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ADG1207YCPZ
+BOMADI Low Cap +/-15V Dual 8:1 iCmos Mux
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メーカーアナログデバイス
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メーカー品番 #ADG1207YCPZ
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在庫状況7984
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Packaging | Reel |
| Standard Pack Qty | 1500 |
概要
Description
- Low on-resistance (45Ω typical) and low leakage current, ensuring minimal signal distortion.
- Wide voltage range (±15V dual supply or +12V single supply), supporting diverse signal levels.
- Break-before-make switching to prevent channel overlap.
- TTL/CMOS-compatible logic inputs for easy interfacing with digital controllers.
Housed in a 32-lead LFCSP package, it offers compactness and thermal efficiency. Ideal for high-accuracy systems requiring reliable, low-error signal switching.
Equivalent
- ADG1206YCPZ (similar specs, different configuration)
- MAX14752 (Maxim Integrated)
- TS5A23157 (Texas Instruments)
- DG411 (Vishay)
These alternatives offer comparable performance in switching applications. Always verify pin compatibility and electrical characteristics for your specific design.
Features
- 16:1 channel configuration
- Low on-resistance (RON): 120Ω typical
- ±15V dual-supply or +12V single-supply operation
- Fully specified for ±15V, ±5V, and +12V supplies
- Break-before-make switching
- Low power consumption (<0.1μW)
- TTL/CMOS-compatible logic inputs
- Latch-up immune (up to 100mA per JESD78)
- 20-lead LFCSP package
Ideal for data acquisition, test equipment, and signal routing in industrial and medical applications.
Manufacturer
The ADG1207YCPZ is a precision monolithic CMOS analog multiplexer, reflecting ADI's expertise in low-power, high-accuracy signal switching solutions.
Application
- Test & Measurement Equipment: Signal routing in oscilloscopes, data acquisition systems.
- Medical Devices: Multiplexing in patient monitoring and diagnostic tools.
- Industrial Systems: Process control, automation, and sensor interfacing.
- Communications: Signal switching in base stations and RF systems.
- Consumer Electronics: Audio/video signal routing.
Its low on-resistance, high accuracy, and low power consumption make it ideal for precision signal switching in demanding environments.