32 Analog & Interface Product Selector Guide Summer 2012 LIN Serial Analyzer (APGDT001) The LIN Se" />
鍙冩暩(sh霉)璩囨枡
鍨嬭櫉锛� MCP603-E/P
寤犲晢锛� Microchip Technology
鏂囦欢闋佹暩(sh霉)锛� 26/36闋�
鏂囦欢澶�?銆�?/td> 0K
鎻忚堪锛� IC OPAMP SNGL 2.7V 8DIP
妯欐簴鍖呰锛� 60
鏀惧ぇ鍣ㄩ鍨嬶細 閫氱敤
闆昏矾鏁�(sh霉)锛� 1
杓稿嚭椤炲瀷锛� 婊挎摵骞�
杞�(zhu菐n)鎻涢€熺巼锛� 2.3 V/µs
澧炵泭甯跺绌嶏細 2.8MHz
闆绘祦 - 杓稿叆鍋忓锛� 1pA
闆诲 - 杓稿叆鍋忕Щ锛� 700µV
闆绘祦 - 闆绘簮锛� 230µA
闆绘祦 - 杓稿嚭 / 閫氶亾锛� 22mA
闆诲 - 闆绘簮锛屽柈璺�/闆欒矾(±)锛� 2.7 V ~ 6 V
宸ヤ綔婧害锛� -40°C ~ 125°C
瀹夎椤炲瀷锛� 閫氬瓟
灏佽/澶栨锛� 8-DIP锛�0.300"锛�7.62mm锛�
渚涙噳(y墨ng)鍟嗚ō(sh猫)鍌欏皝瑁濓細 8-PDIP
鍖呰锛� 绠′欢
鐢�(ch菐n)鍝佺洰閷勯爜闈細 678 (CN2011-ZH PDF)
32 Analog & Interface Product Selector Guide Summer 2012
LIN Serial Analyzer (APGDT001)
The LIN Serial Analyzer development
system enables a Personal Computer
(PC) to communicate with a LIN (Local
Interface Network) bus . The PC program
uses a graphical user interface to enter
and display message frames occurring on the target bus .
USB to UART Converter Evaluation Board
(MCP2200EV-VCP)
The USB to UART Converter Eval board
allows users to store up to 128,000
temperature readings from the MCP9800
sensor to the 24LC1025, Microchip鈥檚
1024Kbit EEPROM . A PIC16F684 MCU communicates
with the sensor and EEPROM . In addition, the PIC MCU
interfaces to a PC using the PICkit 1 Flash Starter Kit and
transfers the temperature readings from the EEPROM to
the PC . Microsoft Excel can be used to view the data .
Linear Products
MCP6V01 Thermocouple Auto-Zeroed
Ref Design Board (MCP6V01RD-TCPL)
The MCP6V01 design board
demonstrates how to use a difference
amplifier system to measure
Electromotive Force (EMF) voltage at
the cold junction of thermocouple in order to accurately
measure temperature of the thermocouple bead . This
can be done by using the MCP6V01 auto-zeroed op amp
because of its ultra low offset Voltage (VOS) and high
Common Mode Rejection Ratio (CMRR) .
MCP6N11 and MCP6V2X Wheatstone Bridge
Reference Design (ARD00354)
This board demonstrates the performance
of Microchip鈥檚 MCP6N11 instrumentation
amplifier (INA) and a traditional three op
amp INA using Microchip鈥檚 MCP6V26
and MCP6V27 auto-zeroed op amps . The
input signal comes from an RTD temperature sensor in
a Wheatstone bridge . Real world interference is added
to the bridge鈥檚 output, to provide realistic performance
comparisons . Data is gathered and displayed on a PC, for
ease of use .
MCP6H04 Evaluation Board (ADM00375)
The MCP6H04 Evaluation Board is intended
to support an instrumentation amplifier
and show the capability of the MCP6H04
operational amplifier. It uses a quad op amp
in a difference amplifier configuration with
input buffers and voltage reference . The test points for the
power supply, ground, input signals, output signals, and
voltage reference allow lab equipment to be connected to
the board .
MCP73X23 OVP Lithium Iron Phosphate Battery
Charger Evaluation Board (MCP73X23EV-LFP)
The MCP73X23 Lithium Iron
Phosphate Battery Charger Evaluation
board demonstrates the features of
Microchip鈥檚 MCP73123 and MCP73223
Lithium Iron Phosphate (LiFePO4) Battery Charge
Management Controller with Input Overvoltage Protection .
