Analog Devices AD9515BCPZ Datasheet
The AD9515BCPZ is a high-performance, ultra-low jitter clock distribution and divider integrated circuit designed to optimize data converter performance in demanding RF and high-speed signaling environments. Featuring an advanced architecture with two independent programmable clock outputs, it supports clock inputs up to 1.6 GHz.
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Part Number: AD9515BCPZ
Manufacturer: Analog Devices Inc.
Stock: 1, 000 pcs
Date Code: 25+
Package: LFCSP32
Technical Specifications Table of AD9515BCPZ
The following table outlines the key technical parameters critical for global procurement managers and hardware design engineers:
| Parameter | Specifications |
| Manufacturer | Analog Devices Inc. (ADI) |
| Operating Temperature Range | Industrial Grade: -40°C to +85°C |
| Supply Voltage (Vs) | 3.3 V (±5\%) |
| Input Frequency (Max) | 1.6 GHz |
| Output Types | 1 x LVPECL, 1 x LVDS/CMOS |
| Programmable Dividers | Divide-by integers from 1 to 32 |
| Package | 32-Lead LFCSP (5mm x 5mm) |
| RoHS/REACH Compliance | Compliant |
Supply Chain & Procurement Insights
Market Availability & Lead Time Trends
The AD9515 series from Analog Devices is an industry-standard component widely adopted across communication infrastructure and industrial automation layout designs. Due to strict requirements for precision timing, standard factory lead times from authorized channels can often stretch from 16 to 26 weeks during demand peaks. ICHOME mitigates this volatility by maintaining stable safety stock buffers through our verified global supplier network, providing immediate procurement options to bypass long factory lead times.
Pin-less Configuration (No Controller Needed)
A key procurement and manufacturing benefit of the AD9515BCPZ is that it does not require an external microcontroller or SPI/I2C programming lines. It uses 11 dedicated 4-level logic setup pins (S0 to S10) for hardware-configured programming. This reduces BOM component count, shortens firmware development cycles, and minimizes system failure points.
Cross-Reference & Alternative of AD9515BCPZ
When face-to-face with critical allocation shortages or cost-reduction mandates, procurement managers can evaluate the following functional equivalent alternatives:
AD9515BCPZ-REEL7: This is the exact same silicon and package variant, delivered in a 7-inch tape-and-reel format instead of standard trays. It represents a 100% drop-in replacement ideal for high-volume automated SMT pick-and-place lines.
AD9513BCPZ: Also part of Analog Devices’ low-jitter clock family. The AD9513 features three outputs (supporting LVPECL/LVDS/CMOS combination matrices) up to 800 MHz. If your design input clock falls under 800 MHz and can tolerate slightly different output structures, the AD9513 can serve as an excellent functional equivalent fallback with proper board re-layout.
Applications of ADI AD9515BCPZ
The AD9515BCPZ is optimized for high-end electronic architectures across European and North American industrial, military-adjacent, and commercial sectors:
- High-Speed Data Converter Clocking: Direct clocking for high-performance ADCs, DACs, DDSs, and MxFEs to maximize SNR and dynamic range.
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Wireless Transceivers & Base Stations: Low phase noise distribution for multi-carrier broadband infrastructure and 5G cellular stations.
- Automated Test Equipment (ATE): High-precision instrumentation timing requiring rigid skew control and sub-picosecond repeatability.
- Broadband & Network Routers: Synchronous clock provisioning across backplanes and high-speed network switches.
Package Outline of AD9515BCPZ
The component is housed in a compact 32-Lead Lead Frame Chip Scale Package (LFCSP) measuring 5mm x 5mm.

What Is the Main Difference Between the AD9515 and the AD9514?
While both parts belong to ADI's high-speed clock distribution portfolio, the core difference lies in the number and type of outputs. The AD9515 features two outputs (one dedicated 1.6 GHz LVPECL and one flexible 800 MHz LVDS/250 MHz CMOS channel) along with an analog delay block providing up to 10 ns of fine delay adjust on the second channel. In contrast, the AD9514 provides three clock outputs but lacks the programmable analog delay block lines integrated on chip. Choose the AD9515 when precise time-delay adjustments and signal alignment between two paths are required.
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