{"error":{"root_cause":[{"type":"query_shard_exception","reason":"failed to create query: {\n \"regexp\" : {\n \"keyword\" : {\n \"value\" : \".*ADA4860-1,pdf datasheet (High.*\",\n \"flags_value\" : 65535,\n \"max_determinized_states\" : 10000,\n \"boost\" : 1.0\n }\n }\n}","index_uuid":"SON-ziQURzKK3JljPlVlCQ","index":"recommend_keyword_search_v1"}],"type":"search_phase_execution_exception","reason":"all shards failed","phase":"query","grouped":true,"failed_shards":[{"shard":0,"index":"recommend_keyword_search_v1","node":"-Gn7X2aRSFmN2hMyaNEUCA","reason":{"type":"query_shard_exception","reason":"failed to create query: {\n \"regexp\" : {\n \"keyword\" : {\n \"value\" : \".*ADA4860-1,pdf datasheet (High.*\",\n \"flags_value\" : 65535,\n \"max_determinized_states\" : 10000,\n \"boost\" : 1.0\n }\n }\n}","index_uuid":"SON-ziQURzKK3JljPlVlCQ","index":"recommend_keyword_search_v1","caused_by":{"type":"illegal_argument_exception","reason":"expected ')' at position 33"}}}]},"status":400}
ADA4937-1 / [ADA4937-2]是低噪声、超低失真、高速差分放大器。非常适合驱动分辨率最高16位、DC至100 MHz的高性能ADC。可调输出共模电平使ADA4937-1/
2025-03-17 11:17
ADA4939-1 / ADA4939-2是一款低噪声、超低失真、高速差分放大器。它非常适合驱动从直流到100 MHz,分辨率高达16 bit的高性能ADC。用户可以利用内部共模反馈环路调整输出共模
2025-03-17 09:47
ADA4950-1/ADA4950-2是ADA4932-1/ADA4932-2的增益可选版本,具有片上反馈和增益电阻。作为单端至差分或差分至差分放大器,这款器件是驱动高
2025-03-14 17:22
ADA4938-1 / [ADA4938-2]是低噪声、超低失真、高速差分放大器。非常适合驱动分辨率最高16位、DC至27 MHz或者最高12位、DC至74 MHz的高性能ADC。ADA4938-1
2025-03-17 15:17
ADA4930-1/[ADA4930-2]是超低噪声、低失真、高速差分放大器,非常适合驱动分辨率最高14位、DC至70 MHz的1.8 V高性能ADC。可调输出共模电平使ADA4930-1
2025-03-14 10:15
ADA4940-1 / ADA4940-2是低噪声、低失真、超低功耗的差分放大器,非常适合驱动分辨率最高为18位、DC至1MHz的低功耗、高分辨率、高性能SAR型和Σ-Δ型模数转换器(ADC),静态
2025-03-14 11:58
基于大众所熟知的 NVIDIA Ada Lovelace 架构,NVIDIA RTX 4500 Ada Generation是一款介于 NVIDIA RTX 4000 Ada 和 NVIDIA RTX 5000
2025-03-05 10:30
问:ADA4350可写不可读是怎么回事,如何实现串口读写?
2023-10-31 16:35
ADA4940-1/ADA4940-2是低噪声、低失真、超低功耗的差分放大器,非常适合驱动分辨率最高为18位、DC至1 MHz的低功耗、高分辨率、高性能SAR型和Σ-Δ型模数转换器(ADC),静态
2025-03-14 13:42
ADA4896-2/ADA4897-1/ADA4897-2是单位增益稳定、低噪声、轨到轨输出、高速电压反馈型放大器,静态电流为3 mA,1/f噪声为2.4 nV/_Hz
2014-07-29 15:06