MAX135EWI-T
Manufacturer No:
MAX135EWI-T
Manufacturer:
Description:
15-BIT ADC, PARALLEL INTERFACE
Datasheet:
Delivery:
![](/static/public/images/DHL.png)
![](/static/public/images/TNT.webp)
![](/static/public/images/UPS.png)
![](/static/public/images/FedEx.png)
![](/static/public/images/SF-Express.webp)
Payment:
![](/static/public/images/paypal.png)
![](/static/public/images/paypal02.png)
![](/static/public/images/paypal03.png)
![](/static/public/images/paypal04.png)
In Stock : 1000
Please send RFQ , we will respond immediately.
![](/static/public/images/kenko_Certif02.png)
![](/static/public/images/kenko_Certif07.png)
![](/static/public/images/kenko_Certif03.png)
![](/static/public/images/kenko_Certif04.png)
![](/static/public/images/kenko_Certif08.png)
![](/static/public/images/kenko_Certif10.png)
![](/static/public/images/kenko_Certif09.png)
![](/static/public/images/kenko_Certif05.png)
![](/static/public/images/kenko_Certif06.png)
MAX135EWI-T Specifications
-
TypeParameter
-
Mounting TypeSurface Mount
-
Supplier Device Package28-SOIC
-
Package / Case28-SOIC (0.295", 7.50mm Width)
-
Operating Temperature-40°C ~ 85°C
-
Features-
-
Voltage - Supply, Digital5V
-
Voltage - Supply, Analog-
-
Reference TypeExternal
-
ArchitectureMulti-Slope
-
Number of A/D Converters1
-
Ratio - S/H:ADC1:1
-
ConfigurationADC
-
Data InterfaceParallel
-
Input TypeDifferential
-
Number of Inputs1
-
Sampling Rate (Per Second)1.6
-
Number of Bits15
-
PackagingBulk
-
Product StatusActive
-
Series-
The MAX135EWI-T is an integrated circuit chip manufactured by Maxim Integrated. It is a 12-bit analog-to-digital converter (ADC) with a built-in reference and serial interface. Here are some advantages and application scenarios of the MAX135EWI-T:Advantages: 1. High resolution: The MAX135EWI-T offers a 12-bit resolution, allowing for precise conversion of analog signals into digital data. 2. Integrated reference: It includes an integrated reference voltage source, eliminating the need for an external reference component. 3. Serial interface: The chip features a serial interface (SPI) for easy communication with microcontrollers or other digital devices. 4. Low power consumption: The MAX135EWI-T is designed to operate with low power consumption, making it suitable for battery-powered applications. 5. Small form factor: The chip comes in a small package (28-pin SOIC), enabling it to be used in space-constrained designs.Application scenarios: 1. Data acquisition systems: The MAX135EWI-T can be used in data acquisition systems to convert analog signals from sensors, transducers, or other sources into digital data for processing and analysis. 2. Industrial automation: It can be employed in industrial automation applications, such as process control, monitoring, and measurement, where accurate and reliable analog-to-digital conversion is required. 3. Medical devices: The chip can find applications in medical devices like patient monitoring systems, where it can convert physiological signals into digital data for further analysis or transmission. 4. Instrumentation: The MAX135EWI-T can be used in various test and measurement instruments, such as oscilloscopes, multimeters, or signal analyzers, to digitize analog signals for analysis and display. 5. Consumer electronics: It can be utilized in consumer electronics products like audio equipment, video recorders, or digital cameras, where analog signals need to be converted into digital format for processing or storage.These are just a few examples of the advantages and application scenarios of the MAX135EWI-T integrated circuit chip. Its versatility, high resolution, and integrated features make it suitable for a wide range of analog-to-digital conversion applications.
MAX135EWI-T Relevant information
-
TLV5592ED
Analog Devices Inc. -
TLV1508IDWG4
Analog Devices Inc. -
ICL7136RCPL-4
Analog Devices Inc./Maxim Integrated -
LTC1415ISW#PBF
Renesas -
LTC1199LCS8#PBF
Nexperia USA Inc. -
MAX136CQH
Anadigics -
MAX1171CDJ
Infineon Technologies -
LTC1276BCSW#PBF
Nexperia USA Inc. -
ADC0831CCN
National Semiconductor -
ADC124S021CIMM
National Semiconductor