= +40°C Nominal Input Voltage unless otherwise specified.
PARAMETER
INPUT
Voltage Range
Maximum Input Current
Reflected Ripple Current
Input Ripple Rejection
No Load Input Current MS
Power Dissipation MS
No Load
Standby, Primary On/Off
Disabled MS
Inrush Charge
Quiescent Operating Current
Primary On/Off Disabled
CONDITIONS
MIN
TYP
48
MAX
75
6.6
550
UNITS
V
DC
A
mA
dB
mA
W
W
mC
mA
INPUT
V
IN
= 30V
DC
Peak - Peak
DC to 1KHz
50
60
100
4.8
0.4
V
IN
= V
IN
max
8
0.360
12
PARAMETER
OUTPUT
Rated Power
Set point Accuracy
Line Regulation
Load Regulation
Output Temperature Drift
Output Ripple, p-p
Output Current Limit Inception
Output Short-Circuit Current
Output Overvoltage Limit
Transient Response
Peak Deviation
Settling Time
CONDITIONS
MIN
TYP
MAX
150
1
0.05
0.5
±.05
1.5%
130%
135%
140%
3%
100
UNITS
W
%
%
%
%/°C
V
OUT,
Nom
l
OUT,
Nom
l
OUT,
Nom
V
OUT,
Nom
V
OUT,
Nom
µSec
OUTPUT
High Line to Low Line
No Load to Rated Load
DC to 20MHz BW
105%
120%
120%
50 to 100% Load Step
di/dt = 0.1A/µSec
V
OUT,
1% of Nominal Output
0.02
0.2
±.02
2
75
PARAMETER
ISOLATION
Input to Output
Input to Baseplate
Output to Baseplate
Resistance
Capacitance
Leakage Current
GENERAL
Switching Frequency
Remote Sense Compensation
Output Voltage Adjust Range
CONDITIONS
Peak Test for 2 Seconds
MIN
1500
1500
500
10
TYP
MAX
UNITS
V
DC
V
DC
V
DC
MΩ
pF
µA,
rms
V
ISO
= 240V
AC
, 60Hz
400
5V
12V
15V
24V
Open Collector/Drain
2000
180
420
-40%
-50%
-50%
-50%
/
/
/
/
+10%
+10%
+10%
+10%
440
0.5
GENERAL
KHz
V
V
OUT,
Nom
V
OUT,
Nom
V
OUT,
Nom
V
OUT,
Nom
Remote On/Off Control Inputs
Primary
Sink Current-Logic Low
Vlow
Vhigh
Turn-on Time
Weight
TEMPERATURE
Operation/Specification
Storage
Shutdown Temperature
Thermal Impedance, case-ambient
Lead Solder Temperature
NOTES:
(1)
(2)
(3)
(4)
(5)
Within 1% of Rated Output
5.0
1.0
0.4
Open Collector
8.0
3 (85)
+100
+125
+115
+300
mA
V
mSec
oz (g)
°C
°C
°C
°C/W
°C
Case Temperature
Case Temperature
Case Temperature
10 Seconds max
-40
-55
+100
+25
+25
8.2
See Typical Performance Curves, page 3
Continuous Mode
See graphs for Efficiency vs. Output Load, V
IN
, T
CASE
3.3V Models Limited in Trim Down Range
Consult Factory for Details
Product: www.cdpoweronline.com
VKA150MS
Rev C
1/2003
2
MECHANICAL
NOTES:
All dimensions are in inches (millimeters).
0.530 MAX
[13.46]
0.20 [5.1]
PIN PLACEMENT TOLERANCE: ± 0.005"
MECHANICAL TOLERANCE: ± 0.015"
Marked with: specific modeL ordered, date code, job code.
.040 [1.02] DIA.
7 PLACES
.081 [2.06] DIA.
2 PLACES
0.20 [5.1]
0.50 [12.7]
MATERIAL: Units are encapsulated in a low thermal
resistance molding compound which has excellent chemical
resistance and electrical properties in high humidity
environments and over a wide operating temperature range.
The encapsulant and outer shell of the unit have UL94V-0
ratings. Lead material is solder plated to allow ease of
solderability.
