参数资料
型号: OKR-T/3-W12-C
厂商: Murata Power Solutions Inc
文件页数: 4/18页
文件大小: 0K
描述: CONV DC/DC 15W 12VIN SIP
产品培训模块: Okami Series
产品目录绘图: OKR Series
特色产品: Okami? Series PoL Converters
OKR Series DC/DC Converters
标准包装: 360
系列: Okami™ OKR-T/3
类型: 非隔离(POL)
输出数: 1
电压 - 输入(最小): 4.5V
电压 - 输入(最大): 14V
Voltage - Output 1: 0.59 ~ 6 V
电流 - 输出(最大): 3A
电源(瓦) - 制造商系列: 15W
安装类型: 通孔
封装/外壳: 5-SIP 模块
尺寸/尺寸: 0.41" L x 0.30" W x 0.65" H(10.4mm x 7.6mm x 16.5mm)
包装: 管件
效率: 93%
电源(瓦特)- 最大: 15W
产品目录页面: 2720 (CN2011-ZH PDF)
其它名称: 811-2115-5
OKR-T/3 Series
Adjustable Output 3-Amp SIP-mount DC/DC Converters
Notes
(1) All speci?cations are typical unless noted. General conditions for Speci?cations are +25
deg.C, Vin=nominal, Vout=nominal (no trim installed), full rated load. Adequate air?ow
must be supplied for extended testing under power.
All models are tested and speci?ed with external 1μF and 22 μF paralleled output capaci-
tors and a 22 μF external input capacitor. All capacitors are low ESR types. Caps are
layout dependent These capacitors are necessary to accommodate our test equipment
and may not be required in your applications. All models are stable and regulate within
spec under no-load conditions.
(2) Input Back Ripple Current is tested and speci?ed over a 5 Hz to 20 MHz bandwidth. Input
?ltering is Cin=2 x 100 μF, 100V tantalum, Cbus=1000 μF, 100V electrolytic, Lbus=1 μH.
All caps are low ESR types.
(3) Note that Maximum Power Derating curves indicate an average current at nominal input
voltage. At higher temperatures and/or lower air?ow, the DC/DC converter will tolerate
brief full current outputs if the total RMS current over time does not exceed the Derating
curve. All Derating curves are presented at sea level altitude. Be aware of reduced power
dissipation with increasing altitude.
(4a) Mean Time Before Failure is calculated using the Telcordia (Belcore) SR-332 Method 1,
Case 3, ground ?xed conditions, Tpcboard=+25 ?C, full output load, natural air convec-
tion.
(4b) Mean Time Before Failure is calculated using the MIL-HDBK-217N2 method, ground
benign, +25oC., full output load, natural convection.
(5) The On/Off Control is normally controlled by a switch or open collector or open drain tran-
sistor. But it may also be driven with external logic or by applying appropriate external
voltages which are referenced to Input Common.
(6) Short circuit shutdown begins when the output voltage degrades approximately 2% from
the selected setting.
(7) The outputs are not intended to sink appreciable reverse current.
Trim Connections
Output Voltage Adustment
The output voltage may be adjusted over a limited range by connecting an
external trim resistor (Rtrim) between the Trim pin and Ground. The Rtrim
(8) “Hiccup” overcurrent operation repeatedly attempts to restart the converter with a brief,
full-current output. If the overcurrent condition still exists, the restart current will be
removed and then tried again. This short current pulse prevents overheating and damag-
ing the converter. Once the fault is removed, the converter immediately recovers normal
operation.
(9) Input Fusing: If reverse polarity is accidentally applied to the input, to ensure reverse
input protection with full output load, always connect an external input fast-blow fuse
in series with the +Vin input. Use approximately twice the full input current rating with
nominal input voltage.
(10) Regulation speci?cations describe the deviation as the line input voltage or output load
current is varied from a nominal midpoint value to either extreme.
(11) CAUTION: Since the converter is mounted on the end by its pins, do not subject it to high
vibration, shock or acceleration.
(12) Output current limit and short circuit protection is non-latching. When the overcurrent
fault is removed, the converter will immediately recover.
(13) Do not exceed maximum power speci?cations when adjusting the output trim. All pub-
lished speci?cations are listed at rated nominal output current using published Derating
curves. The maximum power speci?cations indicate brief operation before overcurrent
shutdown occurs. Note particularly that current must be limited at higher output voltage
in order to comply with maximum power requirements.
(14) At zero output current, the output may contain low frequency components which exceed
the ripple speci?cation. The output may be operated inde?nitely with no load.
(15) The input and output are not isolated. They share a single COMMON power and signal
return.
(16) Vin must be 2V or higher than Vout for 3.3 to 6V outputs: Vin >= (2V + Vout)
+V OUT
resistor must be a 1/10 Watt precision metal ?lm type, ±0.5% accuracy or
better with low temperature coef?cient, ±100 ppm/oC. or better. Mount the
resistor close to the converter with very short leads or use a surface mount
Trim
R TRIM
R LOAD
trim resistor.
In the tables below, the calculated resistance is given. Do not exceed the
Ground
speci?ed limits of the output voltage or the converter’s maximum power
rating when applying these resistors. Also, avoid high noise at the Trim
input. However, to prevent instability, you should never connect any capaci-
R TRIM (kΩ) =
1.182
V OUT ? 0.591
tors to Trim.
OKR-T/3-W12
Resistor Trim Equation, OKR-T/3-W12 models:
R TRIM (k ? ) = _____________
Output Voltage
6 V.
5 V.
3.3 V.
2.5 V.
1.8 V.
1.5 V.
1.2 V.
1.0 V.
0.591 V.
Calculated Rtrim (Ω)
218.5
268
436
619
978
1300
1940
2890
∞ (open)
1.182
(V OUT – 0.591)
www.murata-ps.com/support
MDC_OKR-T/3-W12.B02 Page 4 of 18
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