Analog Devices

ADV202BBCZ - JPEG2000 Video Codec | Analog Devices

MPN: ADV202BBCZ βœ“ Active
In Stock Ships in 1-3 business days
1.9 V (core), 3.6 V (I/O) Vdss 144-CSPBGA (13x13 mm) Package 150 MHz Speed
From $11 USD / Unit
MOQ: 1 |
Price updated: 2026-08-21
Volume Pricing
Qty Unit Price Extended
1 $16.41 $16.41
10 $15.2 $152.00
100 $13.5 $1,350.00
500 $12.1 $6,050.00
1,000 $11 $11,000.00
ℹ️ All prices are in USD

Drop-in alternatives for ADV202BBCZ β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

ADV202BBCZ-150

βœ… Drop-In
πŸ“¦ 144-CSPBGA (13x13 mm)
Same device, explicit 150 MHz speed grade

πŸ“‹ Reference alternative (not in catalog)

ADV202BBCZ-115

βœ… Drop-In
πŸ“¦ 144-CSPBGA (13x13 mm)
Lower maximum clock frequency (115 MHz vs 150 MHz)

πŸ“‹ Reference alternative (not in catalog)

ADV202BBC-150

βœ… Drop-In
πŸ“¦ 144-CSPBGA (13x13 mm)
Non-Z package variant, same die and pinout

πŸ“‹ Reference alternative (not in catalog)

ADV202BBC-115

βœ… Drop-In
πŸ“¦ 144-CSPBGA (13x13 mm)
Non-Z package, 115 MHz speed grade

πŸ“‹ Reference alternative (not in catalog)

ADV212BBCZ

⚑ Same Package
πŸ“¦ 144-CSPBGA (13x13 mm)
JPEG2000 codec with different feature set, not pin-compatible

πŸ“‹ Reference alternative (not in catalog)

ADV202BBCZ Maximum Ratings & Electrical Characteristics

Type Video Codec (JPEG2000)
Resolution 16 bit
Interface Type Parallel
Supply Voltage - Max 1.9 V (core), 3.6 V (I/O)
Supply Voltage - Min 1.7 V (core), 3.0 V (I/O)
Operating Temperature Range -40C to +85C
Package 144-CSPBGA (13x13 mm)
Mounting Type Surface Mount
Maximum Clock Frequency 150 MHz
Power Dissipation 1.5 W (typical)
Video Input Formats YCbCr 4:2:2, 4:4:4
Compression Ratio Programmable (lossy/lossless)
Host Interface Parallel and SPI
RoHS Status Compliant
Moisture Sensitivity Level 3 (168 hours)

ADV202BBCZ Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 VDD_CORE β€” 1.8V core power supply
Pin A2 GND β€” Ground
Pin A3 PD[0] β€” Parallel data input/output bit 0
Pin A4 PD[1] β€” Parallel data input/output bit 1
Pin A5 PD[2] β€” Parallel data input/output bit 2
Pin A6 PD[3] β€” Parallel data input/output bit 3
Pin A7 PD[4] β€” Parallel data input/output bit 4
Pin A8 PD[5] β€” Parallel data input/output bit 5
Pin A9 PD[6] β€” Parallel data input/output bit 6
Pin A10 PD[7] β€” Parallel data input/output bit 7
Pin A11 PD[8] β€” Parallel data input/output bit 8
Pin A12 PD[9] β€” Parallel data input/output bit 9

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for ADV202BBCZ Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

ADV202BBCZ is suitable for 6 applications: Video Surveillance Systems, Medical Imaging Devices, Broadcast Video Servers, Military and Aerospace Video Links, Digital Cinema and Post-Production, Industrial Inspection Systems.

πŸŽ₯

Video Surveillance Systems

The ADV202BBCZ is ideal for video surveillance systems that require real-time compression of standard-definition video streams. Its JPEG2000 compression provides high image quality at low bit rates, enabling efficient storage and transmission. The device's low latency (typically <1 frame) ensures minimal delay in live monitoring. With support for resolutions up to D1 (720x576) at 30 fps, it can handle multiple camera feeds when paired with a multiplexer. The parallel host interface simplifies integration with microcontrollers or FPGAs, and the SPI mode allows for serial configuration. Power dissipation of 1.5W is acceptable for fixed installations, and the -40C to +85C temperature range suits outdoor enclosures.

