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MC68HC908GP32CB by:

Microcontroller

Part Details for MC68HC908GP32CB by NXP Semiconductors

Results Overview of MC68HC908GP32CB by NXP Semiconductors

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Applications Consumer Electronics Internet of Things (IoT) Smart Cities

MC68HC908GP32CB Information

MC68HC908GP32CB by NXP Semiconductors is a Microcontroller.
Microcontrollers are under the broader part category of Microcontrollers and Processors.

Microcontrollers (MCUs) are small, low-power integrated circuits used to control embedded systems. Microcontrollers are primarily used to automate and control devices. Read more about Microcontrollers and Processors on our Microcontrollers and Processors part category page.

Part Details for MC68HC908GP32CB

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MC68HC908GP32CB Part Data Attributes

MC68HC908GP32CB NXP Semiconductors
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MC68HC908GP32CB NXP Semiconductors Microcontroller
Part Life Cycle Code Obsolete
Ihs Manufacturer NXP SEMICONDUCTORS
Package Description SDIP-42
Reach Compliance Code unknown
ECCN Code 3A991.A.2
HTS Code 8542.31.00.01
Factory Lead Time 4 Weeks
Samacsys Manufacturer NXP
Has ADC YES
Additional Feature OPERATES AT 3V MIN SUPPLY @ 4.1 MHZ
Address Bus Width
Bit Size 8
Boundary Scan NO
CPU Family 68HC08
Clock Frequency-Max 32.8 MHz
DAC Channels NO
DMA Channels NO
External Data Bus Width
Format FIXED POINT
Integrated Cache NO
JESD-30 Code R-PDIP-T42
Length 36.83 mm
Low Power Mode YES
Number of I/O Lines 31
Number of Terminals 42
On Chip Data RAM Width 8
On Chip Program ROM Width 8
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
PWM Channels YES
Package Body Material PLASTIC/EPOXY
Package Code SDIP
Package Equivalence Code SDIP42,.6
Package Shape RECTANGULAR
Package Style IN-LINE, SHRINK PITCH
RAM (bytes) 512
ROM (words) 32768
ROM Programmability FLASH
Seated Height-Max 5.08 mm
Speed 8.2 MHz
Supply Current-Max 20 mA
Supply Voltage-Max 5.5 V
Supply Voltage-Min 5 V
Supply Voltage-Nom 5 V
Surface Mount NO
Technology CMOS
Temperature Grade INDUSTRIAL
Terminal Form THROUGH-HOLE
Terminal Pitch 1.778 mm
Terminal Position DUAL
Width 15.24 mm
uPs/uCs/Peripheral ICs Type MICROCONTROLLER

Alternate Parts for MC68HC908GP32CB

This table gives cross-reference parts and alternative options found for MC68HC908GP32CB. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of MC68HC908GP32CB, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
MC68HC908GP32CB Motorola Semiconductor Products Check for Price Microcontroller, 8-Bit, FLASH, 68HC08 CPU, 8.2MHz, HCMOS, PDIP42, SDIP-42 MC68HC908GP32CB vs MC68HC908GP32CB
MC908GP32CBE Freescale Semiconductor Check for Price 8-BIT, FLASH, 8.2MHz, MICROCONTROLLER, PDIP42, PLASTIC, SDIP-42 MC68HC908GP32CB vs MC908GP32CBE
MC68HC908GP32CB Freescale Semiconductor Check for Price 8-BIT, FLASH, 8.2MHz, MICROCONTROLLER, PDIP42, PLASTIC, SDIP-42 MC68HC908GP32CB vs MC68HC908GP32CB
MC68HC908GP32CB Motorola Mobility LLC Check for Price 8-BIT, FLASH, 8.2MHz, MICROCONTROLLER, PDIP42, SDIP-42 MC68HC908GP32CB vs MC68HC908GP32CB
Part Number Manufacturer Composite Price Description Compare
MC908GP32CBE NXP Semiconductors Check for Price Microcontroller MC68HC908GP32CB vs MC908GP32CBE
MC68HC08GP16AMFB NXP Semiconductors Check for Price 8-BIT, MROM, 8.2MHz, MICROCONTROLLER, PQFP44 MC68HC908GP32CB vs MC68HC08GP16AMFB
MC68HC08GP32CB Motorola Mobility LLC Check for Price 8-BIT, FLASH, 8.2MHz, MICROCONTROLLER, PDIP42, SDIP-42 MC68HC908GP32CB vs MC68HC08GP32CB
MC68HC08GP32AMB Freescale Semiconductor Check for Price IC,MICROCONTROLLER,8-BIT,68HC08 CPU,CMOS,SDIP,42PIN,PLASTIC MC68HC908GP32CB vs MC68HC08GP32AMB
MC908GP32CPE Freescale Semiconductor Check for Price 8-BIT, FLASH, 8.2MHz, MICROCONTROLLER, PDIP40, PLASTIC, DIP-40 MC68HC908GP32CB vs MC908GP32CPE
MC68HC08GP16AMB Freescale Semiconductor Check for Price 8-BIT, MROM, 8.2MHz, MICROCONTROLLER, PDIP42, PLASTIC, SDIP-42 MC68HC908GP32CB vs MC68HC08GP16AMB
MC68HC08GP16ACB Motorola Mobility LLC Check for Price 8-BIT, MROM, 8.2MHz, MICROCONTROLLER, PDIP42, SDIP-42 MC68HC908GP32CB vs MC68HC08GP16ACB
MC68HC08GP32ACFB Motorola Mobility LLC Check for Price 8-BIT, MROM, 8.2 MHz, MICROCONTROLLER, PQFP44, PLASTIC, QFP-44 MC68HC908GP32CB vs MC68HC08GP32ACFB
MC68HC08GP16AMFB Freescale Semiconductor Check for Price IC,MICROCONTROLLER,8-BIT,68HC08 CPU,CMOS,QFP,44PIN,PLASTIC MC68HC908GP32CB vs MC68HC08GP16AMFB
MC908GP32CFBR2 Motorola Semiconductor Products Check for Price Microcontroller, 8-Bit, FLASH, 8.2MHz, HCMOS, PQFP44, 10 X 10 MM, QFP-44 MC68HC908GP32CB vs MC908GP32CFBR2

MC68HC908GP32CB Related Parts

MC68HC908GP32CB Frequently Asked Questions (FAQ)

  • The maximum clock frequency that can be used with the internal oscillator is 8 MHz. However, it's recommended to use a clock frequency of 4 MHz or less to ensure reliable operation.

  • To configure the watchdog timer to reset the microcontroller, set the WDTCSR register to 0x18 and enable the watchdog timer by setting the WDTEN bit in the WDTCSR register. The watchdog timer will then reset the microcontroller if it is not serviced within the timeout period.

  • Yes, the ADC can be used to convert analog signals from external sources. However, the ADC input pins must be configured as analog inputs by setting the corresponding bits in the PUCR register. Additionally, the ADC must be enabled by setting the ADCE bit in the ADCSCR register.

  • To implement a delay function using the timer module, configure the timer to operate in timer mode by setting the TMOD bit in the TSCR register. Then, load the timer counter with the desired delay value and enable the timer by setting the TEN bit in the TSCR register. The timer interrupt will be generated when the timer counter reaches zero, allowing you to implement a delay function.

  • Yes, the SCI can be used to communicate with multiple devices using a multi-drop configuration. However, the SCI must be configured to operate in multi-drop mode by setting the M bit in the SCCCR register. Additionally, each device must have a unique address and the SCI must be configured to transmit and receive data using the correct address.

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