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LSN2-T/16N-C 参数 Datasheet PDF下载

LSN2-T/16N-C图片预览
型号: LSN2-T/16N-C
PDF下载: 下载PDF文件 查看货源
内容描述: 非隔离, DOSA -SIP ,第6 /10 / 16A可选择输出DC / DC转换器 [Non-isolated, DOSA-SIP, 6/10/16A Selectable-Output DC/DC Converters]
分类和应用: 转换器
文件页数/大小: 14 页 / 219 K
品牌: CANDD [ C&D TECHNOLOGIES ]
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®
LSN2 Series  
Non-isolated, DOSA-SIP, 6/10/16A Selectable-Output DC/DC Converters  
D12 Models Resistor Trim Equation:  
The LSN2 series includes a pre-bias startup mode to prevent these initializa-  
tion problems. Essentially, the converter acts as a simple buck converter until  
the output reaches its set point voltage at which time it converts to a synchro-  
nous rectifier design. This feature is variously called “monotonic” because  
the voltage does not decay (from low side MOSFET shorting) or produce a  
negative transient once the input power is applied and the startup sequence  
begins.  
10500  
_____________  
RTRIM (Ω) =  
–1000  
VO – 0.7525  
VOUT  
0.7525V 1.0V  
1.2V  
1.5V  
1.8V  
2.5V  
3.3V  
5V  
Open 41.424 22.46 13.05 9.024 5.009 3.122 1.472  
RTRIM (kΩ)  
Don’t Use Pre-Biasing and Sequencing Together  
Voltage Trim  
Normally, you would use startup sequencing on multiple DC/DC’s to solve the  
Pre-Bias problem. By causing all power sources to ramp up together, no one  
source can dominate and force the others to fail to start. For most applica-  
tions, do not use startup sequencing in a Pre-Bias application, especially with  
an external active power source.  
The LSN2 Series may also be trimmed using an external voltage applied  
between the Trim input and Output Common. Be aware that the internal “load”  
impedance looking into trim pin is approximately 5kΩ. Therefore, you may  
have to compensate for this in the source resistance of your external voltage  
reference.  
If you have active source pre-biasing, leave the Sequence input open so that  
the output will step up quickly and safely. A symptom of this condition is  
repeated failed starts. You can further verify this by removing the existing load  
and testing it with a separate passive resistive load which does not exceed full  
current. If the resistive load starts successfully, you may be trying to drive an  
external pre-biased active source.  
Use a low noise DC reference and short leads. Mount the leads close to the  
converter. Consider using a small bypass capacitor (0.1ꢀF ceramic) between  
trim and output common to avoid instability.  
Two different trim equations are used for the W3 and D12 models.  
W3 Models Voltage Trim Equation:  
It may also be possible to use pre-bias and sequencing together if the Pre-  
Bias source is in fact only a small external bypass capacitor slowly charged by  
leakage currents. Test your application to be sure.  
VTRIM (in Volts) = 0.7 –(0.1698 x (VO – 0.7525))  
The LSN2 W3 fixed trim voltages to set the output voltage are:  
Output Adjustments  
The LSN2 series includes a special output voltage trimming feature which  
is fully compatible with competitive units. The output voltage may be varied  
using a single trim resistor from the Trim input to Power Common (pin 4)  
or an external DC trim voltage applied between the Trim input and Power  
Common. The output voltage range for W3 models is 0.75 to 3.3 Volts. For D12  
models, the output range is 0.75 to 5 Volts.  
VOUT (Typ.) 0.7525V  
1.0V  
1.2V  
1.5V  
1.8V  
2.5V  
3.3V  
VTRIM  
Open 0.6928V 0.624V 0.5731V 0.5221V 0.4033V 0.267V  
D12 Models Voltage Trim Equation:  
VTRIM (in Volts) = 0.7 –(0.0667 x (VO – 0.7525))  
The LSN2 D12 fixed trim voltages to set the output voltage are:  
IMPORTANT: On W3 models only, for outputs greater than 3 Volts up to 3.3  
Volts maximum, the input supply must be 4.5 Volts minimum. To retain proper  
regulation, do not exceed the 3.3V output.  
As with other trim adjustments, be sure to use a precision low-tempco resis-  
tor ( 100 ppm/°C) mounted close to the converter with short leads. Also be  
aware that the output voltage accuracy is 2% (typical) therefore you may  
need to vary this resistance slightly to achieve your desired output setting.  
VOUT  
0.7525V 1.0V  
1.2V  
1.5V  
1.8V  
2.5V  
3.3V  
5V  
VTRIM (V)  
Open 0.6835 0.670 0.650 0.630 0.583 0.530 0.4166  
Two different trim equations are used for the W3 and D12 models.  
W3 Models Resistor Trim Equation:  
ꢀ6/54  
42)-  
ꢀ6/54  
42)-  
21070  
_____________  
VO – 0.7525  
RTRIM (Ω) =  
–5110  
The W3 models fixed trim resistors to set the output voltage are:  
n
242)-  
642)-  
VOUT (Typ.) 0.7525V 1.0V  
1.2V  
1.5V  
1.8V  
2.5V  
3.3V  
3.16  
#/--/.  
#/--/.  
Open 80.021 41.973 23.077 15.004  
6.947  
RTRIM (kΩ)  
Figure 6. Trim Connections  
LSN2 Series Page 8 of 14  
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