首页 > 器件类别 > 电源/电源管理 > DC-DC芯片

LM2595T-5.0

可输出电流:1A 开关工作频率:150kHz 输出类型:Fixed 输出电压的路数:1 功能类型:Step-Down 输出配置:Positive

器件类别:电源/电源管理    DC-DC芯片   

厂商名称:华冠(HGSEMI)

厂商官网:http://www.hgsemi.net/

下载文档
器件参数
参数名称
属性值
输出电压(最小值/固定)
5V
可输出电流
1A
开关工作频率
150kHz
输出类型
Fixed
输出电压的路数
1
最小输入电压
4.5V
最大输入电压
40V
电源拓扑结构
Buck
同步整流与否
No
功能类型
Step-Down
输出配置
Positive
文档预览
LM2595-XX
SIMPLE SWITCHER
®
Power Converter 150 kHz
1A Step-Down Voltage Regulator
General Description
The LM2595 series of regulators are monolithic integrated
circuits that provide all the active functions for a step-down
(buck) switching regulator, capable of driving a 1A load with
excellent line and load regulation. These devices are avail-
able in fixed output voltages of 3.3V, 5V, 12V, and an adjust-
able output version.
Requiring a minimum number of external components, these
regulators are simple to use and include internal frequency
compensation
, and a fixed-frequency oscillator.
The LM2595 series operates at a switching frequency of
150 kHz thus allowing smaller sized filter components than
what would be needed with lower frequency switching regu-
lators. Available in a standard 5-lead TO-220 package with
several different lead bend options, and a 5-lead TO-263
surface mount package. Typically, for output voltages less
than 12V, and ambient temperatures less than 50˚C, no heat
sink is required.
A standard series of inductors are available from several dif-
ferent manufacturers optimized for use with the LM2595 se-
ries. This feature greatly simplifies the design of
switch-mode power supplies.
Other features include a guaranteed
±
4% tolerance on out-
put voltage under specified input voltage and output load
conditions, and
±
15% on the oscillator frequency. External
shutdown is included, featuring typically 85 µA stand-by cur-
rent. Self protection features include a two stage frequency
reducing current limit for the output switch and an over tem-
perature shutdown for complete protection under fault condi-
tions.
Features
n
3.3V, 5V, 12V, and adjustable output versions
n
Adjustable version output voltage range, 1.2V to 37V
±
4% max over line and load conditions
n
Available in TO-220 and TO-263 (surface mount)
packages
n
Guaranteed 1A output load current
n
Input voltage range up to 40V
n
Requires only 4 external components
n
Excellent line and load regulation specifications
n
150 kHz fixed frequency internal oscillator
n
TTL shutdown capability
n
Low power standby mode, I
Q
typically 85 µA
n
High efficiency
n
Uses readily available standard inductors
n
Thermal shutdown and current limit protection
Applications
n
n
n
n
Simple high-efficiency step-down (buck) regulator
Efficient pre-regulator for linear regulators
On-card switching regulators
Positive to negative converter
Note:
Patent Number 5,382,918.
Typical Application
(Fixed Output Voltage Versions)
DS012565-1
HTTP://WWW.HGSEMI.NET
1
2018 JUN
LM2595-XX
Connection Diagrams and Ordering Information
Bent and Staggered Leads, Through Hole Package
5–Lead TO-220 (T)
Surface Mount Package
5-Lead TO-263 (S)
DS012565-2
Order Number LM2595T-3.3, LM2595T-5.0,
LM2595T-12 or LM2595T-ADJ
See NS Package Number T05D
DS012565-3
Order Number LM2595S-3.3, LM2595S-5.0,
LM2595S-12 or LM2595S-ADJ
See NS Package Number TS5B
HTTP://WWW.HGSEMI.NET
2
2018 JUN
LM2595-XX
Absolute Maximum Ratings
(Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Maximum Supply Voltage
ON /OFF Pin Input Voltage
Feedback Pin Voltage
Output Voltage to Ground
(Steady State)
Power Dissipation
Storage Temperature Range
ESD Susceptibility
45V
−0.3
V
+25V
−0.3
V
+25V
−1V
Internally limited
−65˚C to +150˚C
Human Body Model (Note 2)
Lead Temperature
S Package
Vapor Phase (60 sec.)
