltage adjustment trim, 16.0V Wide operating case temperature range (-40°C to 100°C) CE mark meets 2006/95/EC directives
#
ANSI/UL
60950-1, 2nd Ed. Recognized, CSA† C22.2 No. 60950-
1-07 Certified, and VDE
**
ISO
9001 and ISO 14001 certified manufacturing facilities
Compliant to IPC-9592A, Category 2, Class II
to 35.2Vdc
dc
§
0805-1 (EN60950-1, 2nd Ed.) Licensed
Description
The JRCW016A0R Orca series of dc-dc converters are a new generation of isolated, very high efficiency DC/DC power modules providing up to up to 16Adc output current at a nominal output voltage of 28Vdc in an industry standard, DOSA compliant half­brick size footprint, which makes it an ideal choice for high voltage and high power applications. Threaded-through holes are provided to allow easy mounting or addition of a heatsink for high-temperature applications. The output is fully isolated from the input, allowing versatile polarity configurations and grounding connections. This module contains an optional new feature, the Tunable Loop, that allows the user to optimize the dynamic response of the converter to match the load with reduced amount of output capacitance, leading to savings on cost and PWB area.
*
Trademark of General Electric Company
#
UL is a registered trademark of Underwriters Laboratories, Inc.
CSA is a registered trademark of Canadian Standards Association.
VDE is a trademark of Verband Deutscher Elektrotechniker e.V.
** ISO is a registered trademark of the International Organization of Standards
November 20, 2013 ©2012 General Electric Company. All rights reserved. Page 1
GE
Data Sheet
JRCW016A0R Orca Series; DC-DC Converter Power
Modules
36–75 Vdc Input; 28.0Vdc Output; 16Adc Output
Absolute Maximum Ratings
Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only, functional operation of the device is not implied at these or any other conditions in excess of those given in the operations sections of the data sheet. Exposure to absolute maximum ratings for extended periods can adversely affect the device reliability.
Parameter Device Symbol Min Max Unit
Input Voltage
Continuous All V
Transient, operational (100 ms) All V
Operating Ambient Temperature All Ta
Operating Case Temperature (See Thermal Considerations section, Figure 17)
Storage Temperature All T
I/O Isolation Voltage (Current trip point=5mA):
Input to Case, Input to Output All
Output to Case All
All Tc -40 100 °C
IN
IN,trans
stg
-0.3 80 Vdc
-0.3 100 Vdc
-40 85 °C
-55 125 °C
1500 Vdc
500 Vdc
Electrical Specifications
Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature conditions.
Parameter Device Symbol Min Typ Max Unit
Operating Input Voltage (see Figure 12 for V
Maximum Input Current
(VIN=36V to 75V, IO=I
Inrush Transient All I2t 2 A2s
Input Reflected Ripple Current, peak-to-peak (5Hz to 20MHz, 12μH source impedance; V see Figure 7)
Input Ripple Rejection (120Hz) All 50 dB
when using trim-up feature)
IN MIN
) All I
O, max
=0V to 75V, IO= I
IN
Omax
;
All V
All 20 mA
CAUTION: This power module is not internally fused. An input line fuse must always be used.
This power module can be used in a wide variety of applications, ranging from simple standalone operation to being an integrated part of complex power architecture. To preserve maximum flexibility, internal fusing is not included. Always use an input line fuse, to achieve maximum safety and system protection. The safety agencies require a time-delay or fast-acting fuse with a maximum rating of 25 A in the ungrounded input connection (see Safety Considerations section). Based on the information provided in this data sheet on inrush energy and maximum dc input current, the same type of fuse with a lower rating can be used. Refer to the fuse manufacturer’s data sheet for further information.
