Details, datasheet, quote on part number: MIKROE-2546
PartMIKROE-2546
Category
TitleINTEL JOULE CLICK SHIELD
Description

MikroElektronika’s Intel Joule click SHIELD (MIKROE-256) is an extension for Intel Joule Expansion Board. This click shield allows more than 280 click boards™ to be added to a project. Displays, Wi-Fi, ZigBee or Bluetooth transceivers, Ethernet modules, sensors, MP3 codec circuit, and other features can be added to your project with ease. The Intel Joule click SHIELD board includes the MCP3204 ADC 4-channel 12-bit A/D converter with serial peripheral interface (SPI). The onboard ADC has a 2.048 V reference. The board also features 2 x 40 pin connectors. The expansion board is intended to breakout all I/O interfaces from the Intel Joule module into easily accessible connectors. Similar to the Intel Joule click shield, the MIKROE-2582 Intel Joule click SHIELD+ provide click board connectivity to the Intel Joule Expansion Board but with four mikroBUS™ sockets. The click boards come with examples written in MikroElektronika compilers to help provide a great base for future projects.



CompanymikroElektronika
DatasheetDownload MIKROE-2546 datasheet
  
MIKROE-2546 photo

Others parts numbering
MIKROE-2582: INTEL JOULE CLICK SHIELD +
MCP3204-CI/P: IC ADC 12BIT 2.7V 4CH SPI 14-DIP
MCP3204-CI/SL: IC ADC 12BIT 2.7V 4CH SPI 14SOIC
MCP3204-CI/ST: IC ADC 12BIT 2.7V 4CH SPI14TSSOP
MCP3204-BI/SL: IC ADC 12BIT 2.7V 4CH SPI 14SOIC
MCP3204-BI/P: IC ADC 12BIT 2.7V 4CH SPI 14-DIP
MCP3204T-CI/SL: IC ADC 12BIT 2.7V 4CH SPI 14SOIC

 

Features, Applications
Features

12-bit resolution 1 LSB max DNL 1 LSB max INL 2 LSB max INL 8 (MCP3208) input channels Analog inputs programmable as single-ended or pseudo-differential pairs On-chip sample and hold SPI serial interface (modes 0,0 and 1,1) Single supply operation: 5.5V 100 ksps max. sampling rate at VDD 5V 50 ksps max. sampling rate at VDD = 2.7V Low power CMOS technology: 500 nA typical standby current, 2 A max. 400 A max. active current at 5V Industrial temp range: to +85C Available in PDIP, SOIC and TSSOP packages

Description

The Microchip Technology Inc. MCP3204/3208 devices are successive approximation 12-bit Analogto-Digital (A/D) Converters with on-board sample and hold circuitry. The MCP3204 is programmable to provide two pseudo-differential input pairs or four single-ended inputs. The MCP3208 is programmable to provide four pseudo-differential input pairs or eight single-ended inputs. Differential Nonlinearity (DNL) is specified at 1 LSB, while Integral Nonlinearity (INL) is offered in 1 LSB (MCP3204/3208-B) and 2 LSB (MCP3204/3208-C) versions. Communication with the devices is accomplished using a simple serial interface compatible with the SPI protocol. The devices are capable of conversion rates to 100 ksps. The MCP3204/3208 devices operate over a broad voltage range - 5.5V). Low current design permits operation with typical standby and active currents of only 500 nA and 320 A, respectively. The MCP3204 is offered in 14-pin PDIP, 150 mil SOIC and TSSOP packages. The MCP3208 is offered in 16-pin PDIP and SOIC packages.

Applications
Sensor Interface Process Control Data Acquisition Battery Operated Systems
VREF CH1 CH7* Sample and Hold Control Logic CS/SHDN DIN CLK Input Channel Mux VDD VSS

Notice: Stresses above those listed under "Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at those or any other conditions above those indicated in the operation listings of this specification is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability.

