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PDF LSP2908 Data sheet ( Hoja de datos )

Número de pieza LSP2908
Descripción 8-Channel / High-Voltage Driver
Fabricantes Agere Systems 
Logotipo Agere Systems Logotipo



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Advance Data Sheet
September 2001
LSP2908
8-Channel, High-Voltage Driver
Features
I Eight amplifier channels in one package
I Outputs from –298 V to +160 V per channel
I Programmable output current limit (100 µA to
500 µA)
I Variable voltage gain set by external resistors
Applications
I Optical crosspoint switches
I Optical microelectromechanical systems (MEMS)
components
Description
The LSP2908 eight-channel, high-voltage (HV) driver
is targeted for microoptomechanical systems. Each
device contains eight high-voltage amplifiers with an
output voltage range of –298 V to +160 V on the
condition that |VHP – VHN| 300 V. Voltage gain is
set by external resistors. Each amplifier can output
up to 500 µA, ideal for deflection and control of
optical MEMS mirrors. Output current limit is
programmed by an external resistor. Additionally,
careful attention is paid to minimizing offset drift over
temperature.
The LSP2908 requires one negative high-voltage
power supply (VHN) and one positive low-voltage
power supply (VLP). For positive output voltage appli-
cations, one positive high-voltage power supply
(VHP) is required. Corresponding to the eight chan-
nels are the eight inverting input pins, –INx
(x = 1, 2, . . . , 8), and the corresponding eight output
pins, OUTPUTx (x = 1, 2, . . . , 8). Figure 1 is the
internal functional block diagram.
+IN is the noninverting input for all eight amplifiers.
All the amplifiers share the same noninverting input.
+IN should be connected to GND. The IBIAS pin will
set the current limit ((100 µA to 500 µA) ± 20%) for
the amplifiers by connecting it to an external resistor
Rib. The LSP2908 is available in a leaded surface-
mount 44-pin MQFP package.
LSP2908
–IN1
OUTPUT 1
+
–IN8
OUTPUT 8
+IN +
Figure 1. LSP2908 Internal Block Diagram
1682.b(F)

1 page




LSP2908 pdf
Advance Data Sheet
September 2001
LSP2908
8-Channel, High-Voltage Driver
Electrical Characteristics
TA = 25 °C, VLP = 12 V, VHN = –220 V, VHP = 12 V, noninverting input +IN = 0 V, RI = 475 k, RF = 10 M,
IBIAS resistor = 425 kΩ.
Table 3. Electrical Characteristics
Parameters
Symbol
Condition
Min
Input Characteristics
Input Resistance
R
Input Offset Voltage
–IN = 0 V
Input Offset Voltage Drift —
–IN = 0 V
0 °C—70 °C
Input Bias Current
I(–INx)
–IN = 0 V
Input Bias Current
I(+IN)
–IN = 0 V
Power Supply
Rejection Ratio
Input Range*
PSRR
VHN
VHP
VLP
–IN
Gain
Gain Temperature
Coefficient
GTC
Amplifier Output Characteristics
Output Resistance
Amplifier Current Limit*
Rib = 425 k
Output Voltage
Dynamics Characteristics
–3 dB Bandwidth
C = 150 pF
R = 10 M
Slew Rate
C = 150 pF
R = 10 M
Settling Time†, ‡
C = 150 pF
R = 10 M
Input pulse = 0 V—5 V
RF = 10 M
RI = 392 k
Input pulse = 0 V—5 V
RF = 10 M
RI = 392 k
Power Supply Currents at Room Temperature
Quiescent Current
I(VHN)
VHN = –150.0 V
I(VHP)
I(VLP)
VLP = 12.0 V
VHP = 150.0 V
–IN = 0 V
Power Consumption
P
VHN = –150.0 V
VLP = 12.0 V
VHP = 150.0 V
–IN = 0 V
–30
–5
–40
–5
80
VHN + 3.0 V
400
560
184
146
* VLP = 12 V, VHN = –150 V, and VHP = 150 V.
† Controlled by Rib and VLP.
‡ Settle to 5%.
Typ
TBD
0
20
0
0
85
85
52
TBD
TBD
100
TBD
0.62
0.47
197
254
500
600
230
182.5
Max
30
5
40
10
Unit
k
mV
µV/°C
nA
nA
dB
V
V/V/°C
120
VHP – 3.0 V
k
µA
V
— kHz
— V/s (rising)
— V/s (falling)
µs (rising)
µs (falling)
600 µA
840 µA
276 µA
219 mW
Agere Systems Inc.
5

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