MCP7383X Li-Ion System Power Path Management
Reference Design (MCP7383XRD-PPM)
This reference design is developed to
assist product designers in reducing
product design cycle and time by
utilizing Microchip鈥檚 stand-alone Li-Ion
battery charge management controllers
with system power path management . Due to the natural
characteristics of Li-Ion/Li-Polymer batteries, they are the
most popular power sources for mobile devices, however,
extra care in design is always important . System Power
Path Management allows end-users to charge their
batteries without interruption .
MCP1640 Sync Boost Converter Evaluation Board
(MCP1640EV-SBC)
The MCP1640 Synchronous Boost
Converter Evaluation board demonstrates
the MCP1640 in two boost-converter
applications with multiple output voltages .
It can be used to evaluate both package
options (SOT-23-6 and 2脳3-8 DFN) . This
board was developed to help engineers
reduce the product design cycle time .
MCP1252 Charge Pump Backlight Demo Board
(MCP1252DM-BKLT)
The MCP1252 board demonstrates
the use of a charge pump device in
an LED application and acts as a
platform to evaluate the MCP1252
device in general . Light intensity is
controlled uniformly through the use of ballast resistors .
A PIC10F206 MCU provides an enable signal to the
MCP1252 and accepts a push-button input that allows the
white LEDs to be adjusted to five different light intensities .
Interface Products
MCP2515 CAN Bus Monitor Demo Board
(MCP2515DM-BM)
The MCP2515 CAN Bus Monitor Demo
board kit contains two identical boards
which can be connected together to
create a simple two node Controller
Area Network (CAN) bus, which can be
controlled and/or monitored via the included PC interface .
The board(s) can also be connected to an existing CAN bus .
Featured Analog Development Tools
鐩搁棞(gu膩n)PDF璩囨枡
PDF鎻忚堪
MCP6271-E/P IC OPAMP 2.0V SNGL R-R 8DIP
172074-1 CONN PLUG HSNG 1POS STR .187
2030.0550 FUSE 800MA 125V TELCM 18.8MM PCB
2036-23-C2LF GAS DISCHARGE TUBE
1-170823-1 CONN INSULATION SLEEVE .110
鐩搁棞(gu膩n)浠g悊鍟�/鎶€琛�(sh霉)鍙冩暩(sh霉)
鍙冩暩(sh霉)鎻忚堪
MCP603-ESL 鍒堕€犲晢:MICROCHIP 鍒堕€犲晢鍏ㄧū:Microchip Technology 鍔熻兘鎻忚堪:2.7V to 6.0V Single Supply CMOS Op Amps
MCP603-ESN 鍒堕€犲晢:MICROCHIP 鍒堕€犲晢鍏ㄧū:Microchip Technology 鍔熻兘鎻忚堪:2.7V to 6.0V Single Supply CMOS Op Amps
MCP603-EST 鍒堕€犲晢:MICROCHIP 鍒堕€犲晢鍏ㄧū:Microchip Technology 鍔熻兘鎻忚堪:2.7V to 6.0V Single Supply CMOS Op Amps
MCP603-I 鍒堕€犲晢:MICROCHIP 鍒堕€犲晢鍏ㄧū:Microchip Technology 鍔熻兘鎻忚堪:2.7V to 5.5V Single Supply CMOS Op Amps
MCP603-I/P 鍔熻兘鎻忚堪:閬嬬畻鏀惧ぇ鍣� - 閬嬫斁 Single 2.7V RoHS:鍚� 鍒堕€犲晢:STMicroelectronics 閫氶亾鏁�(sh霉)閲�:4 鍏辨ā鎶戝埗姣旓紙鏈€灏忓€硷級:63 dB 杓稿叆瑁滃劅闆诲:1 mV 杓稿叆鍋忔祦锛堟渶澶у€硷級:10 pA 宸ヤ綔闆绘簮闆诲:2.7 V to 5.5 V 瀹夎棰ㄦ牸:SMD/SMT 灏佽 / 绠遍珨:QFN-16 杞�(zhu菐n)鎻涢€熷害:0.89 V/us 闂�(gu膩n)闁�:No 杓稿嚭闆绘祦:55 mA 鏈€澶у伐浣滄韩搴�:+ 125 C 灏佽:Reel