Infrared (10 sec.)
T Package (Soldering, 10 sec.)
Maximum Junction Temperature
2 kV
+215˚C
+245˚C
+260˚C
+150˚C
Operating Conditions
Temperature Range
Supply Voltage
−40˚C
T
J
+125˚C
4.5V to 40V
LM2595-3.3
Electrical Characteristics
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Symbol
Parameter
Conditions
Typ
(Note 3)
SYSTEM PARAMETERS
(Note 5) Test Circuit
Figure 1
V
OUT
Output Voltage
4.75V
V
IN
40V, 0.1A
I
LOAD
1A
3.3
3.168/3.135
3.432/3.465
η
Efficiency
V
IN
= 12V, I
LOAD
= 1A
78
V
V(min)
V(max)
%
LM2595-3.3
Limit
(Note 4)
Units
(Limits)
LM2595-5.0
Electrical Characteristics
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Symbol
Parameter
Conditions
Typ
(Note 3)
SYSTEM PARAMETERS
(Note 5) Test Circuit
Figure 1
V
OUT
Output Voltage
7V
V
IN
40V, 0.1A
I
LOAD
1A
5.0
4.800/4.750
5.200/5.250
η
Efficiency
V
IN
= 12V, I
LOAD
= 1A
82
V
V(min)
V(max)
%
LM2595-5.0
Limit
(Note 4)
Units
(Limits)
LM2595-12
Electrical Characteristics
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Symbol
Parameter
Conditions
Typ
(Note 3)
SYSTEM PARAMETERS
(Note 5) Test Circuit
Figure 1
V
OUT
Output Voltage
15V
V
IN
40V, 0.1A
I
LOAD
1A
12.0
11.52/11.40
12.48/12.60
η
Efficiency
V
IN
= 25V, I
LOAD
= 1A
90
V
V(min)
V(max)
%
LM2595-12
Limit
(Note 4)
Units
(Limits)
HTTP://WWW.HGSEMI.NET
3
2018 JUN
LM2595-XX
LM2595-ADJ
Electrical Characteristics
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Symbol
Parameter
Conditions
Typ
(Note 3)
SYSTEM PARAMETERS
(Note 5) Test Circuit
Figure 1
V
FB
Feedback Voltage
4.5V
V
IN
40V, 0.1A
I
LOAD
1A
V
OUT
programmed for 3V. Circuit of
Figure 1
η
Efficiency
V
IN
= 12V, V
OUT
= 3V, I
LOAD
= 1A
78
1.230
1.193/1.180
1.267/1.280
V
V(min)
V(max)
%
LM2595-ADJ
Limit
(Note 4)
Units
(Limits)
All Output Voltage Versions
Electrical Characteristics
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Unless otherwise specified, V
IN
= 12V for the 3.3V, 5V, and Adjustable version and V
IN
= 24V for the 12V ver-
sion. I
LOAD
= 200 mA.
