mutex_lock(&priv->lock);
 
+       /* Enable the interrupts */
+       regmap_write(priv->regmap, BERLIN2_SM_ADC_STATUS,
+                    BERLIN2_SM_ADC_STATUS_INT_EN(channel));
+
        /* Configure the ADC */
        regmap_update_bits(priv->regmap, BERLIN2_SM_CTRL,
                        BERLIN2_SM_CTRL_ADC_RESET | BERLIN2_SM_CTRL_ADC_SEL_MASK
 
        mutex_lock(&priv->lock);
 
+       /* Enable interrupts */
+       regmap_write(priv->regmap, BERLIN2_SM_TSEN_STATUS,
+                    BERLIN2_SM_TSEN_STATUS_INT_EN);
+
        /* Configure the ADC */
        regmap_update_bits(priv->regmap, BERLIN2_SM_CTRL,
                        BERLIN2_SM_CTRL_TSEN_RESET | BERLIN2_SM_CTRL_ADC_ROTATE,
                struct iio_chan_spec const *chan, int *val, int *val2,
                long mask)
 {
-       struct berlin2_adc_priv *priv = iio_priv(indio_dev);
        int temp;
 
        switch (mask) {
                if (chan->type != IIO_VOLTAGE)
                        return -EINVAL;
 
-               /* Enable the interrupts */
-               regmap_write(priv->regmap, BERLIN2_SM_ADC_STATUS,
-                               BERLIN2_SM_ADC_STATUS_INT_EN(chan->channel));
-
                *val = berlin2_adc_read(indio_dev, chan->channel);
                if (*val < 0)
                        return *val;
                if (chan->type != IIO_TEMP)
                        return -EINVAL;
 
-               /* Enable interrupts */
-               regmap_write(priv->regmap, BERLIN2_SM_TSEN_STATUS,
-                               BERLIN2_SM_TSEN_STATUS_INT_EN);
-
                temp = berlin2_adc_tsen_read(indio_dev);
                if (temp < 0)
                        return temp;