πŸ’Š

Medical Imaging Devices

In medical imaging, the ADV202BBCZ provides lossless JPEG2000 compression for modalities like ultrasound and endoscopy. Lossless compression preserves diagnostic detail, which is critical for accurate analysis. The device supports 16-bit pixel data, accommodating high-dynamic-range sensors. Its low power consumption is beneficial for portable devices. The SPI interface allows easy configuration by an embedded processor. The device's small 13x13 mm CSPBGA package fits compact PCB designs. Compliance with RoHS ensures suitability for medical equipment sold in regulated markets. The wide operating temperature range supports sterilization processes that may expose the device to elevated temperatures.

πŸ“Ί

Broadcast Video Servers

The ADV202BBCZ is used in broadcast video servers for ingesting and playing out SD video. Its JPEG2000 compression offers visually lossless quality at moderate bit rates, suitable for archival and editing. The device's 150 MHz clock enables real-time encoding of D1 video. The parallel interface connects directly to FPGA-based video processing chains. The device supports both lossy and lossless modes, allowing operators to choose quality vs. storage trade-offs. Its deterministic latency is important for frame-accurate editing. The device's robust design ensures reliable operation in 24/7 broadcast environments. The -40C to +85C range covers equipment rooms with varying thermal conditions.

✈️

Military and Aerospace Video Links

The ADV202BBCZ is suitable for military and aerospace applications requiring secure, low-latency video transmission. Its JPEG2000 compression provides resilience to transmission errors, which is critical in noisy RF links. The device's low power consumption is advantageous for battery-powered or heat-constrained platforms. The wide temperature range (-40C to +85C) and RoHS compliance meet defense procurement standards. The parallel interface allows direct connection to encryption modules. The device's small footprint saves board space in avionics. The 150 MHz speed grade supports real-time encoding of sensor video. The device's long-term availability is important for defense programs with extended lifecycles.

🎬

Digital Cinema and Post-Production

In digital cinema, the ADV202BBCZ is used for real-time preview and proxy generation. Its JPEG2000 compression supports high-quality images with manageable file sizes. The device's 16-bit resolution handles 10-bit and 12-bit video formats common in cinema. The parallel interface connects to high-speed data paths. The device's low latency is essential for on-set monitoring. The device's programmable compression ratio allows adjustment for different quality levels. The 150 MHz clock ensures smooth playback of D1 resolution proxies. The device's small package integrates into portable field recorders. The device's power efficiency extends battery life in mobile equipment.

🏭

Industrial Inspection Systems

The ADV202BBCZ is used in industrial inspection systems for real-time compression of video from high-speed cameras. JPEG2000's lossless mode is valuable for defect detection where detail is critical. The device's 16-bit interface supports high-bit-depth sensors. The parallel interface allows direct connection to frame grabbers. The device's low latency enables real-time feedback for automated sorting. The device's wide temperature range suits factory environments. The device's small package fits into compact vision systems. The device's low power consumption reduces heat in sealed enclosures. The device's RoHS compliance meets environmental regulations for industrial equipment.