Symbol
Parameter
Conditions
LM2595-XX
Typ
(Note 3)
DEVICE PARAMETERS
I
b
f
O
Feedback Bias Current
Oscillator Frequency
Adjustable Version Only,V
FB
= 1.3V
(Note 6)
10
50/100
150
127/110
173/173
V
SAT
DC
I
CL
Saturation Voltage
Max Duty Cycle (ON)
Min Duty Cycle (OFF)
Current Limit
I
OUT
= 1A (Notes 7, 8)
1
1.2/1.3
(Note 8)
(Note 9)
Peak Current (Notes 7, 8)
100
0
1.5
1.2/1.15
2.4/2.6
I
L
Output Leakage Current
Output = 0V
(Notes 7, 9) and (Note 10)
Output = −1V
(Note 9)
ON/OFF pin = 5V (OFF)
(Note 10)
50
2
15
I
Q
I
STBY
θ
JC
θ
JA
θ
JA
θ
JA
θ
JA
ON /OFF Pin Logic Input
V
IH
V
IL
Threshold Voltage
Low (Regulator ON)
High (Regulator OFF)
Quiescent Current
Standby Quiescent
Current
Thermal Resistance
TO-220 or TO-263 Package, Junction to Case
TO-220 Package, Junction to Ambient (Note 11)
TO-263 Package, Junction to Ambient (Note 12)
TO-263 Package, Junction to Ambient (Note 13)
TO-263 Package, Junction to Ambient (Note 14)
2
50
50
30
20
1.3
0.6
2.0
5
10
85
200/250
A
A(min)
A(max)
µA(max)
mA
mA(max)
mA
mA(max)
µA
µA(max)
˚C/W
˚C/W
˚C/W
˚C/W
˚C/W
V
V(max)
V(min)
nA
nA (max)
kHz
kHz(min)
kHz(max)
V
V(max)
%
Limit
(Note 4)
Units
(Limits)
ON/OFF CONTROL
Test Circuit
Figure 1
HTTP://WWW.HGSEMI.NET
4
2018 JUN
LM2595-XX
All Output Voltage Versions
Electrical Characteristics
(Continued)
Specifications with standard type face are for T
J
= 25˚C, and those with
boldface type
apply over
full Operating Tempera-
ture Range.
Unless otherwise specified, V
IN
= 12V for the 3.3V, 5V, and Adjustable version and V
IN
= 24V for the 12V ver-
sion. I
LOAD
= 200 mA.
Symbol
Parameter
Conditions
LM2595-XX
Typ
(Note 3)
ON/OFF CONTROL
Test Circuit
Figure 1
I
H
I
L
ON/OFF Pin
Input Current
V
LOGIC
= 2.5V (Regulator OFF)
V
LOGIC
= 0.5V (Regulator ON)
5
15
0.02
5
µA
µA(max)
µA
µA(max)
Limit
(Note 4)
Units
(Limits)
Note 1:
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is in-
tended to be functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics.
Note 2:
The human body model is a 100 pF capacitor discharged through a 1.5k resistor into each pin.
Note 3:
Typical numbers are at 25˚C and represent the most likely norm.
Note 4:
All limits guaranteed at room temperature (standard type face) and at temperature extremes (bold type face). All room temperature limits are 100% produc-
tion tested. All limits at temperature extremes are guaranteed via correlation using standard Statistical Quality Control (SQC) methods. All limits are used to calculate
Average Outgoing Quality Level (AOQL).
Note 5:
External components such as the catch diode, inductor, input and output capacitors, and voltage programming resistors can affect switching regulator sys-
tem performance. When the LM2595 is used as shown in the
Figure 1
test circuit, system performance will be as shown in system parameters section of Electrical
Characteristics.
Note 6:
The switching frequency is reduced when the second stage current limit is activated. The amount of reduction is determined by the severity of current over-
load.
Note 7:
No diode, inductor or capacitor connected to output pin.
Note 8:
Feedback pin removed from output and connected to 0V to force the output transistor switch ON.
Note 9:
Feedback pin removed from output and connected to 12V for the 3.3V, 5V, and the ADJ. version, and 15V for the 12V version, to force the output transistor
switch OFF.
Note 10:
V
IN
= 40V.
Note 11:
Junction to ambient thermal resistance (no external heat sink) for the TO-220 package mounted vertically, with the leads soldered to a printed circuit board
with (1 oz.) copper area of approximately 1 in
2
.
Note 12:
Junction to ambient thermal resistance with the TO-263 package tab soldered to a single printed circuit board with 0.5 in
2
of (1 oz.) copper area.
Note 13:
Junction to ambient thermal resistance with the TO-263 package tab soldered to a single sided printed circuit board with 2.5 in
2
of (1 oz.) copper area.
Note 14:
Junction to ambient thermal resistance with the TO-263 package tab soldered to a double sided printed circuit board with 3 in
2
of (1 oz.) copper area on
the LM2595S side of the board, and approximately 16 in
2
of copper on the other side of the p-c board. See Application Information in this data sheet and the thermal
model in
Switchers Made Simple
®
version 4.3 software.
