参数资料
型号: MAX5960LEVCMAXQU+
厂商: Maxim Integrated Products
文件页数: 4/24页
文件大小: 0K
描述: KIT EVAL FOR MAX5960
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 1
主要目的: 电源管理,热交换控制器
已用 IC / 零件: MAX5959A,MAX5959L,MAX5960A,MAX5960L
已供物品:
MAX5960L Evaluation Kit/
Evaluation System
MAX5960L Hardware Only Configuration
Software and Hardware Quick Start
1)
2)
Verify that shunts are installed on jumpers JU1,
JU2, JU3, and JU4 ( PRES-DET_ ).
Verify that shunts are installed on pins 1 and 2 of
jumpers JU5, JU6, JU7, JU8, JU11, JU12, JU13,
and JU14 (local switch control).
The MAX5960L EV kit is fully assembled and tested.
Follow these steps to verify board operation. Do not
turn on the power supplies until all connections are
completed.
Required Equipment
3)
4)
5)
Verify that a shunt is not installed on jumpers JU9,
JU10, JU15, and JU16 (MRL_).
Utilizing short 25A-rated banana leads (< 12in
long) connect the 12V DC power supply to the
VIN1 banana jack. Utilizing short 25A-rated banana
leads (< 12in long) connect the supply ground to
the GND banana jack.
Utilizing short 25A-rated banana leads (< 12in
long) connect the 3.3V DC power supply to the
VIN2 banana jack. Utilizing short 25A-rated banana
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One each of the following DC power supplies:
12V, 25A
3.3V, 20A (used to power the main 3.3V and
3.3VAUX inputs)
Maxim MAX5960L EV kit and CMAXQUSB interface
board (USB cable included)
Windows 98SE/2000/XP computer with a spare USB
port
Three voltmeters for confirming output voltages
leads (< 12in long) connect the supply ground to
the GND banana jack.
Note: In the following sections, software-related items are
identified by bolding. Text in bold refers to items directly
6)
Connect the 3.3V DC power supply to the VIN3
banana jack with a short banana lead.
from the EV kit software. Text in bold and underlined
refers to items from the Windows operating system.
7)
8)
9)
Connect a voltmeter to the 12VA pad and GND.
Connect a voltmeter to the 3.3VA pad and GND.
Connect a voltmeter to the 3.3VAUXA pad and GND.
Set switches SW5, SW7, SW9, SW11 (ON_), and
SW6, SW8, SW10, SW12 (AUXON_) to the OFF
position.
Turn on both power supplies in any sequence.
1)
2)
MAX5960L Software and Hardware Configuration
Visit www.maxim-ic.com/evkitsoftware to download
the latest version of the EV kit software,
5960LRxx.ZIP. Save the EV kit software to a tempo-
rary folder and uncompress the ZIP file.
Install the EV kit software on your computer by run-
ning the INSTALL.EXE program inside the temporary
10) Set switches SW5 (ONA) and SW6 (AUXONA) to
the ON position.
11) Verify that the voltage at channel A pad is as
shown below:
12VA = 12V
3.3VA = 3.3V
3.3VAUXA = 3.3V
12) Sliding switches SW5 and SW6 to the OFF position
will disable the channel A main or auxiliary outputs
on the MAX5960L EV kit.
13) For evaluating channels B, C, and D, use analo-
gous actions on steps 10 through 12 above for the
respective channel switch setting and output volt-
age reading. See the Jumper and Switch Selection
section for more information on configuring the
respective channel.
14) Test points are provided to observe the MOSFET’s
gate voltage respectively with an oscilloscope.
3)
4)
5)
6)
7)
8)
folder. The program files are copied and icons are
created in the Windows Start | Programs menu.
Verify that no shunts are installed on jumpers JU1,
JU2, JU3, and JU4 ( PRES-DET_ ).
Verify that shunts are installed on pins 2 and 3 of
jumpers JU5, JU6, JU7, JU8, JU11, JU12, JU13,
and JU14 (computer control).
Verify that a shunt is not installed on jumpers JU9,
JU10, JU15, and JU16 (MRL_).
Utilizing short 25A-rated banana leads (< 12in
long) connect the 12V DC power supply to the
VIN1 banana jack. Utilizing short 25A-rated banana
leads (< 12in long) connect the supply ground to
the GND banana jack.
Utilizing short 25A-rated banana leads (< 12in
long) connect the 3.3V DC power supply to the
VIN2 banana jack. Utilizing short 25A-rated banana
leads (< 12in long) connect the supply ground to
the GND banana jack.
Connect the 3.3V DC power supply to the VIN3
banana jack with a short banana lead. Do not turn
on the power supplies.
4
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MAX5960LEVCMAXQU+ 功能描述:热插拔功率分布 MAX5959A/L/60A/L Eval System RoHS:否 制造商:Texas Instruments 产品:Controllers & Switches 电流限制: 电源电压-最大:7 V 电源电压-最小:- 0.3 V 工作温度范围: 功率耗散: 安装风格:SMD/SMT 封装 / 箱体:MSOP-8 封装:Tube
MAX5960LEVKIT+ 功能描述:热插拔功率分布 MAX5959A/L/60A/L Eval System RoHS:否 制造商:Texas Instruments 产品:Controllers & Switches 电流限制: 电源电压-最大:7 V 电源电压-最小:- 0.3 V 工作温度范围: 功率耗散: 安装风格:SMD/SMT 封装 / 箱体:MSOP-8 封装:Tube
MAX5961ETM+ 功能描述:热插拔功率分布 Quad Hot-Swap Controller RoHS:否 制造商:Texas Instruments 产品:Controllers & Switches 电流限制: 电源电压-最大:7 V 电源电压-最小:- 0.3 V 工作温度范围: 功率耗散: 安装风格:SMD/SMT 封装 / 箱体:MSOP-8 封装:Tube
MAX5961ETM+T 功能描述:热插拔功率分布 Quad Hot-Swap Controller RoHS:否 制造商:Texas Instruments 产品:Controllers & Switches 电流限制: 电源电压-最大:7 V 电源电压-最小:- 0.3 V 工作温度范围: 功率耗散: 安装风格:SMD/SMT 封装 / 箱体:MSOP-8 封装:Tube
MAX5961EVKIT+ 功能描述:电源管理IC开发工具 MAX5961 Eval Kit RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V