LT1999MPMS8-10#PBF Linear Technology, LT1999MPMS8-10#PBF Datasheet - Page 15

SC-Amps/Current Sense, High Voltage, Bidirectional Current Sense Amplifier

LT1999MPMS8-10#PBF

Manufacturer Part Number
LT1999MPMS8-10#PBF
Description
SC-Amps/Current Sense, High Voltage, Bidirectional Current Sense Amplifier
Manufacturer
Linear Technology
Datasheet

Specifications of LT1999MPMS8-10#PBF

Input Bias Current
137.5µA
Output Current Per Channel
26mA
Input Offset Voltage
1.5mV
Bandwidth
2MHz
Cmrr
120dB
Slew Rate
3V/µs
Supply Voltage Range
4.5V To 5.5V
Supply Current
3µA
Rohs Compliant
Yes
No. Of Amplifiers
2

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APPLICATIONS INFORMATION
Input Common Mode Range
The LT1999 was optimized for high common mode re-
jection. Its input stage is balanced and fully differential,
designed to amplify differential signals and reject common
mode signals. There is negligible crossover distortion due
to sense voltage reversals. The amplifi er is most linear in
the zero-sense region.
With the V
tested range (4.5V < V
mode range extends from –5V to 80V. Pushing +IN and
–IN beyond the limits specifi ed in the Absolute Maximum
table can turn on the voltage clamps designed to protect
the +IN and –IN pins during ESD events.
It is possible to operate the LT1999 on power supplies
as low as 4V (although it is not tested or specifi ed below
4.5V). Operating the LT1999 on supplies below 4V will
produce erratic behavior. When operating the LT1999
with supplies as low as 4V, the common mode range for
inputs which extend below GND is reduced. Refer to the
Block Diagram (Figure 1). For inputs driven below V
diode D1 conducts. For proper operation, the input to the
transconductor V(G
2.25V above the GND pin. V(G
of a voltage divider comprised of R
likewise sits in the middle of the voltage divider comprised
of R
by the following equation:
Setting V(G
equal to 0.8V (cold temperatures), a plot of the lower input
common mode range plotted against supply is shown in
Figure 3.
V(G
– S
+IN
, and R
) = V
+
+ IN
+IN
supply confi gured within the specifi ed and
) = 2.25V, the ratio (R
– IN
R
). The voltage on V(G
+S
+ IN
R
+ R
) must be biased at approximately
+S
+
< 5.5V), the LT1999’s common
+IN
+ V
+ IN
(
) sits on the centertap
+
+ IN
−V
+ S
/R
D1
+ IN
and R
+ S
)
) input is given
) to 5, and V
R
+ IN
+S
R
+ R
V(G
+IN
+IN
– IN
D1
+
)
,
Output Common Mode Range
The LT1999’s output common mode level is set by the
voltage on the REF pin. The REF pin sits in the middle of
a 160k to 160k voltage divider connected between V
GND which sets the default open circuit potential of the
REF pin to mid-supply. It can be overdriven by an external
voltage source capable of driving 80k tied to a mid-supply
potential. See the Electrical Characteristics table for the
REF pin’s specifi ed input voltage range.
Differential sampling of the OUT pin with respect the REF
pin provides the best noise immunity. Measurements of
the output voltage made differentially with respect to the
REF pin will provide the highest power supply and com-
mon mode rejection. Otherwise, power supply or GND pin
disturbances are divided by the REF pin’s voltage divider
and appear directly at the noninverting input of the trans-
resistance amplifi er A
If not driven by a low impedance (<100Ω), the REF pin
should be fi ltered with at least 1nF of capacitance to a
low impedance, low noise ground plane. This external
capacitance will also provide a charge reservoir during
high frequency sampling of the REF pin by ADC inputs
attached to this pin.
Figure 3. Lower Input Common Mode vs Supply Voltage
–2.0
–2.5
–3.0
–3.5
–4.0
–4.5
–5.0
–5.5
–6.0
LT1999-10/LT1999-20/
4
4.25
BELOW GROUND INPUT
COMMON MODE RANGE
LIMITED BY V
SUPPLY VOLTAGE
O
SUPPLY VOLTAGE (V)
TYPICAL ESD CLAMP VOLTAGE
4.5
and are not rejected.
BELOW GROUND INPUT
COMMON MODE RANGE
LIMITED BY ESD CLAMPS
4.75
+
5
LT1999-50
5.25
1999 F03
5.5
15
+
1999fa
and

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