36 48 75 Vdc
IN
IN,max
14.0 Adc
p-p
November 20, 2013 ©2012 General Electric Company. All rights reserved. Page 2
GE
Data Sheet
JRCW016A0R Orca Series; DC-DC Converter Power
Modules
36–75 Vdc Input; 28.0Vdc Output; 16Adc Output
Electrical Specifications (continued)
Parameter Device Symbol Min Typ Max Unit
Output Voltage Set-point
, IO=I
(V
IN=VIN,nom
O, max
, Tc =25°C)
Output Voltage Set-Point Total Tolerance (Over all operating input voltage, resistive load, and temperature conditions until end of life)
Output Regulation
Line (VIN=V Load (IO=I
IN, min
O, min
to V
) All
IN, max
to I
) All
O, max
Temperature (Tc = -40ºC to +100ºC) All
Output Ripple and Noise on nominal output
(VIN=V
IN, nom
and IO=I
O, min
to I
)
O, max
RMS (5Hz to 20MHz bandwidth) All
Peak-to-Peak (5Hz to 20MHz bandwidth) All
External Capacitance (ESR
Without the Tunable Loop (ESR With the Tunable Loop (ESR > 50 mΩ)
> 2.5 mΩ)
MAX
1
1
= 80mΩ)
-T C
2
Output Power (Vo=28V to 35.2V) All P
Output Current All I Output Current Limit Inception (Constant current until Vo<V
trimMIN
duration <4s) Output Short Circuit Current (VO≤ 0.25Vdc) All I
Efficiency V
IN=VIN, nom
, Tc=25°C IO=I
O, max , VO
= V
O,set
Switching Frequency f
Dynamic Load Response
(Io/t=1A/10s; Vin=Vin,nom; Tc=25°C; Tested with a 470 μF
aluminum and a 10 µF ceramic capacitor across the load.)
Load Change from Io= 50% to 75% of Io,max:
Peak Deviation
Settling Time (Vo<10% peak deviation)
Load Change from Io= 25% to 50% of Io,max:
Peak Deviation
1
Note: use a minimum 2 x 220uF output capacitor. Recommended capacitor is Nichicon CD series, 220uF/35V. If the ambient temperature is less
O
C, use more than 3 of recommended minimum capacitors.
than -20
2
External capacitors may require using the new Tunable Loop feature to ensure that the module is stable as well as getting the best transient
response. See the Tunable Loop section for details.
Settling Time (Vo<10% peak deviation)
All
All V
V
O, set
O
27.5 28 28.5 V
27.0
  
 
,
All,
except -T
-T C
All I
C
O,
O,max
o
O, lim
O, sc
O
440 6500 μF
440 470 μF
O
440 10,000 μF
0 16.0 Adc
17.0
30 A
All η 93.0 93.5
 
 
All
sw
V
pk
ts
V
pk
t
s
29.0 V
0.1 0.2 %V
0.1 0.2 %V
0.25 0.5 %V
45 55 mV
80 200 mV
450 W
21.0 Adc
175
2
1.5
2
1.5
3
3
%V
%V
kHz
rms
%
ms
ms
dc
dc
o,set
o,set
o,set
rms
pk-pk
O, set
O, set
Isolation Specifications
Parameter Symbol Min Typ Max Unit
Isolation Capacitance C
iso
15
November 20, 2013 ©2012 General Electric Company. All rights reserved. Page 3
nF
GE
y
Data Sheet
JRCW016A0R Orca Series; DC-DC Converter Power
Modules
36–75 Vdc Input; 28.0Vdc Output; 16Adc Output
General Specifications
Parameter Device Symbol Min Typ Max Unit
Calculated Reliability based upon Telcordia SR-332 Issue 3: Method
I Case 3 (I
=80%I
O
, TA=40°C, airflow = 200 lfm, 90%
O, max
All
confidence)
Weight All
FIT 214.5 10
MTBF 4,661,316 Hours
68 76.4 84 g
2.40 2.69 2.96 oz.
9
/Hours
Feature Specifications
Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature conditions. See Feature Descriptions for additional information.
Parameter Device Symbol Min Typ Max Unit
Remote On/Off Signal Interface
(VIN=V Signal referenced to V
Negative Logic: device code suffix “1” Logic Low = module On, Logic High = module Off
Positive Logic: No device code suffix required Logic Low = module Off, Logic High = module On
Turn-On Delay and Rise Times (Vin=V
Case 1: T
with Remote On/Off set to ON,
Case 2: T Remote On/Off from Off to On with V one second.
