Data are valid at +25°C, unless otherwise specified.
Parameter
Input
Nominal input voltage
Permanent input
voltage range (Ui)
Transient input voltage
Undervoltage lock-out
(UVLO)
Start up time
Reflected ripple current
Input current in short
circuit mode (Average)
No load input current
Output
Output voltage *
Full temperature range
Ui min. to max.
75% load
Ambient temperature : 25°c
Ui nominal, 75% load
Full temperature range
Ui min. to max.
Full temperature range
Ui min. to max.
Nominal
Nominal
Nomina
Nominall
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Typical
Typical
Typical
VDC
VDC
VDC
VDC
%
W
A
A
A
A
mVpp
mVpp
mVpp
%
%
%
3,3
5
12
15
+/- 2
20
4
4
1,6
1,3
40
50
60
+/- 1
+/- 2,5
3,3
5
12
15
+/- 2
20
4
4
1,6
1,3
40
50
60
+/- 1
+/- 2,5
See on page 6
Conditions
Limit or
typical
Nominal
Min. - Max.
Maximum
Minimum
Maximum
Maximum
Typical
Maximum
Maximum
Units
Hi-Rel
Grade
Single Output MGDS-20
20 - C
5
4,5-5,5
/
4
4,3
40
50
100
100
20 - H
20
9-36
40/0,1
7
8,5
40
50
60
60
20 - J
28
16-40
50/0,1
12
15
40
50
60
60
Full temperature range
Full temperature range
Full load (Consult factory)
Turn-on/turn-off 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/S
VDC
VDC
ms
mApp
mA
mA
3,3
5
12
15
+/- 2
20
4
4
1,6
1,3
40
50
60
+/- 1
+/- 2,5
Set Point accuracy
Output power
Output current **
3,3V output
5V output
12V output
15V output
Ripple output voltage ***
3,3V and 5V output
12V output
15V output
Line regulation
Load regulation ****
Efficiency
Maximum admissible
Capacitive load
3,3V and 5V output
12V and 15V output
4
Ui nominal
Full load
BW = 20MHz
Ui min. to max.
Full load
Ui nominal
25% to full load
Ui nominal
Full load
Ui nominal
Full load
Per output
Maximum
Maximum
µF
µF
2 000
680
2 000
680
2 000
680
Note * : For proper operation the MGDM-20 module requires to install a 22µF chemical or tantalum capacitor accross output terminal.
Note ** : For 9-36V input range, the current is derated at 80% at 9V and increases linearly to full current 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 see page 6.
Data are valid at +25°C, unless otherwise specified.
Limit or
typical
Nominal
Min. - Max.
Maximum
Minimum
Maximum
Parameter
Input
Nominal input voltage
Permanent input
voltage range (Ui)
Transient input voltage
Undervoltage lock-out
(UVLO)
Start up time
Reflected ripple current
Input current in short circuit
mode (Average)
No load input current
Output
Output voltage *
Set Point accuracy
Output power
Output current **
+/- 5V output
+/- 12V output
+/- 15V output
Ripple output voltage ***
5V output
12V output
15V output
Line regulation
Load regulation ****
Cross load output regulation
Full temperature range
Ui min. to max.
75% load
Ambient temperature : +25°c
Ui nominal, 75% load
Full temperature range
Ui min. to max.
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
Ui nominal
+ Vout nominal load
- Vout from 25% to full load
Ui nominal
Full load
Ui nominal
Full load
Per output
Nominal
Nominal
Nominal
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Typical
Typical
Typical
VDC
VDC
VDC
%
W
A
A
A
mVpp
mVpp
mVpp
%
%
%
+/- 5
+/- 12
+/- 15
+/- 2
+/- 10
+/- 2
+/- 0,80
+/- 0,65
40
50
60
+/- 1
+/- 2,5
+/- 0,5
Conditions
Units
Hi-Rel
Grade
Bi Output MGDB-20
20 - H
20
9-36
40/0,1
7
8,5
40
50
60
60
20 - J
28
16-40
50/0,1
12
15
40
50
60
60
Full temperature range
Full temperature range
Full load (Consult factory)
Turn-on/turn-off threshold
VDC
VDC
VDC/S
VDC
VDC
ms
mApp
mA
mA
Ui nominal
Maximum
Nominal output
Full load : resistive
Ui nominal, full load at switching
Typical
freq. BW = 20MHz
Ui nominal
Maximum
Short-circuit
Ui nominal
Maximum
No load
+/- 5
+/- 12
+/- 15
+/- 2
+/- 10
+/- 2
+/- 0,80
+/- 0,65
40
50
60
+/- 1
+/- 2,5
+/- 0,5
4
Efficiency
Maximum admissible
Capacitive load
5V output
12V and 15V output
Typical
%
See on page 6
Maximum
Maximum
µF
µF
1 000
330
1 000
330
Note * : For proper operation the MGDM-20 module requires to install a 22µF chemical or tantalum capacitor accross output terminal.
