参数资料
型号: TSSOP20EV
厂商: Microchip Technology
文件页数: 18/30页
文件大小: 0K
描述: BOARD EVAL FOR MCP43X
标准包装: 1
主要目的: 裸评估板
嵌入式:
主要属性: TSSOP-20/16/14/8 和 SSOP-20 评估板
次要属性: 用于 PICmicro? MCU、ADC、DAC 和其它设备
已供物品: 5 裸板,文档
产品目录页面: 659 (CN2011-ZH PDF)
Development Tools
MCP6V01 Input Offset Demo Board
(MCP6V01DM-VOS )
The MCP6V01 Input Offset Demo Board
is intended to provide a simple means to
measure the MCP6V01/2/3 op amps input
offset voltage (V OS ) under a variety of bias
conditions. This V OS includes the specified
input offset voltage value found in the data
sheet plus changes due to power supply voltage (PSRR),
common mode voltage (CMRR), output voltage (AOL) and
temperature (IV OS /ITA).
MCP661 Line Driver Demo Board (MCP661DM-LD)
This demo board uses the MCP661 in a
very basic application for high speed op
amps; a 50Ω line (coax) driver. The board
offers a 30 MHz solution, high speed PCB
layout techniques and a means to test AC response, step
response and distortion. Both the input and the output are
connected to lab equipment with 50Ω BNC cables. There
are 50Ω terminating resistors and transmission lines on the
board. The op amp is set to a gain of 2V/V to overcome the
loss at its output caused by the 50Ω resistor at that point.
Connecting lab supplies to the board is simple; there are
three surface mount test points provided for this purpose.
Amplifier Evaluation Board 1
(MCP6XXXEV-AMP1)
The MCP6XXX Amplifier Evaluation Board 1
is designed to support inverting/
non-inverting amplifiers, voltage followers,
inverting/non-inverting comparators,
inverting/non-inverting differentiators.
Amplifier Evaluation Board 2
(MCP6XXXEV-AMP2)
The MCP6XXX Amplifier Evaluation Board 2
supports inverting summing amplifiers and
non-inverting summing amplifiers.
Amplifier Evaluation Board 3
(MCP6XXXEV-AMP3)
The MCP6XXX Amplifier Evaluation Board
3 is designed to support the difference
amplifier circuits which are generated by the
Mindi? Amplifier Designer.
Amplifier Evaluation Board 4
(MCP6XXXEV-AMP4)
The MCP6XXX Amplifier Evaluation Board
4 is designed to support the inverting
integrator circuit.
Thermocouple Reference Design (TMPSNSRD-TCPL1)
The Thermocouple Reference
Design demonstrates how to
instrument a Thermocouple and
accurately sense temperature over
the entire Thermocouple measurement range. This solution
uses the MCP3421 18-bit Analog-to-Digital Converter (ADC)
to measure voltage across the Thermocouple.
MCP6V01 Thermocouple Auto-Zero Reference Design
(MCP6V01RD-TCPL)
The MCP6V01 Thermocouple Auto-Zeroed
Reference Design 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 at the hot junction. This can be done by using
the MCP6V01 auto-zeroed op amp because of its ultra low
offset voltage (V OS ) and high common mode rejection ratio
(CMRR).
MCP6XXX Active Filter Demo (MCP6XXXDM-FLTR)
This kit supports Mindi? Active Filter
Designer & Simulator and active filters
designed by FilterLab? V2.0. These filters
are all pole and are built by cascading
first and second order sections.
Temp Sensors
MCP9800 Temp Sensor Demo Board
(MCP9800DM-TS1)
The MCP9800 Temperature Sensor
Demo Board demonstrates the sensor’s
features. Users can connect the demo
board to a PC with USB interface and
evaluate the sensor performance. The
7-Segment LED displays temperature in degrees Celsius or
degrees Fahrenheit; the temperature alert feature can be
set by the users using an on board potentiometer. An alert
LED is used to indicate an over temperature condition. In
addition, temperature can be datalogged using the Microchip
Thermal Management Software Graphical User Interface
(GUI). The sensor registers can also be programmed using
the GUI.
MCP6S26 PT100 RTD Evaluation Board
(TMPSNS-RTD1)
The PT100 RTD Evaluation Board
demonstrates how to bias a Resistive
Temperature Detector (RTD) and
accurately measure temperature. Up
to two RTDs can be connected. The
RTDs are biased using constant current source and the
output voltage is scaled using a difference amplifier. In
addition to the difference amplifier, a multiple input channel
Programmable Gain Amplifier (PGA) MCP6S26 is used to
digitally switch between RTDs and increase the scale up to
32 times.
18
Signal Chain Design Guide
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