参数资料
型号: YNS05S10-0G
厂商: Power-One
文件页数: 6/25页
文件大小: 0K
描述: CONVERT DC/DC 28W SMD
标准包装: 310
系列: *
YNS05S10 DC-DC Converter Data Sheet
3.0-5.5 VDC Input; 0.7525-3.63 VDC Programmable @ 10 A
open-collector (open-drain) transistor can be used to
drive ON/OFF pin. This device must be capable of:
– sinking up to 1.2 mA at a low level voltage of
? 0.8 V
– sourcing up to 0.25 mA at a high logic level of
2.3 V - 5.5 V.
When using open-collector (open-drain) transistor
with a negative logic option, add a pull-up resistor
(R*) to Vin as shown in Fig. C:
– 20 K, if the minimum Vin is 4.5 V
– 10 K, if the minimum Vin is 3.0 V
– 5 K, if the undervoltage shutdown at 2.05 - 2.15 V
is required.
Remote Sense (Pin 2)
The remote sense feature of the converter
compensates for voltage drops occurring only
When using remote sense, the output voltage at the
converter can be increased up to 0.5 V above the
nominal rating in order to maintain the required
voltage across the load. Therefore, the designer
must, if necessary, decrease the maximum current
(originally obtained from the derating curves) by the
same percentage to ensure the converter’s actual
output power remains at or below the maximum
allowable output power.
Output Voltage Programming (Pin 3)
The output voltage can be programmed from
0.7525 to 3.63 VDC by connecting an external
resistor between TRIM pin (Pin 3) and GND pin (Pin
5); see Fig. E. Note that when a trim resistor is not
connected, the output voltage of the converter is
0.7525 VDC.
between Vout pin (Pin 4) of the converter and the
load. The SENSE (Pin 2) pin should be connected at
Vin
Y-Series
Converter
SENSE
the load or at the point where regulation is required
(see Fig. D). There is no sense feature on the output
GND return pin, where the solid ground plane should
provide a low voltage drop.
Vin
ON/OFF
GND
(Top View)
Vout
TRIM
Rload
R TRIM
Vin
Y-Series
Converter
SENSE
Vin
ON/OFF
(Top View)
Vout
Rw
Rload
Fig. E: Configuration for programming output voltage.
A trim resistor, R TRIM , for a desired output voltage
can be calculated using the following equation:
GND
TRIM
R T RIM ?
21 . 07
(V O - REQ - 0.7525)
? 5 . 11
[k ? ]
Fig. D: Remote sense circuit configuration.
Rw
where,
If remote sensing is not required, the SENSE pin
must be connected to the Vout pin (Pin 4) to ensure
the converter will regulate at the specified output
voltage. If these connections are not made, the
converter will deliver an output voltage that is slightly
higher than the specified value.
Because the sense lead carries minimal current,
large traces on the end-user board are not required.
However, sense trace should be located close to a
ground plane to minimize system noise and ensure
optimum performance.
When utilizing the remote sense feature, care must
be taken not to exceed the maximum allowable
output power capability of the converter, which is
equal to the product of the nominal output voltage
and the allowable output current for the given
conditions.
R TRIM ? Required value of trim resistor [k ? ]
V O ? REQ ? Desired (trimmed) output voltage [V]
Note that the tolerance of a trim resistor directly
affects the output voltage tolerance. It is
recommended to use standard 1% or 0.5% resistors;
for tighter tolerance, two resistors in parallel are
recommended rather than one standard value from
Table 1.
Ground pin of the trim resistor should be connected
directly to the converter GND pin (Pin 5) with no
voltage drop in between. Table 1 provides the trim
resistor values for popular output voltages.
MCD10193 Rev. 1.0, 21-Jun-10
Page 6 of 25
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