Note ** : For 9-36V input range, the current is derated at 80% at 9V and increases linearly to full current 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 see page 6.
Data are valid at +25°C, unless otherwise specified.
Limit or
typical
Nominal
Min. - Max.
Maximum
Minimum
Maximum
Maximum
Typical
Maximum
Maximum
Parameter
Input
Nominal input voltage
Permanent input
voltage range (Ui)
Transient input voltage
Undervoltage lock-out
(UVLO)
Start up time
Reflected ripple current
Input current in short
circuit mode (Average)
No load input current
Output
Output voltage *
Full temperature range
Ui min. to max.
75% load
Ambient temperature : +25°c
Ui nominal, 75% load
Full temperature range
Ui min. to max.
Full temperature range
Ui min. to max.
Nominal
Nominal
Nominal
Nominal
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Maximum
Typical
Typical
Typical
Typical
VDC
VDC
VDC
VDC
%
W
A
A
A
A
mVpp
mVpp
mVpp
%
%
%
%
3,3 & +/- 12
3,3 & +/- 15
5 & +/- 12
5 & +/- 15
+/- 2
10 & +/- 5
2 & +/- 0,4
2 & +/- 0,3
2 & +/- 0,4
2 & +/- 0,3
40
50
60
+/- 1
+/- 2,5
+/- 0,5
see on page 6
Conditions
Units
Hi-Rel
Grade
Tri Output MGDT-20
20 - H
20
9-36
40/0,1
7
8,5
40
50
60
60
20 - J
28
16-40
50/0,1
12
15
40
50
60
60
Full temperature range
Full temperature range
Full load
Turn-on/turn-off 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/S
VDC
VDC
ms
mApp
mA
mA
3,3 & +/- 12
3,3 & +/- 15
5 & +/- 12
5 & +/- 15
+/- 2
10 & +/- 5
2 & +/- 0,4
2 & +/- 0,3
2 & +/- 0,4
2 & +/- 0,3
40
50
60
+/- 1
+/- 2,5
+/- 0,5
see on page 6
Set Point accuracy
Output power
Output current **
3,3V & +/- 12V output
3,3V & +/- 15V output
5V & +/- 12V output
5V & +/- 15V output
Ripple output voltage ***
3,3V and 5V output
12V output
15V output
Line regulation
Load regulation ****
Cross load output
regulation
Efficiency
Maximum admissible
Capacitive load
3,3V and 5V output
12V and 15V output
4
Ui nominal
Full load
BW = 20MHz
Ui min. to max.
Full load
Ui nominal
25% to full load
Ui nominal
+ Vout nominal load
- Vout from 25% to full load
Ui nominal
Full load
Ui nominal
Full load
Per output
Maximum
Maximum
µF
µF
1 000
100
1 000
100
Note * : For proper operation the MGDM-20 module requires to install a 22µF chemical or tantalum capacitor accross output terminal.
Note ** : For 9-36V input range, the current is derated at 80% at 9V and increases linearly to full current 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 see page 6.
便携式医疗设备的特殊性决定了它们应该是对用户友好的、必须工作在无菌环境下,并且空间占用小、耗能低。 同时,便携式医疗设备还需要足够的计算能力以便处理医疗数据,能够连接到无线或有线接口以便记录和发送数据。从设计人员的角度考虑,上述需求需要低功耗的单片机(MCU)和数字信号控制器(Digital Signal Controller,DSC)。 正是有了嵌入式处理器,设计人员才有可能设...[详细]