Rev.04.05.08
NLP110 Series
3 of 4
Embedded Power for
Business-Critical Continuity
Notes
1 Free air convection.
Multiple output units: maximum continuous output power not to exceed 80 W.
For -9693J; I
3.3 V
= 13 A max.; I
5.0 V
= 13 A max.; I
3.3 V +I5.0 V
² 16 A.
For -9694J; I
3.3 V
= 13 A max.; I
2.5 V
= 13 A max.; I
3.3 V +I2.5 V
² 16 A
For -9695J; I
3.3 V
= 13 A max.; I
12 V
= 6.5 A max.; I
3.3 V +I12 V
² 16 A.
For -9608J; I
5.0 V
= 13 A max.; I
12 V
= 6.5 A max.; I
5.0 V +I12 V
² 16 A.
Single output units: maximum continuous output power not to exceed; 75 W
on -9605J; 76.8 W on -9612J,-9624J, and -9617J.
2 150 LFM forced air cooling from L4 side.
Multiple output units: maximum continuous output power not to exceed 105
W.
For -9693J; I
3.3 V
= 16 A max.; I
5.0 V
= 16 A max.; I
3.3 V +I5.0 V
² 20 A.
For -9694J; I
3.3 V
= 16 A max.; I
2.5 V
= 16 A max.; I
3.3 V +I2.5 V
² 20 A
For -9695J; I
3.3 V
= 16 A max.; I
12 V
= 8.5 A max.; I
3.3 V +I12 V
² 20 A.
For -9608J; I
5.0 V
= 16 A max.; I
12 V
= 8.5 A max.; I
5.0 V +I12 V
² 20 A.
Single output units: maximum continuous output power not to exceed 110 W
for all models.
3 300 LFM forced air cooling from L4 side.
Multiple output units: maximum continuous output power not to exceed 110
W.
For -9693J; I
3.3 V
= 20 A max.; I
5.0 V
= 18 A max.; I
3.3 V +I5.0 V
² 22 A.
For -9694J; I
3.3 V
= 20 A max.; I
2.5 V
= 20 A max.; I
3.3 V +I2.5 V
² 22 A
For -9695J; I
3.3 V
= 20 A max.; I
12 V
= 8.5 A max.; I
3.3 V +I12 V
² 22 A.
For -9608J; I
5.0 V
= 20 A max.; I
12 V
= 8.5 A max.; I
5.0 V +I12 V
² 22 A.
Single output units: maximum continuous output power not to exceed 110 W
for all models.
4 Peak output current lasting less than 30 seconds with duty cycle less than 5%.
During peak loading, output voltage may exceed total regulation limits.
5 Figure is peak-to-peak for convection power rating. Output noise
measurements are made across a 20 MHz bandwidth using a 6’ twisted pair,
terminated with a 10 μF electrolytic capacitor and a 0.1 μF ceramic capacitor.
6 Minimum load required for correct start-up and operation on single outputs
and on main output of multiple versions. Failure to observe minimum load
on main output will not allow the supply to start-up correctly. Some
electronic test loads have a large delay time before they start drawing current
even though the voltage from the supply is present. During this time delay,
there is no load on the output and as a result, the supply cannot start-up
properly and maintain its correct output voltage. In these instances, a
dummy resistive load across the output may be necessary to load the output
of the supply until the test load can function correctly and draw the intended
minimum load. Minimum load required on auxiliary outputs to maintain
regulation.
7 For models NLP110-9608J and NLP110-9695J, the 12 V output is floating.
For -12 V output, pin 11 on J2 has to be connected to Return making pin 12
the -12 V output
8 Three orthogonal axes, random vibration 10 minutes for each axes, 2.4 G rms
5 Hz to 500 Hz.
9 For optimum reliability, no part of the heatsink should exceed 110 ¼C, and
no semiconductor case temperature should exceed 120 ¼C.
10 CAUTION: Allow a minimum of 1 second after disconnecting line power when
making thermal measurements.
11 This product is only for inclusion by professional installers within other
equipment and must not be operated as a stand alone product.
12 The EMI specifications reference measurements made with the power supply
mounted on a grounded metal sheet extending 1 inch beyond each edge,
using an unshielded cable. No external filtering required during conducted
emissions testing but some applications may require additional filtering to
achieve system compliance. A line choke, (ac input cords looped twice
through an EMI suppression toroid) was used during radiated emissions
testing. Considerable radiated testing in 1U six-sided boxes has shown that
units can meet level B in typical systems. Application support is available
from the factory to assist with EMI compliance.
13 All models require a minimum mounting stand-off of 6.35 mm (0.25 inches)
in the end use product.
14 The ‘J’ suffix indicates that these parts are Pb-free (RoHS 6/6) compliant.
15 NOTICE: Some models do not support all options. Please contact your local
Emerson Network Power representative or use the on-line model number
search tool at http://www.powerconversion.com/products.
Ordering Information
Output
Voltage
Min
(6)
Max
(1)
150 LFM
(2)
300 LFM
(3)
Peak
(4)
Ripple
(5)
Total
Regulation
Model Numbers
(7, 14, 15)
+5 V 0.5 A 15 A 22 A 22 A 22 A 50 mV ± 2.0% NLP110-9605J
+12 V 0.3 A 6.4 A 9.2 A 9.2 A 11.5 A 120 mV ± 2.0% NLP110-9612J
+48 V 0 A 1.6 A 2.3 A 2.3 A 2.5 A 240 mV ± 2.0% NLP110-9617J
+24 V 0.2 A 3.2 A 4.6 A 4.6 A 6.0 A 240 mV ± 2.0% NLP110-9624J
+5 V (A) 0.5 A 13 A 16 A 18 A 18 A 50 mV ± 2.0% NLP110-9693J
+3.3 V (B) 0.2 A 13 A 16 A 20 A 20 A 50 mV ± 2.0%
+12 V 0 A 0.65 A 1.0 A 1 A 1 A 120 mV ± 5.0%
+3.3 V (A) 0.5 A 13 A 16 A 20 A 22 A 50 mV ± 2.0% NLP110-9694J
+2.5 V (B) 0.1 A 13 A 16 A 20 A 22 A 50 mV ± 2.0%
+12 V 0 A 0.65 A 1 A 1 A 1 A 120 mV ± 5.0%
+12 V (A) 0.2 A 6.5 A 8.5 A 8.5 A 10 A 1200 mV ± 2.0% NLP110-9695J
+3.3 V (B) 0.5 A 13 A 16 A 20 A 22 A 50 mV ± 2.0%
-12 V 0 A 0.65 A 1 A 1 A 1 A 120 mV ± 5.0%
+12 V (A) 0.2 A 6.5 A 8.5 A 8.5 A 10 A 120 mV ± 2.0% NLP110-9608J
+5 V (B) 0.2 A 13 A 16 A 18 A 22 A 50 mV ± 2.0%
-12 V 0 A 0.65 A 1 A 1 A 1 A 120 mV ± 5.0%