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1/2C24-N30

Non-Isolated DC/DC Converters DC to Fast-Rise Time/Regulated High-Voltage DC Converter, PCB or Chassis-Mount Options, Unipolar, Single Output

器件类别:半导体    电源管理   

厂商名称:Advanced Energy

器件标准:

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器件参数
参数名称
属性值
Product Attribute
Attribute Value
制造商
Manufacturer
Advanced Energy
产品种类
Product Category
Non-Isolated DC/DC Converters
RoHS
Details
产品
Product
Non-Isolated / POL
Number of Outputs
1 Output
Output Power
30 W
Input Voltage
23 V to 30 V
Output Voltage-Channel 1
0 V to - 500 V
Output Current-Channel 1
60 mA
安装风格
Mounting Style
Chassis
输出类型
Output Type
Negative
最大工作温度
Maximum Operating Temperature
+ 65 C
最小工作温度
Minimum Operating Temperature
- 40 C
文档预览
HIGH VOLTAGE CAP-CHARGING SUPPLIES
ULTRAVOLT® C SERIES
DC-to-HVDC
single-output
high voltage cap-
charging modules
The C series of high voltage regulated DC-to-DC
converters are designed for fast rise time/charging
applications utilizing state-of-the-art power conversion
topology.
This high power density module is especially
suited to high-energy pulsers, amplifiers, and discharge
devices with large capacitance, fast repetition rates,
or high current loads. Surface-mount technology and
encapsulation techniques provide high reliability
and low cost.
Features
› 7 models from 0 to 125 V
through 0 to 6 kV
› 20 or 30 W output power
› Maximum Iout capability down
to 0 V
› Maximum Iout during
charge/rise time
› Indefinite output short circuit
protection
› Very fast rise with very low
overshoot
› Output voltage and current
monitors
› > 400,000 h MTBF at 65°C
› Fixed-frequency,
low-stored-energy design
› UL/cUL recognized
component; CE Mark (LVD and
RoHS)
Typical Applications
› Cap-charging
› Pulsed power
› Test equipment
› Mass spectrometry
› Automated test equipment
(ATE)
› Lasers and electro-optics
› HV pulse generator bias
› HV amplifier bias
Note: See Application Note 10 for more charging information.
PARAMETER
Input
Voltage Range
Voltage Range
Current
Current
Current
AC Ripple Current
CONDITIONS
Full Power
Derated Power Range
Standby/Disable
No Load, Max Eout
Max Load, Max Eout
Nominal Input, Full Load
MODELS
All Types
+23 to 30
+9 to 32
< 30
< 90
20 W: 950, 30 W: 1425
< 80
UNITS
VDC
VDC
mA
mA
mA
mA pk to
pk
Output
Voltage Range
Power
Current
Current Scale Factor
Voltage Monitor Scaling
Ripple
Overshoot
Rise Time
Storage Capacitance
Line Regulation
Static Load Regulation
Stability
Full Load, Max Eout, Cload
0.5 uF
C Load, 0 Eout to Full Eout
Max Iout, Various C Loads and Eout
Internal
Nominal Input, Max Eout, Full
Power
No Load to Full Load, Max Eout
30 Min Warmup, Per 8 h, Per Day
Nominal Input
Nominal Input, Max Eout
Iout, Entire Output Voltage Range
Full Load
1/8C
0 to 125
20
160
2540
30
240
4210
1/4C
0 to 250
20
80
1096
30
120
2000
1/2C
0 to 500
20
40
1142
30
60
1667
VDC
W
mA
mA/V
100:1 ±2% into 10 MΩ
< 1.0
< 1.0
Figure A
0.50
< 0.01 %
< 0.01%
< 0.01%/< 0.02%
0.50
0.15
0.15
0.16
0.16
< 1.0
< 1.0
< 1.0
< 1.0
< 1.0
< 1.0
< 1.0
< 2.0
< 1.0
< 2.0
V pk to pk
V pk
-
uF
VDC
VDC
VDC
Programming And Controls
Input Impedance
Adjust Resistance
Adjust Logic
Output Voltage
and Impedance
Enable/Disable
Nominal Input
Typical Potentiometer Values
0 to +5 for +Out, +5 to 0 for -Out
T = +25°C
All Types
+Output models 1.1 MΩ to ground, -output models 1.1 MΩ to +5 vRef.
10 to 100 K (potentiometer across vRef. and signal ground, wiper to adjust)
+4.64 VDC for +output or +0.36 for -output = nominal Eout
+5.00 VDC ±2%, Zout = 464
Ω
±1%
0 to +0.5 disable, +2.4 to 32 enable (default = enable)
Ω
-
-
VDC
Environmental
Operating
Coefficient
Thermal Shock
Storage
Humidity
Altitude
Shock
Vibration
Full Load, Max Eout, Case Temp.
Over The Specified Temperature
Mil-Std 810, Method 503-4, Proc. II
Non-operating, Case Temp.
All Conditions, Standard Package
All Conditions, Standard Package
Mil-Std-810, Method 516.5, Proc. IV
Mil-Std-810, Method 514.5,
Fig.514.5C-3
Standard
-40 to +65
±50
-40 to +65
-55 to +105
0 to 95% non-condensing
Sea level through vacuum (vacuum may require -P2 option, contact factory
for details)
20 (standard), 40 (-C option)
10 (standard), 20 (-C option)
°C
PPM/°C
°C
°C
-
-
Gs
Gs
C = uF
V = Volts
I = mA
T = mS
T=
CxV
I
C = uF
V = kV
I = mA
F = Hz
I=CxVxF
C = uF
V = kV
I = mA
F = Hz
F=
I
CxV
C = uF
E² = kV
J = Ws
J=
C x E
2
2
Figure A - Rise time formulas
Note: Capacitance must include HVPS internal capacitance.
PARAMETER
Input
Voltage Range
Voltage Range
Current
Current
Current
AC Ripple Current
UNITS
VDC
VDC
mA
mA
mA
mA pk to pk
Output
Voltage Range
Power
Current
Current Scale Factor
Voltage Monitor Scaling
-
Ripple
Overshoot
Rise Time
Storage Capacitance
Line Regulation
Static Load Regulation
Stability
1C
0 to 1000
20
20
307
30
30
476
2C
0 to 2000
20
10
159
30
15
259
4C
0 to 4000
20
5
94
30
7.5
112
6C
0 to 6000
20
3.3
51
30
5
86
VDC
W
mA
mA/V
< 1.0
< 2.0
< 1.0
< 2.0
< 1.0
< 2.0
< 1.0
< 2.0
< 1.0
< 4.0
< 1.0
< 4.0
< 1.0
< 6.0
< 1.0
< 6.0
V pk to pk
V pk
-
0.033
0.018
0.009
0.009
0.010
0.010
0.0064
0.0064
uF
VDC
VDC
VDC
Programming And
Controls
Input Impedance
Adjust Resistance
Adjust Logic
Output Voltage
and Impedance
Enable/Disable
Ω
-
-
VDC
Environmental
Operating
Coefficient
Thermal Shock
Storage
Humidity
Altitude
Shock
Vibration
-25 PPM Option
+10 to +45
±25
°C
PPM/°C
°C
°C
-
-
Gs
Gs
Upta quam:
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