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5962-0621301HXC

更新时间: 2024-01-28 08:17:48
品牌 Logo 应用领域
CRANE 模拟IC信号电路局域网
页数 文件大小 规格书
13页 616K
描述
Parallel operation with current share, 16 to 40 VDC input

5962-0621301HXC 技术参数

生命周期:Transferred零件包装代码:MODULE
包装说明:, FLANGE MT,1.5X3.0针数:12
Reach Compliance Code:unknown风险等级:5.03
最大输入电压:40 V最小输入电压:16 V
最高工作温度:125 °C最低工作温度:-55 °C
最大输出电流:12 A标称输出电压:3.3 V
封装主体材料:METAL封装等效代码:FLANGE MT,1.5X3.0
认证状态:Not Qualified筛选级别:38535Q/M;38534H;883B
子类别:Other Analog ICs技术:HYBRID
温度等级:MILITARYBase Number Matches:1

5962-0621301HXC 数据手册

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Crane Aerospace & Electronics Power Solutions  
MFL sꢀꢁglꢂ aꢁꢃ dual dc/dc cꢄꢁvꢂꢅꢆꢂꢅꢇ  
28 VoLt inpꢈt – 65 Wꢉtt  
Features  
Parallel operation with current share,  
up to 3 units (148 watts)  
•ꢀ -55° to +125°C operation  
MODELS  
VDc Ou t P u t  
•ꢀ 16 to 40 VDC input  
•ꢀ 50 V for 120 ms transient protection  
•ꢀ Fully isolated, magnetic feedback  
•ꢀ Fixed high frequency switching  
s i n g l e  
D u a l  
±5  
±12  
±15  
3.3  
5
12  
15  
28  
•ꢀ Remote sense or output trim on  
single output models  
Other output voltages  
available upon request,  
including 2 V, 8 V and  
54 V single.  
•ꢀ Inhibit function  
•ꢀ Sync in and Sync Out  
•ꢀ Indefinite short circuit protection  
•ꢀ High power density, 87% efficiency  
description  
in h i b i t  
The MFL Series™ 28-volt DC/DC converters are rated up to 65  
watts of output power over a -55°C to +125°C temperature range  
with a 28 VDC nominal input. On dual output models up to 70%  
of the rated output power can be drawn from either the positive  
or negative output. Current sharing allows the units to be paral-  
leled for total power of up to 148 watts. The welded, hermetically  
sealed package is only 3.005 x 1.505 x 0.400 inches, giving  
the series an overall power density of up to 43 watts per cubic  
inch. The converters are offered with standard screening, “ES”  
screening, or fully compliant to “883” MIL-PRF-38534 Class H  
screening. Standard microcircuit drawings (SMD) are available.  
The MFL Series converters have two inhibit terminals (INH1 and  
INH2) that can be used to disable power conversion, resulting in  
a very low quiescent input current and no generation of switching  
noise. A logic low (<0.8 volts) is required to inhibit the converter  
between INH1 (pin 4) and Input Common (pin 2). A logic low  
(<0.5 volts) is required to inhibit the converter between INH2 (pin  
12) and Output Common (pin 8). The application of intermediate  
voltages to these pins (1.5 to 10.5 volts) should be avoided.  
sy n c  
Converters may be synced to an external clock (525 to 675 kHz)  
or to one another by using the sync in or out pins. The nominal  
free-run switching frequency is 600 kHz (see Application Note on  
Inhibit and Synchronization).  
De s i g n Fe a t u r e s  
The MFL Series converters are switching regulators that use a  
quasi-square wave, single ended forward converter design with a  
constant switching frequency of 600 kHz.  
cu r r e n t a n D Pa r a l l e l OP e r a t i O n  
Multiple MFL converters may be used in parallel to drive a  
common load (see Figure 2). In this mode of operation the load  
current is shared by two or three MFL converters. In current  
sharing mode, one MFL converter is designated as a master.  
The SLAVE pin (pin 11) of the master is left unconnected and  
the MSTR/INH2 pin (pin 12) of the master is connected to the  
SLAVE pin (pin 11) of the slave units. The units designated as  
slaves have the MSTR/INH2 pin (pin 12) connected to the SNS  
RTN pin (pin 9). Figure 2 shows the typical setup for two or  
three units in parallel. Note that synchronizing the units together  
(though shown in the figure) is not required for current sharing  
operation. A second slave unit may be placed in parallel with a  
master and slave; this requires the TRI pin (pin 3) of the master  
unit to be connected to the SNS RTN pin (pin 9).  
Isolation between input and output circuits is provided with a  
transformer in the forward path and a wide bandwidth magnetic  
coupling in the feedback control loop. The MFL uses a unique  
dual loop feedback technique that controls output current with  
an inner feedback loop and an output voltage with a cascaded  
voltage mode feedback loop.  
The additional secondary current mode feedback loop improves  
transient response in a manner similar to primary current mode  
control and allows for ease of paralleling, but without the cost  
and complexity.  
The constant frequency, pulse-width modulated converters use a  
quasi-square wave single-ended forward design. Tight load regu-  
lation is achieved through a wide-bandwidth magnetic feedback  
circuit. The output on single MFL models can be trimmed (see  
Figure 1 for voltage changes with different resistor values).  
When paralleled, 76% of the total combined power ratings of the  
MFL converters are available at the load. Overload and short  
circuit performance are not adversely affected during parallel  
operation.  
Crane Aerospace & Electronics  
Page 1 of 13  
MFL Rev E - 20101026  
Electronics Group (Interpoint Brand)  
POꢀBoxꢀ97005ꢀꢀ•ꢀꢀRedmondꢀWAꢀ98073-9705  
425.882.3100ꢀꢀꢀ•ꢀꢀpower@crane-eg.com  
www.craneae.com/interpoint  

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