Datasheet | Gk7102

Have a GK7102-based camera you’ve successfully liberated? Let us know in the comments below!

According to the datasheet, the GK7102 operates at during H.264 1080p encoding. In low-power standby mode, it drops to ~100µA . This makes it a perfect candidate for solar-powered wildlife cameras or doorbell cameras.

High-Performance 1080p Imaging with Integrated AI NPU gk7102 datasheet

Developing for the GK7102 typically involves using GOKE's Software Development Kit (SDK). The chip supports two primary operating systems:

: Includes secure digital controllers for local TF / MicroSD memory interfaces alongside internal configurations connecting SPI NOR or SPI NAND Flash chips. Firmware and Linux Customization Ecosystem Have a GK7102-based camera you’ve successfully liberated

: By placing 64 MB of DDR2 RAM straight onto the silicon die, the chip eliminates the need for external RAM routed over the PCB. This reduces high-speed trace layouts and completely removes external DDR chips from the board design.

If you’re working on a battery-powered IP camera, a dashcam, or a portable video recorder, you know the struggle: balancing video quality with power consumption. Enter the . In low-power standby mode, it drops to ~100µA

The is a highly integrated, cost-efficient, and low-power System-on-Chip (SoC) engineered by Goke Microelectronics specifically for High-Definition (HD) IP security cameras, smart video doorbells, and wireless consumer surveillance products . Optimized to deliver stable performance in constrained hardware setups, the processor supports multi-stream encoding and pairs seamlessly with multiple CMOS image sensors to form the core of entry-level security architectures.

April 11, 2026 Category: Hardware Datasheet Review Estimated read time: 4 minutes

: Integrated 512MB DDR2 RAM, which eliminates the need for external DDR chips on the camera's PCB. Networking : An embedded Ethernet PHY for wired connections. Audio : Built-in Audio Codec for two-way communication.

Handles high-contrast lighting situations, balancing bright and dark areas to provide clear, detailed images.