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Features Analog Gain Set, Differential to Single-ended conversion Number of channels 1 Vs (max) (V) 12 Vs (min) (V) 7 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 1500 Rating Catalog Operating temperature range (°C) -40 to 85
Features Analog Gain Set, Differential to Single-ended conversion Number of channels 1 Vs (max) (V) 12 Vs (min) (V) 7 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 1500 Rating Catalog Operating temperature range (°C) -40 to 85
SOIC (D) 8 29.4 mm² 4.9 x 6 VSSOP (DGK) 8 14.7 mm² 3 x 4.9
  • VS = ±5V, TA = 25°C, RF = 1 KΩ, RG = 100Ω, RL = 100Ω, AV = AVMAX = 9.7V/V, Typical values unless specified.
  • −3 dB BW 150 MHz
  • Gain control BW 150 MHz
  • Adjustment range (<10 MHz) 80 dB
  • Output offset voltage ±55 mV
  • Gain matching (limit) ±0.42 dB
  • Supply voltage range 7V to 12V
  • Slew rate (inverting) 1500 V/μs
  • Supply Current (no load) 11 mA
  • Linear Output Current ±60 mA
  • Output Voltage Swing ±2.2V
  • Input Noise Voltage 4.4 nV/√Hz
  • Input Noise Current 2.6 pA/√Hz
  • THD (20 MHz, RL = 100Ω, VO = 2 VPP) −45 dBc
  • Replacement for CLC5523

All trademarks are the property of their respective owners.

  • VS = ±5V, TA = 25°C, RF = 1 KΩ, RG = 100Ω, RL = 100Ω, AV = AVMAX = 9.7V/V, Typical values unless specified.
  • −3 dB BW 150 MHz
  • Gain control BW 150 MHz
  • Adjustment range (<10 MHz) 80 dB
  • Output offset voltage ±55 mV
  • Gain matching (limit) ±0.42 dB
  • Supply voltage range 7V to 12V
  • Slew rate (inverting) 1500 V/μs
  • Supply Current (no load) 11 mA
  • Linear Output Current ±60 mA
  • Output Voltage Swing ±2.2V
  • Input Noise Voltage 4.4 nV/√Hz
  • Input Noise Current 2.6 pA/√Hz
  • THD (20 MHz, RL = 100Ω, VO = 2 VPP) −45 dBc
  • Replacement for CLC5523

All trademarks are the property of their respective owners.

The LMH6504 is a wideband DC coupled voltage controlled gain stage followed by a high-speed current feedback Op Amp which can directly drive a low impedance load. Gain adjustment range is 80 dB for up to 10 MHz by varying the gain control input voltage, VG.

Maximum gain is set by external components, and the gain can be reduced all the way to cut-off. Power consumption is 110 mW with a speed of 150 MHz and a gain control bandwidth (BW) of 150 MHz. Output referred DC offset voltage is less than 55 mV over the entire gain control voltage range. Device-to-device gain matching is within ±0.42 dB at maximum gain. Furthermore, gain is tested over a wide range. The output current feedback Op Amp allows high frequency large signals (Slew Rate > 1500 V/μs) and can also drive a heavy load current (60 mA). Near ideal input characteristics (i.e. low input bias current, low offset, low pin 3 resistance) enable the device to be easily configured as an inverting amplifier as well (see Application Information section for details).

To provide ease of use when working with a single supply, VG range is set to be from 0V to +2V relative to the ground pin potential (pin 4). VG input impedance is high in order to ease drive requirement. In single supply operation, the ground pin is tied to a "virtual" half supply.

LMH6504 gain control is linear in dB for a large portion of the total gain control range. This makes the device suitable for AGC applications. For linear gain control applications, see the LMH6503 data sheet.

The combination of minimal external components and small outline packages (SOIC and VSSOP) allows the LMH6504 to be used in space-constrained applications.

The LMH6504 is a wideband DC coupled voltage controlled gain stage followed by a high-speed current feedback Op Amp which can directly drive a low impedance load. Gain adjustment range is 80 dB for up to 10 MHz by varying the gain control input voltage, VG.

Maximum gain is set by external components, and the gain can be reduced all the way to cut-off. Power consumption is 110 mW with a speed of 150 MHz and a gain control bandwidth (BW) of 150 MHz. Output referred DC offset voltage is less than 55 mV over the entire gain control voltage range. Device-to-device gain matching is within ±0.42 dB at maximum gain. Furthermore, gain is tested over a wide range. The output current feedback Op Amp allows high frequency large signals (Slew Rate > 1500 V/μs) and can also drive a heavy load current (60 mA). Near ideal input characteristics (i.e. low input bias current, low offset, low pin 3 resistance) enable the device to be easily configured as an inverting amplifier as well (see Application Information section for details).

To provide ease of use when working with a single supply, VG range is set to be from 0V to +2V relative to the ground pin potential (pin 4). VG input impedance is high in order to ease drive requirement. In single supply operation, the ground pin is tied to a "virtual" half supply.

LMH6504 gain control is linear in dB for a large portion of the total gain control range. This makes the device suitable for AGC applications. For linear gain control applications, see the LMH6503 data sheet.

The combination of minimal external components and small outline packages (SOIC and VSSOP) allows the LMH6504 to be used in space-constrained applications.

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모두 보기1
유형 직함 날짜
* Data sheet LMH6504 Wideband, Low Power, Variable Gain Amplifier datasheet (Rev. D) 2013/03/18

설계 및 개발

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평가 보드

LMH730066 — 8핀 SOIC 패키지의 고속 단일 가변 게인 증폭기용 평가 보드

Texas Instruments offers this unpopulated Evaluation Board to aid in the evaluation and testing of high-speed Variable Gain Amplifier that are offered in the 8-Pin SOIC package. Resistors, capacitors, or any other surface-mount components can be easily mounted on this board in the desired circuit (...)

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시뮬레이션 모델

LMH6504 PSPICE Model

SNOM151.ZIP (4 KB) - PSpice Model
시뮬레이션 툴

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TI용 PSpice®는 아날로그 회로의 기능을 평가하는 데 사용되는 설계 및 시뮬레이션 환경입니다. 완전한 기능을 갖춘 이 설계 및 시뮬레이션 제품군은 Cadence®의 아날로그 분석 엔진을 사용합니다. 무료로 제공되는 TI용 PSpice에는 아날로그 및 전력 포트폴리오뿐 아니라 아날로그 행동 모델에 이르기까지 업계에서 가장 방대한 모델 라이브러리 중 하나가 포함되어 있습니다.

TI 설계 및 시뮬레이션 환경용 PSpice는 기본 제공 라이브러리를 이용해 복잡한 혼합 신호 설계를 시뮬레이션할 수 있습니다. 레이아웃 및 제작에 (...)
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사용 설명서: PDF
패키지 다운로드
SOIC (D) 8 옵션 보기
VSSOP (DGK) 8 옵션 보기

주문 및 품질

포함된 정보:
  • RoHS
  • REACH
  • 디바이스 마킹
  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
  • 지속적인 신뢰성 모니터링
포함된 정보:
  • 팹 위치
  • 조립 위치

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