The present invention is intended to provide an image 
pickup device-equipped 
rear view mirror with improved image 
pickup performance, glare prevention and appearance (design) in addition to 
improved performance as a vehicle mirror. A mirror element is formed by forming a reflecting film consisting of high 
refractive index material films and a low 
refractive index material film on a back surface of a transparent glass substrate. The 
integrating sphere reflectance of the mirror element in the 
visible range is 40% to 60% and the near-
infrared transmittance is no less than 70% for the whole or part of the band belonging to the near-
infrared range within the entire sensitive 
wavelength range of the near-
infrared camera. A black 
mask member is attached to an entire back surface of the reflecting film. The near-infrared camera is arranged behind the black 
mask member. The region corresponding to the area for the image-
pickup by the near-infrared camera within the entire region of the black 
mask member is formed of a visible-light absorption and near-
infrared transmission filter. The near-infrared 
transmittance of the visible-light absorption and near-
infrared transmission filter is no less than 70% for the whole or part of the band belonging to the near-infrared range within the entire sensitive 
wavelength range of the near-infrared camera.