Features
Battery Cell Controller, Advanced, 6 Channels, TPL, LQFP48.
Package
HLQFP48 LQFP64, plastic, low profile quad flat package; 64 terminals; 0.5 mm pitch; 10 mm x 10 mm x 1.4 mm body.
Battery Cell Controller, Advanced, 6 Channels, TPL, LQFP48.
HLQFP48 LQFP64, plastic, low profile quad flat package; 64 terminals; 0.5 mm pitch; 10 mm x 10 mm x 1.4 mm body.
LQFP80: LQFP80, plastic, low profile quad flat package; 80 terminals; 0.65 mm pitch; 14 mm x 14 mm x 1.4 mm body
12NC: 935309286557
詳細
注文
パラメータ | 値 |
---|---|
Security Status | COMPANY PUBLIC |
Description | 150 MHZ VERSION DSPB371 |
パラメータ | 値 |
---|---|
Number of pins | 80 |
Package Style | LQFP |
Part/12NC | 鉛フリー | EU RoHS | ハロゲンフリー | RHFインジケーター | 2次インターコネクト | REACH SVHC | Weight (mg) |
---|---|---|---|---|---|---|---|
DSPB56371AF150(935309286557) | Yes | Yes Certificate Of Analysis (CoA) | Yes | e3 | REACH SVHC | 637.55 |
Part/12NC | 安全保障機能安全 | 吸湿感度レベル (MSL) | Peak Package Body Temperature (PPT) (C°) | Maximum Time at Peak Temperatures (s) | |||
---|---|---|---|---|---|---|---|
鉛フリーはんだ | 鉛フリーはんだ | 鉛フリーはんだ | |||||
DSPB56371AF150 (935309286557) | No | 3 | 260 | 40 |
Part/12NC | 関税分類番号(米国)免責事項: | 輸出規制品目番号(米国) |
---|---|---|
DSPB56371AF150 (935309286557) | 854231 | 3A991A2 |
Part/12NC | 発行日 | 有効期限 | PCN | タイトル |
---|---|---|---|---|
DSPB56371AF150 (935309286557) | 2020-12-15 | 2020-12-16 | 202011011I | NXP Will Add a Sealed Date to the Product Label |
DSPB56371AF150 (935309286557) | 2020-10-30 | 2020-11-30 | 202007015I | NXP Standardized Tray Attributes for LQFP 14x14 Bulk Shipments |
DSPB56371AF150 (935309286557) | 2017-12-20 | 2018-01-03 | 201710023I | New PQ Label Input for Non-MPQ Shipments |
Targeted at audio/video (AV) receivers, home theaters, surround sound decoders, mini stereo systems, digital TV audio systems and automotive audio systems, the DSP56371 is designed to meet the demands of audio electronics system designers by supporting the latest generation decoders, such as Dolby®, THX® and DTS®, among others.
The DSP56371 is capable of running delay management, bass management and DTS96/24 while using less than half of the DSP's computing capability. This enables designers to add system enhancements that the discerning audio consumer expects. The performance increase is made possible through the use of a higher core frequency, fewer memory wait states, a larger amount of on-chip static random access memory (SRAM) and the addition of an enhanced filter coprocessor (EFCOP). By removing the need for external high-speed SRAM and making smaller, less complex boards, the DSP56371 is performance-rich and cost-effective.