T
Output Voltage Overshoot (IO=80% of I
Output Voltage Adjustment (See Feature Descriptions):
Output Voltage Remote-sense Range (onl Output Voltage Set-point Adjustment Range (trim) All V
Output Overvoltage Protection
Over Temperature Protection (See Feature Descriptions, Figure 17)
Input Under Voltage Lockout V
Input Over voltage Lockout V
to V
IN, min
; open collector or equivalent,
IN, max
terminal)
IN-
Logic Low - Remote On/Off Current All I Logic Low - On/Off Voltage All V Logic High Voltage – (Typ = Open Collector) All V Logic High maximum allowable leakage current All I
, IO=I
in,nom
delay
delay
= time for VO to rise from 10% of V
rise
for No Trim or Trim down application )
, 25C)
O, max
= Time until VO = 10% of V
= Time until VO = 10% of V
, TA=25°C)
O, max
from application of Vin
O,set
from application of
O,set
already applied for at least
in
to 90% of V
O,set
. All T
O,set
All T
All T
All V
All V
All T
Turn-on Threshold All Turn-off Threshold All
Hysteresis All
Turn-on Threshold All Turn-off Threshold All
Hysteresis All
on/off
on/off
on/off
on/off
120 ms
delay
delay
rise
0
 
sense
16.0 --- 35.2 Vdc
trim
O, limit
ref
IN, UVLO
IN, OVLO
__
37
105 110 120 °C
35 36 Vdc
31 32 Vdc
3 Vdc
81 83
--- 3 --- Vdc
 
5 V
20 ms
30
__
79.5 81 V
1.0 mA
1.2 Vdc
dc
50 μA
3 % V
2 %V
ms
O, set
o,nom
39 Vdc
dc
Vdc
November 20, 2013 ©2012 General Electric Company. All rights reserved. Page 4
GE
O
/Off
O
G
O
O
G
O
G
O
O
G
Data Sheet
JRCW016A0R Orca Series; DC-DC Converter Power
Modules
36–75 Vdc Input; 28.0Vdc Output; 16Adc Output
Characteristic Curves
The following figures provide typical characteristics for the JRCW016A0R (28V, 16A) at 25ºC. The figures are identical for either positive or negative Remote On/Off logic.
E
LTA
(V) (10V/div)
O
UTPUTV
EFFICIENCY (%)
OUTPUT CURRENT, Io (A) TIME, t (20ms/div)
Figure 1. Converter Efficiency versus Output Current.
E
LTA V
(V) (5V/div) V
n
ON/OFF
V
Figure 4. Typical Start-Up Using negative Remote On/Off;
= 440µF.
C
o,ext
E
LTA
(V) (50mV/div)
O
V
OUTPUT VOLTAGE
TIME, t (1s/div)
Figure 2. Typical Output Ripple and Noise at Room
= I
; C
Temperature and 48Vin; I
(V) (500mV/div)
O
(A) (5A/div) V
O
I
OUTPUT CURRENT OUTPUT VOLTAGE
o
o,max
TIME, t (2ms/div)
= 440µF.
o,ext
Figure 3. Dynamic Load Change Transient Response from 25% to 50% to 25% of Full Load at Room Temperature and 48 Vin; 0.1A/uS, C
= 440µF.
o,ext
(V) (10V/div)
O
UTPUT V
E
LTA
(V) (20V/div) V
in
INPUT V
V
Figure 5. Typical Start-Up step; C
OUTPUT CURRENT OUTPUT VOLTAGE
(V) (500mV/div)
O
(A) (5A/div) V
O
I
= 470µF.
o,ext
TIME, t (40ms/div)
from VIN, on/off enabled prior to V
TIME, t (2ms/div)
Figure 6. Dynamic Load Change Transient Response from 50 % to 75% to 50% of Full Load at Room Temperature and 48 Vin; 0.1A/uS, C
= 440µF.
o,ext
IN
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