Data are valid at +25°C, unless otherwise specified.
Parameter
Input
Nominal input voltage
Permanent input
voltage range (Ui)
Extended permanent input
voltage range
Transient input voltage
Undervoltage lock-out
(UVLO)
Start up time
Reflected ripple current
Input current in short circuit
mode (Average)
No load input current
Primary Output
Output voltage *
Set Point accuracy
+ Line regulation
+ Load regulation
Output power **
Ripple output voltage ***
3,3V and 5V output
12V output
15V and 24V output
Trim function
Sense function
Secondary Output
Output voltage *
Set point accuracy
Output power
Ripple output voltage **
3,3V, 5V and +/-5V output
12V and +/-12V output
15V and +/-15V output
24V and +/-24V output
Line regulation
Load regulation ***
Ui min. to max.
75% load
Nominal
VDC
%
W
mVpp
mVpp
mVpp
mVpp
%
%
Ui min. to max.
Nominal
75% load
Ambient temperature : +25°c
Ui min. to max.
Maximum
25% to full load
Full temperature range
Maximum
Ui min. to max.
Ui nominal
Full load
BW = 20MHz
Ui nominal
Ui nominal
Maximum
Maximum
Maximum
Maximum
Minimum
Maximum
Minimum
VDC
%
W
mVpp
mVpp
mVpp
%
%
%
%
Conditions
Limit or
typical
Nominal
Min. - Max.
Min. - Max.
Maximum
Minimum
Maximum
Maximum
Maximum
Maximum
Maximum
Units
CGDI-D
Industrial
Grade
CGDI-H
Full temperature range
Full temperature range
Full temperature range
(consult factory)
Full load
Threshold
Ui nominal
Nominal output
Full load : resistive
Ui nominal, full load at
switching freq. BW = 20MHz
Ui nominal
Short-circuit
Ui nominal
No load
VDC
VDC
VDC
VDC/S
VDC
VDC
ms
mApp
mA
mA
9
4,7-16
/
/
4
4,5
40
50
100
100
20
9-36
/
40/0,1
7
8,5
40
50
60
60
3,3V , 5V , 12V , 15V or 24V
Consult factory for other outputs
+/- 1
10, 20 or 30
(limited to respectively 2A, 4A or 6A max)
+/- 1
40
50
60
+5
-5
+5
-5
40
50
60
+5
-5
+5
-5
5
3,3V , 5V , 12V , 15V or 24V
+/- 5V , +/- 12V , +/- 15V or +/- 24V
Consult factory for other outputs
+/- 2
10 or 20
(limited to respectively
2A or 4A max)
Ambient temperature : +25°c
Maximum
Ui nominal, 75% load
Full temperature range
Ui min. to max.
Ui nominal
Full load
BW = 20MHz
Ui min. to max.
Full load
Ui nominal
25% to full load
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
+/- 2
10 or 20
(limited to respectively
2A or 4A max)
50
100
150
150
+/- 1
+/- 2,5
50
100
150
150
+/- 1
+/- 2,5
Note * : For proper operation the CGDI module requires to install a 22µF chemical or tantalum capacitance accross output terminals.
Note ** : For 9-36V inpt range, the power is derated at 80% at 9V and increases linearly to full power at 12V.
Note*** : The ripple output voltage is the periodic AC component imposed on the output voltage, an aperiodic and random component (noise) has also to be considered. This noise can
be reduced by adding an external capacitor(typically 10nF/rated voltage depending on isolation requirement) connected between the pin Gin and the pin Gout of the converter. This capacitor
should be layed-out as close as possible from the converter.
Note *** : For load regulation characteristics from 0% to full load, please contact factory.
Data are valid at +25°C, unless otherwise specified.
Parameter
Input
Nominal input voltage
Permanent input
voltage range (Ui)
Extended permanent input
voltage range
Transient input voltage
Undervoltage lock-out (UVLO)
Start up input voltage
Start up time
Reflected ripple current
Input current in short circuit
mode (Average)
No load input current
Primary Output
Output voltage *
Set Point accuracy
+ Line regulation
+ Load regulation
Output power
Ripple output voltage **
3,3V and 5V output
12V output
15V and 24V output
Trim function
Sense function
Secondary Output
Output voltage *
Set point accuracy
Output power
Ripple output voltage **
3,3V, 5V and +/-5V output
12V and +/-12V output
15V and +/-15V output
24V and +/-24V output
Line regulation
Load regulation
Ui min. to max.
75% load
Ambient temperature : +25°c
Ui nominal, 75% load
Full temperature range
Ui min. to max.
Ui nominal
Full load
BW = 20MHz
Ui min. to max.
Full load
Ui nominal
25% to full load
Nominal
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
VDC
%
W
mVpp
mVpp
mVpp
mVpp
%
%
Ui min. to max.
75% load
Ambient temperature : +25°c
Ui min. to max.
25% to full load
Full temperature range
Ui min. to max.
