参数资料
型号: LSM-0.8/10-D3B
元件分类: 电源模块
英文描述: 1-OUTPUT 8 W DC-DC REG PWR SUPPLY MODULE
封装: SMT-5
文件页数: 6/12页
文件大小: 619K
代理商: LSM-0.8/10-D3B
LSM-10A D3 Models
N O N - I S O L A T E D , 8 - 2 5 W S M T D C / D C C O N V E R T E R S
3
Input
Input Voltage Range
4.5 to 5.5 Volts (5V nominal)
Input Current:
Normal Operating Conditions
See Ordering Guide
Inrush Transient
0.01A2sec
Standby/Off Mode
8mA
Output Short-Circuit Condition
110mA average
Input Reected Ripple Current
10mAp-p
Input Filter Type
Capacitive (44F)
Overvoltage Protection
None
Reverse-Polarity Protection
None
Undervoltage Shutdown
None
On/Off Control
On = open (internal pull-up to +VIN)
Off = 0 to +0.8V (1ma max.)
Output
VOUT Accuracy (50% load)
±1% maximum
Minimum Loading
No load
Maximum Capacitive Load
1000F (low ESR, OSCON)
VOUT Trim Range
±10% (0.8V not trimmable)
Ripple/Noise (20MHz BW)
See Ordering Guide
Total Accuracy
3% over line/load temperature
Efciency
See Ordering Guide
Overcurrent Detection and Short-Circuit Protection:
Current-Limiting Detection Point
17 (13-23.5) Amps
Short-Circuit Detection Point
98% of VOUT set
SC Protection Technique
Hiccup with auto recovery
Short-Circuit Current
600mA average
Dynamic Characteristics
Transient Response (50% load step)
100sec to ±2% of nal value
Start-Up Time:
VIN to VOUT
7msec
On/Off to VOUT
6msec
Switching Frequency:
300kHz (+40/–50kHz)
Environmental
Calculated MTBF
2.3-1.8 million hours (1VOUT to 5VOUT)
Operating Temperature: (Ambient)
Without Derating (Natural convection) –40 to +65/71°C (model dependent)
With Derating
See Derating Curves
Thermal Shutdown
+115°C (110 to 125°C)
Physical
Dimensions
1.3" x 0.53" x 0.34" (33.02 x 13.46 x 8.64 mm)
Pin Dimensions/Material
0.112"x 0.062" (2.84 x 1.57mm) rectangular
copper with gold plate over nickel underplate
Weight
0.28 ounces (7.8g)
Flamability Rating
UL94V-0
Performance/Functional Specications
Typical @ TA = +25°C under nominal line voltage and full-load conditions unless noted.
All models are tested and specied with external 22F tantalum input and output capacitors.
These capacitors are necessary to accommodate our test equipment and may not be
required to achieve specied performance in your applications. All models are stable and
regulate within spec under no-load conditions.
See Technical Notes and Performance Curves for details.
The On/Off Control (pin 1) is designed to be driven with open-collector logic or the appli-
cation of appropriate voltages (referenced to Common, pin 3). Applying a voltage to On/Off
Control when no input voltage is applied to the converter may cause permanent damage.
Output noise may be further reduced with the installation of additional external output
ltering. See I/O Filtering and Noise Reduction.
MTBF’s are calculated using Telcordia SR-332(Bellcore), ground xed, TA = +25°C, full
power, natural convection, +67°C pcb temperature.
T E C H N I C A L
N O T E S
Input Voltage:
Continuous or transient
6 Volts
On/Off Control (Pin 1)
+VIN
Input Reverse-Polarity Protection
None
Output Overvoltage Protection
None
Output Current
Current limited. Devices can
withstand sustained output short
circuits without damage.
Storage Temperature
–40 to +125°C
Lead Temperature (soldering, 10 sec.)
See Reow Solder Prole
These are stress ratings. Exposure of devices to any of these conditions may adversely
affect long-term reliability. Proper operation under conditions other than those listed in the
Performance/Functional Specications Table is not implied.
Absolute Maximum Ratings
I/O Filtering and Noise Reduction
All models in the LSM D3 Series are tested and specied with external
22F tantalum input and output capacitors. These capacitors are necessary
to accommodate our test equipment and may not be required to achieve
desired performance in your application. The LSM D3's are designed with
high-quality, high-performance internal I/O caps, and will operate within spec
in most applications with no additional external components.
In particular, the LSM D3's input capacitors are specied for low ESR
and are fully rated to handle the units' input ripple currents. Similarly, the
internal output capacitors are specied for low ESR and full-range frequency
response. As shown in the Performance Curves, removal of the external 22F
tantalum output caps has minimal effect on output noise.
In critical applications, input/output ripple/noise may be further reduced using
ltering techniques, the simplest being the installation of external I/O caps.
External input capacitors serve primarily as energy-storage devices. They
minimize high-frequency variations in input voltage (usually caused by IR
drops in conductors leading to the DC/DC) as the switching converter draws
pulses of current. Input capacitors should be selected for bulk capacitance (at
appropriate frequencies), low ESR, and high rms-ripple-current ratings. The
switching nature of modern DC/DC's requires that the dc input voltage
source have low ac impedance at the frequencies of interest. Highly inductive
source impedances can greatly affect system stability.Your specic system
conguration may necessitate additional considerations.
CIN
VIN
CBUS
LBUS
CIN = 33F, ESR < 700m
@ 100kHz
CBUS = 220F, ESR < 100m
@ 100kHz
LBUS = 12H
2
3
+INPUT
COMMON
CURRENT
PROBE
TO
OSCILLOSCOPE
+
Figure 2. Measuring Input Ripple Current
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