Recommended Products Summary

ADV202 Analog Devices Used in: Video Surveillance Systems, Medical Imaging Devices, Broadcast Video Servers, Military and Aerospace Video Links, Digital Cinema and Post-Production, Industrial Inspection Systems ADV212BBCZ Higher-performance JPEG2000 codec Used in: Video Surveillance Systems, Medical Imaging Devices, Broadcast Video Servers, Military and Aerospace Video Links, Digital Cinema and Post-Production, Industrial Inspection Systems
What is the ADV202BBCZ?
The ADV202BBCZ is a single-chip JPEG2000 video codec from Analog Devices. It performs real-time compression and decompression of standard-definition video, supporting 16-bit parallel input/output and operating at up to 150 MHz. According to the ADV202 datasheet, it is designed for broadcast, medical, and surveillance applications.
What is the price of ADV202BBCZ?
As of 2026-08-22, the ADV202BBCZ is priced at $16.41 for a single unit at LCSC Electronics. Volume pricing drops to approximately $11.00 at 1000 units. Prices vary by distributor and availability, so check current stock at DigiKey, Mouser, or Octopart for the latest quotes.
Where can I buy ADV202BBCZ online?
The ADV202BBCZ is available from several online distributors including LCSC Electronics, DigiKey, Mouser, and Octopart. As of 2026-08-22, LCSC lists it in stock at $16.41. DigiKey offers the ADV202BBCZ-115 and ADV202BBCZ-150 variants. Always verify stock and pricing on the distributor's website before ordering.
What is the lead time for ADV202BBCZ?
Lead time for the ADV202BBCZ varies by distributor and current demand. As of 2026-08-22, LCSC indicates it is in stock, suggesting immediate shipment. For larger quantities, lead times may extend to 4-6 weeks. Contact your preferred distributor for accurate lead time information.
Is ADV202BBCZ in stock?
As of 2026-08-22, the ADV202BBCZ is listed as in stock at LCSC Electronics. Other distributors like DigiKey may have stock for the -115 and -150 variants. Check the specific distributor's website for real-time inventory status.
What is the difference between ADV202BBCZ and ADV202BBCZ-115?
The ADV202BBCZ typically refers to the 150 MHz speed grade, while the ADV202BBCZ-115 operates at 115 MHz. Both are pin-compatible and share the same 144-CSPBGA package. The -150 offers higher throughput, making it suitable for higher-resolution or higher-frame-rate applications. According to DigiKey listings, the -115 is also available.
What is the difference between ADV202BBCZ and ADV202BBCZ-150?
The ADV202BBCZ and ADV202BBCZ-150 are essentially the same part; the -150 suffix explicitly denotes the 150 MHz speed grade. The base ADV202BBCZ is often used interchangeably with the -150. Both are pin-compatible and have identical specifications except for the maximum clock frequency.
When should I choose ADV202BBCZ over ADV202BBCZ-115?
Choose the ADV202BBCZ (150 MHz) when you need maximum video throughput, such as for real-time encoding of D1 resolution at 30 fps with low latency. The -115 variant is suitable for lower-bandwidth applications where power consumption is a concern, as it may consume slightly less power. Both are drop-in compatible, so you can start with the -150 and switch if needed.
What is the best drop-in replacement for ADV202BBCZ?
The best drop-in replacement for the ADV202BBCZ is the ADV202BBCZ-150, which is the same device with explicit speed grade. Other pin-compatible alternatives include the ADV202BBCZ-115 (lower speed) and the ADV202BBC-150 (non-Z package variant). For cross-brand options, no direct pin-compatible equivalents exist from other manufacturers, so stick with the ADV202 family.
Can ADV202BBCZ-115 replace ADV202BBCZ?
Yes, the ADV202BBCZ-115 can replace the ADV202BBCZ as it is pin-compatible and shares the same package. However, the -115 operates at a lower maximum clock frequency (115 MHz vs 150 MHz), which may reduce throughput. Ensure your application does not require the higher speed grade before substituting.
Where can I download the ADV202BBCZ datasheet PDF?
The ADV202BBCZ datasheet is available from Analog Devices' official website at https://www.analog.com/media/en/technical-documentation/data-sheets/ADV202.pdf. It is also accessible via distributor sites like DigiKey and Octopart. The datasheet provides full specifications, pinout, and application circuits.
Where can I find the ADV202BBCZ pinout?
The ADV202BBCZ pinout is detailed in the official datasheet, which is available from Analog Devices. The device uses a 144-ball CSPBGA package with specific ball assignments for data, control, and power. Refer to the datasheet's pin configuration section for the complete pinout diagram.
What are the key specifications of ADV202BBCZ that engineers should know?
The ADV202BBCZ is a JPEG2000 video codec with 16-bit resolution, supporting parallel interface and operating at up to 150 MHz. It comes in a 144-CSPBGA package, operates from 1.8V core and 3.3V I/O supplies, and dissipates approximately 1.5W. It supports YCbCr 4:2:2 and 4:4:4 video formats and offers programmable compression ratios for lossy and lossless encoding.
Is ADV202BBCZ the same as ADV202BBCZ-150?
Yes, the ADV202BBCZ is essentially the same as the ADV202BBCZ-150. The -150 suffix explicitly indicates the 150 MHz speed grade, while the base part number ADV202BBCZ is commonly used to refer to the same device. Both are pin-compatible and have identical specifications.
What is the best Analog Devices equivalent for ADV202BBCZ?
The best Analog Devices equivalent for the ADV202BBCZ is the ADV202BBCZ-150, which is the same device. Other family members include the ADV202BBCZ-115 (lower speed) and the ADV202BBC-150 (non-Z package). For a different function, consider the ADV212, but it is not pin-compatible.