VDD...................................................................................7.0V All inputs and outputs w.r.t. VSS............... -0.6V to VDD +0.6V Storage to +150C Ambient temp. with power to +125C Soldering temperature of leads (10 seconds)............. +300C ESD protection on all pins.............................................> 4 kV

Electrical Characteristics: Unless otherwise noted, all parameters apply at VDD = 5V, VSS = 0V, VREF = 100 ksps and fCLK = 20*fSAMPLE Parameters Conversion Rate Conversion Time Analog Input Sample Time Throughput Rate DC Accuracy Resolution Integral Nonlinearity Differential Nonlinearity Offset Error Gain Error Dynamic Performance Total Harmonic Distortion Signal to Noise and Distortion (SINAD) Spurious Free Dynamic Range Reference Input Voltage Range Current Drain Analog Inputs Input Voltage Range for CH0CH7 in Single-Ended Mode VSS VREF 100 0.001 VDD V A Note CS = VDD 86 dB VIN to 4.9V@1 kHz VIN to 4.9V@1 kHz VIN to 4.9V@1 kHz INL DNL bits LSB MCP3204/3208-C No missing codes over-temperature tCONV tSAMPLE fSAMPLE clock cycles clock cycles ksps VDD = VREF = 5V VDD = VREF = 2.7V Sym Min Typ Max Units Conditions

Input Voltage Range for IN+ in IN-- VREF+INpseudo-differential Mode Note 1: This parameter is established by characterization and not 100% tested. 2: See graphs that relate linearity performance to VREF levels. 3: Because the sample cap will eventually lose charge, effective clock rates below 10 kHz can affect linearity performance, particularly at elevated temperatures. See Section 6.2 "Maintaining Minimum Clock Speed", "Maintaining Minimum Clock Speed", for more information.

Electrical Characteristics: Unless otherwise noted, all parameters apply at VDD = 5V, VSS = 0V, VREF = 100 ksps and fCLK = 20*fSAMPLE Parameters Input Voltage Range for IN- in pseudo-differential Mode Leakage Current Switch Resistance Sample Capacitor Digital Input/Output Data Coding Format High Level Input Voltage Low Level Input Voltage High Level Output Voltage Low Level Output Voltage Input Leakage Current Output Leakage Current Pin Capacitance (All Inputs/Outputs) Timing Parameters Clock Frequency Clock High Time Clock Low Time CS Fall To First Rising CLK Edge Data Input Setup Time Data Input Hold Time CLK Fall To Output Data Valid CLK Fall To Output Enable CS Rise To Output Disable CS Disable Time DOUT Rise Time DOUT Fall Time Power Requirements Operating Voltage Operating Current Standby Current Note 2: 3: VDD IDD IDDS V A VDD=VREF = 5V, DOUT unloaded VDD=VREF = 2.7V, DOUT unloaded CS = VDD = 5.0V fCLK tHI tLO tSUCS tSU tHD tDO tEN tDIS tCSH tR tF MHz ns See Figures 1-2 and 1-3 (Note 1) See Figures 1-2 and 1-3 (Note 1) See Figures 1-2 and 1-3 See Figures 1-2 and 1-3 See Figures 1-2 and 1-3 VDD = 5V (Note 3) VDD = 2.7V (Note 3) VIH VIL VOH VOL ILI ILO CIN,COUT 4.1 -10 Straight Binary 0.7 VDD 0.3 VDD A pF IOH = -1 mA, VDD = 4.5V IOL = 1 mA, VDD = 4.5V VIN = VSS or VDD VOUT = VSS or VDD = 5.0V (Note = 1 MHz Sym Min VSS-100 Typ 1000 20 Max VSS+100 1 Units A pF See Figure 4-1 See Figure 4-1 Conditions

This parameter is established by characterization and not 100% tested. See graphs that relate linearity performance to VREF levels. Because the sample cap will eventually lose charge, effective clock rates below 10 kHz can affect linearity performance, particularly at elevated temperatures. See Section 6.2 "Maintaining Minimum Clock Speed", "Maintaining Minimum Clock Speed", for more information.


 

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MikroElektronika’s Intel Joule click SHIELD (MIKROE-256) is an extension for Intel Joule Expansion Board. This click shield allows more than 280 click boards™ to be added to a project. Displays,

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