Typical Performance Characteristics
Normalized
Output Voltage
Line Regulation
(Circuit of
Figure 1)
Efficiency
DS012565-12
DS012565-11
DS012565-13
HTTP://WWW.HGSEMI.NET
5
2018 JUN
查看更多>
关键时刻,怎能没电!世界首款无电池手机诞生!
现代生活中,手机逐渐成为人们生活不可或缺的一个东西,然而,这个东西他随时都可能有没电危机!!关键时刻怎能没电!现在最新消息,据外媒报道,美国华盛顿大学的研究人员最近发明了一款不需要充电的无电池手机,能从无线信号和环境光线中获取能量,从而实现续航一辈子的梦想!下面来看看这款传说不用电池的手机传说中,这款设备仅需几毫瓦的电量就能打接电话,它的电量来源于光或者是周围的无线信号。该团队在演示中展示了这款设备的原型机,尽管它真的很“原型”,但是它真的能通过Skype打电话,而且还能接受到基...
木犯001号 电源技术
MP2459相关电路求解
最近用到MP2459,Datasheet里写的使能脚上拉有效,想问一下它给的例子里的R4的作用是什么?直接接R5100k可以吗,之间的区别是什么?MP2459相关电路求解一开始图没传上去 从该芯片datasheet看,4脚(EN)可以接一支电阻到输入正端,此时上电即自动使能。CcKk发表于2019-7-1517:52一开始图没传上去芯片规格书写了EN脚的极限电压是-0.3~+6V,而Vin的电压可达到+55V,所以这个R4是用于Vin电压较...
CcKk 电源技术
新旧电源管理IC 大PK,大家有什么问题可以写下来
应该说从2003年以来,电源控制IC展示出了全新的面貌.新的隔离控制IC达100余款,非隔离DC/DC达几百款.但是看看我们国内杂志介绍的技术还是老面孔.工程师选用的还是二十年前的老式IC,各位看看你们的手机换了几代了!我在这里给出几个对比的例子,看看现在的技术进步.1,PFC控制,UCC28019(ICE1PCS02)取代UC3854.先看看UCC28019组成的PFC电路,只调节一个放大器的补偿网络即可.再看看UC3854组成的PFC电路,要调节电压放大器电流放大...
七月七日晴 电源技术
提交创意,免费体验MPS 产品或评估板,可赢取双肩包、蓝牙无线耳机及万元现金!
想体验MPS产品或评估板?提交创意即有机会免费体验,更可赢取双肩包、蓝牙无线耳机及万元现金!【活动时间】即日起3月6日【参与方式】1.从下方【推荐芯片】列表中选择感兴趣的芯片,组织创意;2.进入MPS论坛电池管理板块,以【MPS探索营+创意征集】+创意名称为主题,发帖提交创意。(点击查看如何发帖);【发帖内容】创意名称...
EEWORLD社区 电源技术
芯片多个VCC和GND的原因
见过很多芯片都有多个VCC和GND管脚,并且内部是连通的,为什么引出这么多管脚作为VCC和GND芯片多个VCC和GND的原因你说的这些芯片应该是电源芯片和大规模集成电路吧这类型的芯片一个是为了能让管脚流过更多的电流和起到更好散热的作用,我用过的一些大功率电源芯片就是这样的 1、芯片里都是一个个模块的,每块功能附近都会有一组或是几组电源地;比如IO、SRAM、CPU、晶振、PLL、PHY等等,离该模块比较近的脚位就会有一组或几组电源地,组内的电源地是互连的;模块间的电源地不一定是互连的。...
jiuanluohui 电源技术
LLC 谐振变换器拓扑构成与工作原理分析
点此下载完整内容:https://www.eeworld.com.cn/zt/Qorvo_Power/details/7328内容节选:........点此下载完整内容:https://www.eeworld.com.cn/zt/Qorvo_Power/details/7328LLC谐振变换器拓扑构成与工作原理分析...
木犯001号 电源技术