Time: 2026-05-27 16:02:03
As courtyard intelligence continues to advance, lawn mowing robots have evolved from basic random-bump mowing into high-end smart devices featuring global path planning, multi-sensor coordination, and sophisticated battery management. Scheduled mowing operations and BMS battery run-log recording both demand a high-precision, high-reliability Real-Time Clock (RTC) chip to provide an accurate time reference.
Designed for the harsh outdoor environments and long-endurance demands of lawn mowing robots, YXC (Yangxing Technology) introduces the YSN8130 series — a highly integrated, ultra-low-power RTC chip that delivers a stable and reliable clock timing solution for smart outdoor equipment.

| Parameter | Specification |
|---|---|
| Integrated Crystal | 32.768 kHz (built-in) |
| Operating Voltage | 1.6 V ~ 5.5 V |
| Standby Current (Typ.) | 0.9 µA @ 3.3 V |
| Digital Offset Calibration | Supported |
| Alarm / Timer Functions | Alarm (weekly) + Timer (1 s – 1 h) |
| Power Switching | VDD / VBAT auto-switch |
| Package | 3225 SMD metal (3.2 × 2.5 × 1.0 mm) |
| Operating Temperature | -40 °C ~ +85 °C |


Lawn mowing robots operate outdoors year-round, enduring significant day-night and seasonal temperature swings. Conventional external-crystal RTC chips are highly susceptible to frequency temperature drift, leading to noticeable errors in scheduled mowing times and log timestamps — making it impossible to execute pre-set task plans with precision.
Lawn mowing robots spend a large proportion of time in standby or sleep mode (e.g., at night or during winter). Reducing standby power consumption is the key to extending battery endurance.
When a lawn mowing robot undergoes battery replacement or experiences an unexpected power loss, the RTC must continue keeping time — otherwise, the system clock resets, causing scheduled tasks to fail and log timestamps to become garbled.
A lawn mowing robot integrates motor drive, navigation, BMS, and other modules — leaving very little PCB area for the clock circuit. At the same time, external crystals and load capacitors are vulnerable to moisture in damp outdoor environments, potentially causing oscillation stop or frequency deviation.
Next-generation smart lawn mowing robots need to support multiple scheduling modes — one-time timers, daily loops, weekly segmented plans — placing high demands on RTC scheduling flexibility and independent operation capability.
Precise timing is the core enabler for task scheduling, navigation, and safety management in smart lawn mowing robots. YXC's YSN8130, with its high reliability, ultra-low power consumption, and compact form factor, is fully optimized for outdoor robotic equipment timing applications. For more information on RTC chips and 32.768 kHz crystal solutions, visit YQM.
Time: 2026-05-27 16:02:03
As courtyard intelligence continues to advance, lawn mowing robots have evolved from basic random-bump mowing into high-end smart devices featuring global path planning, multi-sensor coordination, and sophisticated battery management. Scheduled mowing operations and BMS battery run-log recording both demand a high-precision, high-reliability Real-Time Clock (RTC) chip to provide an accurate time reference.
Designed for the harsh outdoor environments and long-endurance demands of lawn mowing robots, YXC (Yangxing Technology) introduces the YSN8130 series — a highly integrated, ultra-low-power RTC chip that delivers a stable and reliable clock timing solution for smart outdoor equipment.

| Parameter | Specification |
|---|---|
| Integrated Crystal | 32.768 kHz (built-in) |
| Operating Voltage | 1.6 V ~ 5.5 V |
| Standby Current (Typ.) | 0.9 µA @ 3.3 V |
| Digital Offset Calibration | Supported |
| Alarm / Timer Functions | Alarm (weekly) + Timer (1 s – 1 h) |
| Power Switching | VDD / VBAT auto-switch |
| Package | 3225 SMD metal (3.2 × 2.5 × 1.0 mm) |
| Operating Temperature | -40 °C ~ +85 °C |


Lawn mowing robots operate outdoors year-round, enduring significant day-night and seasonal temperature swings. Conventional external-crystal RTC chips are highly susceptible to frequency temperature drift, leading to noticeable errors in scheduled mowing times and log timestamps — making it impossible to execute pre-set task plans with precision.
Lawn mowing robots spend a large proportion of time in standby or sleep mode (e.g., at night or during winter). Reducing standby power consumption is the key to extending battery endurance.
When a lawn mowing robot undergoes battery replacement or experiences an unexpected power loss, the RTC must continue keeping time — otherwise, the system clock resets, causing scheduled tasks to fail and log timestamps to become garbled.
A lawn mowing robot integrates motor drive, navigation, BMS, and other modules — leaving very little PCB area for the clock circuit. At the same time, external crystals and load capacitors are vulnerable to moisture in damp outdoor environments, potentially causing oscillation stop or frequency deviation.
Next-generation smart lawn mowing robots need to support multiple scheduling modes — one-time timers, daily loops, weekly segmented plans — placing high demands on RTC scheduling flexibility and independent operation capability.
Precise timing is the core enabler for task scheduling, navigation, and safety management in smart lawn mowing robots. YXC's YSN8130, with its high reliability, ultra-low power consumption, and compact form factor, is fully optimized for outdoor robotic equipment timing applications. For more information on RTC chips and 32.768 kHz crystal solutions, visit YQM.
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