0.40 [10.16]
.400 [10.16]
2.000
[50.80]
1.000
[25.40]
2.40
[61.0]
MAX
VKA150MS
0.700
[17.78]
1.000
[25.40]
1.400
[35.56]
1.400
[35.56]
0.19 [4.8]
1.900
[48.26]
MOUNTING INSERTS M3 X 0.5 THRU, 4 PLACES
MAX. TORQUE, 8 IN/LBS
2.28
[57.91]
MAX
OUTPUT ADJUST VOLTAGE
This feature allows the user to accurately adjust the
module's output voltage set point to a specified level.
This is achieved by connecting a resistor or potentiometer
from the TRIM terminal to either the +Vout terminal (for
increased Vout) or the -Vout terminal (for decreased
Vout). The formulae below describe the trim resistor
value to obtain a Vout change of
∆
%. V
O
is output
voltage prior to adjustment (3.3V, 5V, 12V, 15V, or 24V).
Radj - up =
OVP NOTE
Special attention should be given to the peak voltage
deviation during a dynamic load step when trimming
the output above the original set point to avoid
tripping the overvoltage protection circuit. Should an
OVP condition occur, the converter will go into a
latch condition and must be externally reset before it
will return to normal operation.
(
Vo(100 +
∆
%)
1.225
∆
%
_
(100 + 2
∆
%)
∆
%
)
kΩ
Radj - down =
(
100
-
2
)
∆
%
kΩ
Product: www.cdpoweronline.com
VKA150MS
Rev C
1/2003
3
Power Electronics Division, Americas
3400 E Britannia Drive, Tucson, Arizona 85706
Tel: 800.547.2537 Fax: 520.295-4197
C&D Technologies, EMEA/AP
Milton Keynes MK14 5BU UK
Tel: +44 (0)1908 615232 Fax: +44 (0)1908 617545
Any data, prices, descriptions or specifications presented herein are subject to revision by C&D Technologies, Inc. without notice. While such information is believed to be
accurate as indicated herein, C&D Technologies, Inc. makes no warranty and hereby disclaims all warranties, express or implied, with regard to the accuracy or
completeness of such information. Further, because the product(s) featured herein may be used under conditions beyond its control, C&D Technologies, Inc. hereby
disclaims all warranties, either express or implied, concerning the fitness or suitability of such product(s) for any particular use or in any specific application or arising from
any course of dealing or usage of trade. The user is solely responsible for determining the suitability of the product(s) featured herein for user’s intended purpose and in
user’s specific application. C&D Technologies, Inc. does not warrant or recommend that any of its products be used in any life support or aviation or aerospace applications.
Intersil公司今天宣布,签署了收购磐大微电子的最终协议。磐大微电子是一家私营无晶圆半导体公司,在高集成度电源管理IC技术上处于领先地位。 磐大微电子为无线、音频、视频和数据通信解决方案提供高性能模拟和混合信号集成电路,其产品主要用于消费类终端市场,如手机、个人导航设备、便携式多媒体播放机和其他流行的消费电子产品等应用。 Intersil的CEO Dave Bell 认...[详细]
阿迪达斯在伦敦发布了第一款由工厂Speedfactory制造的跑鞋。这个位于德国的工厂也是阿迪达斯的第一个机器人工厂。这款名为AM4(Adidas Made For)的城市系列跑鞋据称是基于运动员数据而设计出来的轻量运动鞋,可提供最舒适的穿着体验。伦敦版之外,它还将有五个版本,分别为巴黎版 (AM4PAR)、洛杉矶版(AM4LA)、纽约版(AM4NYC)、东京版(AM4TKY)和上海版(AM4S...[详细]
① 机械调零。在通电前,先调整电表指示的机械零位。 ② 接通。按下电源开关,发光灯亮,仪器立刻工作,为保证性能稳定,可预热10分钟后使用。 ③ 将量程开关置于适当量程,再加入测量信号。若测量电压未知,应将量程开关置于最大档,然后逐渐减小量程。 ④ 当选10v,1v,0.1v,10mv,1mv量程时,读数看表头中满刻度为10的表盘;当选30v,3v,0.3v,30mv,3mv量程时,读数看表头中满...[详细]