0 }, get firstVideoIndex() { return this.hasVideos ? this.images.length : -1 }, get total() { return this.images.length + this.productVideos.length }, modalOpen: false, modalActive: 0, // Drag/swipe state isDragging: false, wasDragging: false, startX: 0, currentX: 0, dragOffset: 0, containerWidth: 0, startY: 0, directionLocked: null, isRtl: false, imageLoading: false, // Zoom state zoomScale: 1, zoomPanX: 0, zoomPanY: 0, zoomPinching: false, zoomPanning: false, zoomInitialDistance: 0, zoomInitialScale: 1, zoomPanStartX: 0, zoomPanStartY: 0, zoomPanOffsetX: 0, zoomPanOffsetY: 0, zoomLastTap: 0, zoomLastTouchX: 0, zoomLastTouchY: 0, zoomAnimating: false, lastInputWasTouch: false, init() { this.isRtl = document.documentElement.dir === 'rtl'; this.$nextTick(() => { this.containerWidth = this.$refs.carouselContainer?.offsetWidth || 0; // Handle already-cached images where x-on:load won't fire this.$el.querySelectorAll('img.lqip-placeholder').forEach(lqip => { const realImg = lqip.nextElementSibling; if (realImg && realImg.complete && realImg.naturalWidth > 0) { realImg.dataset.lqipDone = '1'; lqip.style.display = 'none'; } }); }); window.addEventListener('resize', () => { this.containerWidth = this.$refs.carouselContainer?.offsetWidth || 0; }); // Preload first image of each variant for instant switching Object.values(this.variationImagesMap).forEach(variant => { if (variant.images && variant.images[0]) { new Image().src = variant.images[0]; } }); // Only the active slide may play. Clearing startedVideo also // drops the bound src, so swiping away stops the download and // not just the playback. this.$watch('active', () => { this.startedVideo = null; this.$el.querySelectorAll('video[data-product-video]').forEach(v => v.pause()); }); }, handleDragStart(e) { if (this.total <= 1) return; this.isDragging = true; this.directionLocked = null; this.startX = e.type.includes('mouse') ? e.clientX : e.touches[0].clientX; this.startY = e.type.includes('mouse') ? e.clientY : e.touches[0].clientY; this.currentX = this.startX; this.containerWidth = this.$refs.carouselContainer?.offsetWidth || 0; }, handleDragMove(e) { if (!this.isDragging) return; const clientX = e.type.includes('mouse') ? e.clientX : e.touches[0].clientX; const clientY = e.type.includes('mouse') ? e.clientY : e.touches[0].clientY; if (this.directionLocked === null) { const deltaX = Math.abs(clientX - this.startX); const deltaY = Math.abs(clientY - this.startY); if (deltaX < 5 && deltaY < 5) return; if (deltaY > deltaX) { this.directionLocked = 'vertical'; this.isDragging = false; this.dragOffset = 0; return; } this.directionLocked = 'horizontal'; } if (this.directionLocked === 'vertical') return; e.preventDefault(); this.currentX = clientX; let diff = this.currentX - this.startX; // Limit drag at edges const atFirst = this.active === 0; const atLast = this.active === this.total - 1; const isAtEdge = this.isRtl ? (atFirst && diff < 0) || (atLast && diff > 0) : (atFirst && diff > 0) || (atLast && diff < 0); if (isAtEdge) { diff = diff * 0.3; // Resistance at edges } this.dragOffset = diff; }, handleDragEnd() { this.directionLocked = null; if (!this.isDragging) return; this.isDragging = false; // Mark that we just finished dragging to prevent click from opening modal if (Math.abs(this.dragOffset) > 5) { this.wasDragging = true; setTimeout(() => { this.wasDragging = false; }, 100); } const threshold = this.containerWidth * 0.2; if (Math.abs(this.dragOffset) > threshold) { if (this.isRtl) { // RTL: drag left (negative) = prev, drag right (positive) = next if (this.dragOffset < 0) { this.prev(); } else { this.next(); } } else { // LTR: drag right (positive) = prev, drag left (negative) = next if (this.dragOffset > 0) { this.prev(); } else { this.next(); } } } this.dragOffset = 0; }, getSlideTransform() { // RTL: images flow right-to-left, so we use positive offset // LTR: images flow left-to-right, so we use negative offset const baseOffset = this.isRtl ? this.active * 100 : -this.active * 100; const dragPercent = this.containerWidth > 0 ? (this.dragOffset / this.containerWidth) * 100 : 0; return `translateX(${baseOffset + dragPercent}%)`; }, next() { if (this.active < this.total - 1) { this.active = this.active + 1; } }, prev() { if (this.active > 0) { this.active = this.active - 1; } }, goTo(idx) { this.active = idx }, openModal(idx) { if (this.isDragging || this.wasDragging) return; // The lightbox is images only. Its surface is touch-action:none // with modalDragStart calling preventDefault() on every touch, // which would swallow the native video control bar - and // native fullscreen is one tap away from the inline player // anyway. Video slides simply never open it. if (this.hasVideos && idx >= this.firstVideoIndex) return; this.modalActive = idx; this.modalOpen = true; document.body.style.overflow = 'hidden'; }, closeModal() { this.resetZoom(); this.modalOpen = false; document.body.style.overflow = 'auto'; }, // Wrap on the image count, not `total`: the modal never shows a // video, so paging must not land on a video index. get modalTotal() { return Math.max(1, this.images.length) }, modalNext() { this.resetZoom(); this.modalActive = (this.modalActive + 1) % this.modalTotal }, modalPrev() { this.resetZoom(); this.modalActive = (this.modalActive - 1 + this.modalTotal) % this.modalTotal }, modalGoTo(idx) { this.resetZoom(); this.modalActive = idx }, // Modal drag/swipe modalDragging: false, modalWasDragging: false, modalStartX: 0, modalDragOffset: 0, // Zoom helpers resetZoom() { this.zoomScale = 1; this.zoomPanX = 0; this.zoomPanY = 0; this.zoomPinching = false; this.zoomPanning = false; }, getTouchDistance(touches) { return Math.hypot( touches[0].clientX - touches[1].clientX, touches[0].clientY - touches[1].clientY ); }, clampPan() { const maxPanX = Math.max(0, (this.zoomScale - 1) * window.innerWidth / 2); const maxPanY = Math.max(0, (this.zoomScale - 1) * window.innerHeight / 2); this.zoomPanX = Math.max(-maxPanX, Math.min(maxPanX, this.zoomPanX)); this.zoomPanY = Math.max(-maxPanY, Math.min(maxPanY, this.zoomPanY)); }, modalDragStart(e) { const isTouch = e.type.includes('touch'); this.lastInputWasTouch = isTouch; // Store touch position for double-tap zoom center if (isTouch && e.touches[0]) { this.zoomLastTouchX = e.touches[0].clientX; this.zoomLastTouchY = e.touches[0].clientY; } // Two fingers: start pinch-to-zoom if (isTouch && e.touches.length === 2) { this.zoomPinching = true; this.zoomInitialDistance = this.getTouchDistance(e.touches); this.zoomInitialScale = this.zoomScale; this.modalDragging = false; this.zoomPanning = false; e.preventDefault(); return; } // Single finger/mouse while zoomed: start panning if (this.zoomScale > 1) { this.zoomPanning = true; this.zoomPanStartX = isTouch ? e.touches[0].clientX : e.clientX; this.zoomPanStartY = isTouch ? e.touches[0].clientY : e.clientY; this.zoomPanOffsetX = this.zoomPanX; this.zoomPanOffsetY = this.zoomPanY; e.preventDefault(); return; } // Single finger not zoomed or mouse: existing swipe // Prevent browser double-tap-to-zoom so our custom handler works if (isTouch) { e.preventDefault(); } if (this.total <= 1) return; this.modalDragging = true; this.modalStartX = isTouch ? e.touches[0].clientX : e.clientX; this.modalDragOffset = 0; }, modalDragMove(e) { const isTouch = e.type.includes('touch'); // Pinch-to-zoom if (this.zoomPinching && isTouch && e.touches.length >= 2) { e.preventDefault(); const newDist = this.getTouchDistance(e.touches); let newScale = this.zoomInitialScale * (newDist / this.zoomInitialDistance); this.zoomScale = Math.max(1, Math.min(4, newScale)); this.clampPan(); return; } // Panning while zoomed if (this.zoomPanning) { e.preventDefault(); const px = isTouch ? e.touches[0].clientX : e.clientX; const py = isTouch ? e.touches[0].clientY : e.clientY; const dx = px - this.zoomPanStartX; const dy = py - this.zoomPanStartY; this.zoomPanX = this.zoomPanOffsetX + dx; this.zoomPanY = this.zoomPanOffsetY + dy; this.clampPan(); return; } // Existing swipe logic if (!this.modalDragging) return; e.preventDefault(); const x = isTouch ? e.touches[0].clientX : e.clientX; this.modalDragOffset = x - this.modalStartX; }, modalDragEnd(e) { const isTouch = e && e.type && e.type.includes('touch'); // End pinch if (this.zoomPinching) { this.zoomPinching = false; // Snap to 1 if nearly unzoomed if (this.zoomScale < 1.1) { this.resetZoom(); } this.modalWasDragging = true; setTimeout(() => { this.modalWasDragging = false; }, 100); // If one finger remains after pinch, start panning if (isTouch && e.touches && e.touches.length === 1 && this.zoomScale > 1) { this.zoomPanning = true; this.zoomPanStartX = e.touches[0].clientX; this.zoomPanStartY = e.touches[0].clientY; this.zoomPanOffsetX = this.zoomPanX; this.zoomPanOffsetY = this.zoomPanY; } return; } // End pan if (this.zoomPanning) { this.zoomPanning = false; this.modalWasDragging = true; setTimeout(() => { this.modalWasDragging = false; }, 100); // Double-tap to zoom out while panned if (isTouch) { const now = Date.now(); if (now - this.zoomLastTap < 300) { this.zoomAnimating = true; setTimeout(() => { this.zoomAnimating = false; }, 300); this.resetZoom(); this.zoomLastTap = 0; } else { this.zoomLastTap = now; } } return; } // Existing swipe end logic const wasDragging = this.modalDragging; if (this.modalDragging) { this.modalDragging = false; const absDrag = Math.abs(this.modalDragOffset); if (absDrag > 5) { this.modalWasDragging = true; setTimeout(() => { this.modalWasDragging = false; }, 100); } const threshold = 80; if (absDrag > threshold) { if (this.isRtl) { this.modalDragOffset < 0 ? this.modalPrev() : this.modalNext(); } else { this.modalDragOffset > 0 ? this.modalPrev() : this.modalNext(); } this.modalDragOffset = 0; this.zoomLastTap = 0; return; } this.modalDragOffset = 0; } // Double-tap detection (works for both zoomed and not zoomed) if (isTouch) { const now = Date.now(); if (now - this.zoomLastTap < 300) { this.zoomAnimating = true; setTimeout(() => { this.zoomAnimating = false; }, 