Engineering reference data for ADV202BBCZ β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the ADV202BBCZ when you need a high-performance JPEG2000 video codec with 150 MHz clock speed for real-time SD video compression. It is ideal for applications requiring low latency and high image quality, such as broadcast, medical, and surveillance. If your application can tolerate a lower clock speed, the ADV202BBCZ-115 offers cost savings. For designs that do not require RoHS compliance, the ADV202BBC-150 is a drop-in alternative. The ADV212BBCZ is a functional alternative but not pin-compatible, so it requires PCB redesign. Always verify pin compatibility and electrical specifications before substitution.

Comparison with Alternatives

Parameter This Product ADV202BBCZ-150 ADV202BBCZ-115 ADV202BBC-150
Package 144-CSPBGA (13x13 mm) 144-CSPBGA (13x13 mm) 144-CSPBGA (13x13 mm) 144-CSPBGA (13x13 mm)
Brand Analog Devices Analog Devices Analog Devices Analog Devices
Maximum Clock Frequency 150 MHz 150 MHz 115 MHz 150 MHz
Resolution 16 bit 16 bit 16 bit 16 bit
Interface Type Parallel Parallel Parallel Parallel
Supply Voltage - Max 1.9 V (core), 3.6 V (I/O) 1.9 V (core), 3.6 V (I/O) 1.9 V (core), 3.6 V (I/O) 1.9 V (core), 3.6 V (I/O)
Operating Temperature Range -40C to +85C -40C to +85C -40C to +85C -40C to +85C
RoHS Status Compliant Compliant Compliant Compliant

Key Differentiators

  • Higher maximum clock frequency (150 MHz) compared to -115 variant (vs ADV202BBCZ-115)
  • Z-package variant with improved thermal performance (vs ADV202BBC-150)
  • Explicit 150 MHz speed grade ensures guaranteed performance (vs ADV202BBCZ-115)

Design Notes

The ADV202BBCZ requires separate 1.8V core and 3.3V I/O supplies. Use low-impedance decoupling capacitors (e.g., 0.1uF and 10uF) close to each power pin. The core supply should be clean and stable; consider a dedicated LDO if the system has noisy digital rails. Total power dissipation is approximately 1.5W, so ensure adequate thermal management, especially in enclosed systems.

Follow the layout guidelines in the ADV202 datasheet. Keep the parallel data bus traces matched in length to avoid skew. Use a solid ground plane under the CSPBGA package. Place the device away from high-speed switching circuits to minimize noise coupling. For the SPI interface, use series resistors to reduce ringing.

Ensure the host interface is properly configured before starting video processing. The device requires initialization via the host interface. Do not exceed the maximum clock frequency of 150 MHz. Verify that the input video format is supported (YCbCr 4:2:2 or 4:4:4). Also, ensure the core supply voltage is within 1.7V to 1.9V to avoid malfunction.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliant per LCSC and DigiKey listings. Not AEC-Q100 qualified as it is not an automotive component.

Data verified on: 2026-08-22
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