Ui nominal
Full load
BW = 20MHz
Ui nominal
Ui nominal
Nominal
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Minimum
Maximum
Minimum
VDC
%
W
mVpp
mVpp
mVpp
%
%
%
%
40
50
60
+5
-5
+5
-5
Conditions
Limit or
typical
Nominal
Min. - Max.
Min. - Max.
Maximum
Min. - Max.
Minimum
Maximum
Maximum
Maximum
Maximum
Units
CGDI-J
Industrial
Grade
CGDI-Q
Full temperature range
Full temperature range
Full temperature range
(consult factory)
Full load
Threshold
Threshold
Ui nominal
Nominal output
Full load : resistive
Ui nominal, full load at
switching freq. BW = 20MHz
Ui nominal
Short-circuit
Ui nominal
No load
VDC
VDC
VDC
VDC/S
VDC
VDC
ms
mApp
mA
mA
28
16-40
16-45
45/0,1
12-15
/
40
50
60
60
72
36-140
36-154
175/0,1
/
33
40
50
60
60
3,3V , 5V , 12V , 15V or 24V
Consult factory for other outputs
+/- 1
10, 20 or 30
40
50
60
+5
-5
+5
-5
+/- 1
5
3,3V , 5V , 12V , 15V or 24V
+/- 5V , +/- 12V , +/- 15V or +/- 24V
Consult factory for other outputs
+/- 2
10 or 20
50
100
150
150
+/- 1
+/- 2,5
+/- 2
10 or 20
50
100
150
150
+/- 1
+/- 2,5
Note * : For proper operation the CGDI module requires to install a 22µF chemical or tantalum capacitance accross output terminals.
Note** : The ripple output voltage is the periodic AC component imposed on the output voltage, an aperiodic and random component (noise) has also to be considered. This noise can be
reduced by adding an external capacitance (typically 10nF/rated voltage depending on isolation requirement) connected between the pin Gin and the pin Gout of the converter. This
capacitance should be layed-out as close as possible from the converter.
This fire extinguisher, which is similar to a "hand grenade", does not require manual spraying like traditional fire extinguishers. It can be thrown into the fire and exploded by itself as soon as it ...
It’s the same as picking up girls, the leader calls it a mistake, the rich calls it a nurturing, and the common people call it prostitution; the same goes abroad, the leader calls it inspection, the r...
Can solve Beijing Hukou China Electronics Technology Group Recruitment [Company Profile] The first underwater robot team of China Electronics Technology Group (CETC) has been developing for more than ...
The current amplification capability of a transistor is equal to the ratio of the collector current to the base current. This ratio has many names, including current gain and beta. Different authors u...
I have to do a design recently, the remote transmission part after ECG data collection requires transmission to the computer via GPRS. The teacher said that it can be done with a mobile phone or a gpr...
In 2017,
Sanan Optoelectronics
achieved sales revenue of 8.394 billion yuan, operating profit of 3.856 billion yuan, and net profit attributable to shareholders of the parent company of 3.1...[Details]
On April 24, Sungrow released its annual financial report. The report shows that in 2017, Sungrow's global shipments reached 16.5GW, of which domestic shipments reached 13.2GW, a year-on-year incre...[Details]
China Energy Storage Network News:
According to reports, in order to reduce carbon emissions, a group of Japanese technology and energy companies are launching a pilot project that aims to al...[Details]
1. Purpose Since the number of times the STM32 FLASH can be erased and written is limited, in order to protect our FLASH and extend the use time of the MCU, we can debug on the SRAM. SRAM is a ...[Details]
introduction In the general project development process, two or more microcontrollers are often required to communicate to complete data transmission. For example, a quadcopter wirelessly transmits d...[Details]
The photovoltaic inverter is the core equipment of the photovoltaic system. Its main function is to convert the direct current generated by the photovoltaic modules into alternating current that meets...[Details]
Artificial Intelligence (AI) is undoubtedly the hottest topic in the technology industry in the past one or two years. In addition to the huge investments made by technology giants, financial and o...[Details]
Unlike three years ago, today's
artificial intelligence
is no longer just a floating concept, and the venture capital circle has begun to explore the various possibilities of this technolog...[Details]
The adoption rate of serverless
cloud
computing
is gradually increasing, but it has not yet reached people's expectations. Various surveys show that serverless
is
still
an eme...[Details]
This program mainly uses the comparison output function of the timer to generate PWM waves to control the LED. The comparison output of timer A corresponds to P2.3 P2.4. Therefore, a matching working...[Details]
From small households to large enterprises, energy consumption has always been a concern for everyone. The energy consumption of Chinese enterprises has always been high, and the country has also wor...[Details]
1. Brief description A summary of "How to build uClinux kernel transplantation on ARMSYS development board with S3C44B0X as core", including the analysis of Bootloader function and the key co...[Details]
In recent years, in order to meet the needs of social development, more and more companies have entered the fields of smart phones, artificial intelligence,
VR
, AR, etc. After seeing the d...[Details]
With the large-scale development of the domestic household photovoltaic market and the improvement of component and inverter technology, the system cost has dropped significantly in the past year. The...[Details]