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80V/2.5A Peak, High Frequency Full Bridge FET Driver with Charge Pump and Independent Control Inputs

封装信息

Pitch (mm) 2.54
Lead Count (#) 20
Pkg. Dimensions (mm) 26.16 x 6.60 x 3.94
Pkg. Code EWK
Pkg. Type PDIP

环境和出口类别

Moisture Sensitivity Level (MSL) Not Applicable
Pb (Lead) Free Yes
ECCN (US) EAR99
HTS (US) 8542390001
RoHS (HIP4081AIPZ) 下载

产品属性

Lead Count (#) 20
Carrier Type Tube
Moisture Sensitivity Level (MSL) Not Applicable
Pitch (mm) 2.5
Pkg. Dimensions (mm) 26.2 x 6.6 x 3.94
Pb (Lead) Free Yes
Pb Free Category Pb-Free 100% Matte Tin Plate w/Anneal-e3
Temp. Range -40 to +85°C
Country of Assembly Taiwan
Country of Wafer Fabrication United States
Price (USD) | 1ku 4.27681
Bootstrap Supply Voltage (Max) (V) 95
Charge Pump Yes
Fall Time 10
Input Logic Level 3.3V/TTL
Length (mm) 26.2
MOQ 720
Parametric Category Half-Bridge FET Drivers
Peak Pull-down Current (A) 2.4
Peak Pull-up Current (A) 2.6
Pkg. Type PDIP
Qualification Level Standard
Rise Time (μs) .010
Thickness (mm) 3.94
Turn-Off Prop Delay (ns) 35
Turn-On Prop Delay (ns) 60
VBIAS (Max) (V) 15
Width (mm) 6.6

描述

The HIP4081A is a high frequency, medium voltage Full Bridge N-Channel FET driver IC, available in 20 lead plastic SOIC and DIP packages. The HIP4081A can drive every possible switch combination except those which would cause a shoot-through condition. The HIP4081A can switch at frequencies up to 1MHz and is well suited to driving Voice Coil Motors, high-frequency switching power amplifiers, and power supplies. For example, the HIP4081A can drive medium voltage brush motors, and two HIP4081As can be used to drive high performance stepper motors, since the short minimum on-time can provide fine micro-stepping capability. Short propagation delays of approximately 55ns maximizes control loop crossover frequencies and dead-times which can be adjusted to near zero to minimize distortion, resulting in rapid, precise control of the driven load. A similar part, the HIP4080A, includes an on-chip input comparator to create a PWM signal from an external triangle wave and to facilitate hysteresis mode switching.