The Tech Venice Children Stirrups in Silver/Rose Gold pair a silver frame with a rose gold tread and outer arm, giving this practical safety stirrup a distinctive finish that stands out from the crowd.
The clever part is the patented release mechanism. If a fall occurs, the outer arm is designed to open so the rider’s foot can come free, helping to reduce the chance of it becoming caught in the stirrup. The spring-loaded arm then returns to its starting position, while the locking system keeps everything securely in place during normal riding.
Built in Italy from high-quality metals, the Venice Children is held together with stainless steel screws and finished with an anodised coating for a durable, hard-wearing surface.
The 4-inch tread features Tech’s spiked grip pattern, giving young riders a secure base while its open design helps prevent mud and water from building up beneath the foot.
The 2.5-degree tread angle is designed to encourage a heels-down position, while the shaped leather eye helps the stirrups sit naturally in the correct position. They work with standard stirrup leathers and weigh 370g.
Suitable for riders with shoes up to UK size 2.5, these stirrups have no age or weight restrictions.
Keeping them clean is simple too: rinse with clean water, use a soft brush or cloth when needed and apply WD40 occasionally to the spring-loaded mechanism.
Key Features
- Patented quick-release safety mechanism
- Spring-loaded outer arm designed to release the foot during a fall
- Silver frame with rose gold tread and outer arm
- Lightweight 370g construction
- 4-inch tread
- Made in Italy from high-quality metals
- Stainless steel screws
- Anodised finish for durability
- Patented spiked grip pattern
- Designed to help prevent mud and water collecting in the tread
- 2.5-degree tread angle
- Specially shaped top eye for correct positioning
- Compatible with standard stirrup leathers
- Recommended for shoes up to UK size 2.5
- No age or weight restrictions
- Simple to clean and maintain
- Occasional WD40 recommended on the spring-loaded mechanism