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SMTR28515TF/HR

产品描述DC-DC Regulated Power Supply Module, 3 Output, 30W, Hybrid, HERMETIC SEALED, MODULE-10
产品类别电源/电源管理    电源电路   
文件大小347KB,共20页
制造商Crane Co.
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SMTR28515TF/HR概述

DC-DC Regulated Power Supply Module, 3 Output, 30W, Hybrid, HERMETIC SEALED, MODULE-10

SMTR28515TF/HR规格参数

参数名称属性值
包装说明DIP, DIP10,1.0,400TB
Reach Compliance Codecompliant
ECCN代码EAR99
其他特性+/-15V ADDITIONAL OUTPUT AVAILABLE
模拟集成电路 - 其他类型DC-DC REGULATED POWER SUPPLY MODULE
最大输入电压40 V
最小输入电压16 V
标称输入电压28 V
JESD-30 代码R-XDMA-P10
JESD-609代码e4
功能数量1
输出次数3
端子数量10
最高工作温度125 °C
最低工作温度-55 °C
最大输出电流4 A
最大输出电压5.15 V
最小输出电压4.85 V
标称输出电压5 V
封装主体材料UNSPECIFIED
封装代码DIP
封装等效代码DIP10,1.0,400TB
封装形状RECTANGULAR
封装形式MICROELECTRONIC ASSEMBLY
认证状态Not Qualified
筛选级别MIL-PRF-38534 Class H
座面最大高度10.42 mm
表面贴装NO
技术HYBRID
温度等级MILITARY
端子面层GOLD
端子形式PIN/PEG
端子节距10.16 mm
端子位置DUAL
总剂量100k Rad(Si) V
最大总功率输出30 W
微调/可调输出YES
Base Number Matches1

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Crane Aerospace & Electronics Power Solutions
SmTR Single, Dual and Triple DC-DC Converters
28 VOLT INPUT – 30 WATT
FEATURES
Single, Dual and Triple models
Qualified to MIL-PRF-38534 Class H and K
Radiation hardness assurance (RHA)
to level R 100 krad(Si)
Transient protection 50 V for 50 ms
Fully isolated, magnetic feedback
Fixed high frequency switching, 600 kHz typical
Input voltage range 16 to 40 VDC
Operating temperature -55° to +125°C
Trim function or remote sense on single output models
Inhibit function
Synchronization function
SINGLE
3.3
5
12
15
VDC O
utput
mODElS
DUAL
±5
±12
±15
Up to 84% efficiency (up to 73% efficiency triple models)
Indefinite short circuit protection
TRIPLE
+5 & ±12
+5 & ±15
DESCRIPTION
The Interpoint™ SMTR Series™ of 28 volt dc-dc converters
offers up to 30 watts of output power from single, dual or
triple output configurations. They operate over the full military
temperature range of -55°C to +125°C with up to 84% efficiency
(up to 73% efficiency triple models). SMTR converters are
packaged in hermetically sealed metal enclosures, making them
ideal for use in military, aerospace and other high reliability
applications.
c
onverter
D
eSign
S
creening
SMTR converters offer screening options to Space Prototype (O),
Class H, or Class K. Radiation tolerant to Radiation Hardness
Assurance (RHA) levels of “-” (O), “P,” or “R,” per MIL-STD-
38534. Interpoint™ model numbers use an “O” in the RHA
designator position to indicate the “-” (dash) Radiation Hardness
Assurance level of MIL-PRF-38534, which is defined as “no
RHA”. See “Table 11: Element Evaluation” on page 19 and
“Table 12: Environmental Screening and RHA Levels” on page
20 for more information.
The SMTR converters are constant frequency, pulse-width
modulated switching regulators which use a quasi-square wave,
single ended, forward converter design. Tight load regulation is
maintained by using a wide bandwidth magnetic feedback and,
on single output models, through use of remote sense. On dual
output models, the positive output is independently regulated and
the negative output is cross regulated through the use of tightly-
coupled magnetics. The triple output dc-dc converter’s
design includes individual regulators on the auxiliary outputs
which provide for no cross regulation error when a minimum
300 mA load is maintained on the main (+5 V) output.
SMTR converters have an internal input filter that helps reduce
the need for external components in normal operation. Use our
SFMC EMI input filter to meet the requirements of MIL-STD-
461C’s CE03. For the lowest noise performance, connection
of the case to input common is recommended. The connection
can be hard-wired or AC coupled with a small ceramic bypass
capacitor. Indefinite short circuit protection and overload
protection are provided by a constant current-limit feature. This
protective system senses current in the converter’s secondary
stage and limits it to approximately 140% of the maximum rated
output current.
Crane Aerospace & Electronics
Power Solutions – Interpoint Products
10301 Willows Rd. NE, Redmond, WA 98052
+1.425.882.3100 • power@crane-eg.com
www.craneae.com/interpoint
SMTR Rev AA - 2013.04.18
The information in this document is a derivative of documents cleared by the Department
of Defense (DoD) Office of Security Review (OSR) for public release. OSR case numbers
09-S-1002 dated March 24, 2009 and 12-S-2048 dated May 29, 2012.
Page 1 of 20

 
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