300); this.modalWasDragging = true; setTimeout(() => { this.modalWasDragging = false; }, 200); if (this.zoomScale > 1) { this.resetZoom(); } else { const cx = this.zoomLastTouchX - window.innerWidth / 2; const cy = this.zoomLastTouchY - window.innerHeight / 2; this.zoomScale = 2.5; this.zoomPanX = -cx * (this.zoomScale - 1) / this.zoomScale; this.zoomPanY = -cy * (this.zoomScale - 1) / this.zoomScale; this.clampPan(); } this.zoomLastTap = 0; return; } this.zoomLastTap = now; // Single tap on backdrop: close modal (touch equivalent of @click.self) if (e.target === e.currentTarget) { this.closeModal(); } } }, switchToVariation(attrValueId) { const varImages = this.variationImagesMap[attrValueId]; let newImages, newLargeImages, newLqipImages; if (varImages && varImages.images && varImages.images.length > 0) { newImages = varImages.images; newLargeImages = varImages.largeImages || varImages.images; newLqipImages = varImages.lqipImages || []; } else { newImages = this.defaultImages; newLargeImages = this.defaultLargeImages; newLqipImages = this.defaultLqipImages; } // Show loading state while first image loads this.imageLoading = true; const firstImg = new Image(); firstImg.onload = () => { this.localImages = newImages; this.localLargeImages = newLargeImages; this.localLqipImages = newLqipImages; this.active = 0; this.modalActive = 0; this.imageLoading = false; }; firstImg.onerror = () => { this.localImages = newImages; this.localLargeImages = newLargeImages; this.localLqipImages = newLqipImages; this.active = 0; this.modalActive = 0; this.imageLoading = false; }; firstImg.src = newImages[0]; // If already cached, onload fires synchronously or near-instantly } }" x-on:keydown.escape.window="closeModal()" x-on:keydown.arrow-left.window="modalOpen && modalPrev()" x-on:keydown.arrow-right.window="modalOpen && modalNext()" x-on:switch-variation-images.window="switchToVariation($event.detail.attrValueId ?? $event.detail[0]?.attrValueId)">
/

Charger GPT 3.5K W 1 mont

1. الطاقة والأداء الكهرومغناطيسيالقدرة القصوى (Power): تبلغ $3.5\text{ kW}$ (كيلو واط)، وهي القدرة القياسية للشواحن المنزلية المحمولة التي تعمل على القابس العادي.التيار الكهربائي (Current): أقصى تيار يتحمله هو 16 أمبير (16A). وتدعم معظم الموديلات خاصية تعديل التيار يدوياً بين خيارات متعددة ($8\text{A} / 10\text{A} / 13\text{A} / 16\text{A}$) لتناسب قوة عداد الكهرباء في المنزل وتجنب الاحتراق.الجهد الكهربائي (Voltage): يعمل على نظام فاز واحد (Single Phase) بجهد يتراوح بين $110\text{V}$ إلى $250\text{V}$ AC.2. التصميم والميزات الذكيةنوع المنفذ (Plug Type): معيار GB/T الصيني ذو الـ 7 فتحات لنقل الطاقة والبيانات بين الشاحن والسيارة.شاشة العرض (LCD Screen): مدمجة في جسم الشاحن وتوفر قراءات فورية لـ:الأمبير الفعلي المسحوب.الجهد الكهربائي المستقر (الفولتية).درجة حرارة جهاز الشاحن.كمية الطاقة المستهلكة بالكيلو واط/ساعة والوقت المستغرق للشحن.طول الكابل: يتراوح عادةً بين 3.5 إلى 5 أمتار تقريباً حسب الشركة المصنعة.3. أنظمة الحماية والأمانيحتوي الشاحن على شريحة ذكية (Smart Chip) توفر حماية متكاملة تشمل:حماية من ارتفاع أو انخفاض الجهد (Over/Under Voltage).حماية من زيادة التيار (Over Current).حماية من الالتماس الكهربائي (Short Circuit).حماية من ارتفاع درجة الحرارة (Over Temperature) حيث يفصل الشاحن تلقائياً إذا سخن الكابل.مقاومة الظروف الجوية بمعيار عزل لا يقل عن IP54 أو IP65 (مقاوم للأتربة ورذاذ الماء).
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