ATMEGA16HVA-4TUR vs ATMEGA169V-8AI Comparison

Detailed side-by-side comparison of ATMEGA16HVA-4TUR by Microchip Technology and ATMEGA169V-8AI by Microchip Technology. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Microchip Technology
ATMEGA16HVA-4TUR ATMEGA16HVA-4TUR - 8-bit AVR Battery Management MCU | Microchip

ATMEGA16HVA-4TUR - 8-bit AVR Battery Management MCU | Microchip

ATMEGA16HVA-4TUR βœ“ Active
Microchip Technology
ATMEGA169V-8AI ATMEGA169V-8AI - 8-bit AVR MCU, 16KB Flash, LCD | Microchip

ATMEGA169V-8AI - 8-bit AVR MCU, 16KB Flash, LCD | Microchip

ATMEGA169V-8AI βœ“ Active

Specification Comparison

Parameter ATMEGA16HVA-4TUR ATMEGA169V-8AI
Brand Microchip Technology Microchip Technology
Category Microcontrollers Microcontrollers
Lifecycle Status Active Active
Stock Status In Stock In Stock
Unit Price (USD) $2.64 $2.58
Core Architecture 8-bit AVR RISC β€”
Core Series AVR ATmega (Batman) β€”
Maximum Clock Frequency 4 MHz β€”
Program Memory Size 16 KB (8K x 16) Flash β€”
Program Memory Type In-System Self-Programmable Flash β€”
SRAM Size 512 bytes (512 x 8) β€”
EEPROM Size 256 bytes β€”
Supply Voltage Range 1.8 V to 9 V β€”
Throughput Up to 4 MIPS at 4 MHz β€”
Data Bus Width 8-bit β€”
Target Application 1-cell and 2-cell Li-ion battery management β€”
Package 28-TSOP 64-TQFP (14x14 mm)
Mounting Type Surface Mount Surface Mount
Operating Temperature [DATA_NEEDED: operating temperature range] -40C to +85C (I grade, industrial)
Number of I/Os [DATA_NEEDED: number of I/O pins] β€”
RoHS Status [DATA_NEEDED: RoHS status] β€”
Core Processor β€” AVR
Core Size β€” 8-Bit
Speed β€” 8 MHz
Flash Program Memory β€” 16 KB (8K x 16)
EEPROM β€” 512 B
SRAM β€” 1 KB
Operating Voltage Range β€” 1.8 V to 5.5 V
General Purpose I/O β€” 54
ADC Resolution β€” 10-bit, 8-channel
LCD Controller β€” On-chip with internal step-up voltage
Timers β€” 3 flexible timers with PWM
Debug/Programming Interfaces β€” JTAG (boundary-scan, on-chip debug, ISP)
Instructions β€” 131 instructions, most single-cycle
MIPS Throughput β€” Up to 16 MIPS (fully static operation)

Datasheets & Resources

Browse All Products Create BOM Request Quote